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癌细胞的发生可能是一种“返祖”现象?     [复制链接]

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发表于 2010-12-19 17:15 |显示全部帖子
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本帖最后由 sunsong7 于 2010-12-19 17:25 编辑
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marrowstem 发表于 2010-12-19 16:26 & t6 ^7 ?, o( J8 P6 E- A
另外你也许知道,绝大多数的癌前病变是不会发展为恶性肿瘤的(90%以上),我们每天在日常工作中就是这么对患 ...

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前面帖子已经回答了这个问题,“内源性iPS”可能有几种命运,多数情况下是不会恶变的,恰如你说的“iPS所以在分化和增值时存在产生突变的可能几率”,“返祖”只是内源性iPS无数个选择中的一个。' _2 |; g# T! ?
细胞也具有社会性,干细胞在体内的行为可以用社会行为学的的一些准则来解释,我倾向于环境决定论的一些观点:人之初,性本善,性相近,习相远;用现代语言解释就是8 C) @' H' S& p$ I3 y: G
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环境影响行为——行为养成习惯————习惯塑造性格——————————————性格决定选择——————————————选择决定方向
( d2 O2 A- \5 v$ c; Q2 B1 J5 K9 k恶劣的niche———影响成体干细胞———质变为“内源性iPS”————多种选择:被清除、凋亡、分化、增生、恶变等等—————癌细胞是iPS决定“返祖”的方向性选择

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另外本人认为不存在所谓的“肿瘤干细胞(CSC)”,而“肿瘤起始细胞(CIC)”则是出现在错误微环境中的正常成体干细胞,在不断强化的错误刺激信号刺激下应激反应累积后偶然蜕变为“内源性iPS”,在它非胚胎性微环境中无法“归零”但有多种方向性选择,进一步蜕变为癌细胞之前和正常干细胞并无二致,如果CIC误读为CSC会将肿瘤治疗引向歧途,好比警察在敏感地区抓到一个“有作案动机”的嫌疑人被法院判为“有罪”一样...
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发表于 2010-12-19 20:57 |显示全部帖子
本帖最后由 sunsong7 于 2010-12-19 21:27 编辑
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5 S3 G6 M! C+ N5 ]8 u1 t7 i回复 marrowstem 的帖子
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9 l4 h& a" D9 ^6 r谢谢,“内源性iPS”说法的确不大准确,没有找到很合适的术语来定义之前权且先把它称作癌起始细胞(CIC,cancer initiating cell)吧,我想表达的意思是这种细胞是由正常成体细胞在体内为环境中发生了调控异常,启动了干细胞的全能性(一种返祖现象),具有正常胚胎干细胞的表型和分化特征,这和用病毒或miRNA等诱导产生iPS情况非常类似。
' q: w, W: T& f* K癌症干细胞(CSC)有特定的肿瘤标志物,在体内倾向于转化为肿瘤;% U  ]% q+ r  n. p4 k, Y
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癌起始细胞CIC,“内源性iPS”)是一种类似于胚胎干细胞的细胞 ,只是在非胚胎微环境中无法实现“归零”,其前途出现了多种分化方向的不确定性,可以正常分化,也可以继续发展为癌细胞。
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癌起始细胞(CIC,“内源性iPS”)的临床意义在于CIC和正常的ES没有本质区别,寻找癌症干细胞(CSC)特异性标志物是徒劳的,对于癌症的早期治疗研究应从发育学角度改善微环境方法控制CIC的分化方向或逆转肿瘤下手,胚胎干细胞在体内癌转化特性的研究也有助于癌症发生的早期控制。
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发表于 2010-12-19 21:43 |显示全部帖子
本帖最后由 sunsong7 于 2010-12-19 21:49 编辑 " r4 @! z" D+ W  y. _/ q/ L/ f$ B$ K
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呵呵,如果肿瘤起始细胞(CIC)在胚胎性微环境中能够正常分化发育或在体内能形成畸胎瘤的话,“冤枉”一下CIC又何妨

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发表于 2010-12-20 23:44 |显示全部帖子
本帖最后由 sunsong7 于 2010-12-20 23:56 编辑 * M9 k+ p6 w! B  P" i: D+ N! ~
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耶鲁大学医学院José Costa ' C( T5 |$ b: Z

“癌症的悖论:通过返祖实现新生”


0 b+ z- P6 c- P' a0 @" I7 R% P, z       如果能找到癌症的一个简明起始物,我就可以为医学研究中建立一个可以报告癌症的概念模型。根据生态与演化动力学提供的一个有效方法能够对临床及实验数据给出诠释,不但能够解释而且能够预测的肿瘤的自然历史。复合种群动力学(Levins)非常适合描述在组织中所经历的肿瘤性变异的动态变化,而群体中间干扰效应(Tillman)提供一个理解(内部的和外部的)环境如何“自上而下”地引发肿瘤的机制。“协同作战”是已被认为在肿瘤形成及进展过程中起重要作用的行为,由此引起的竞争性冲击也暗示在肿瘤形成时微进化过程也可与基于Lotka-Volterra方程的微修饰理论的代理模型一同来探讨。& }- b! M8 R( O" w' ~8 x- w( R
      当前已知的肿瘤进展机理中一个无法回避的结论是无论前癌细胞还是转移癌细胞都具有可演化性。体细胞的自主演化能力是一种返祖现象,因为在单细胞生物体转变为多细胞生物体时这种特性已经丧失。而单细胞生物体在面临环境的挑战时通过只能演变来寻找新的解决方案,多细胞生物体中的成体细胞遇到环境施加的超过它们的生理耐受能力压力时选择死亡。对于大多数得肿瘤的成人, 癌细胞是由于控制回路为了应对恶劣环境通过信号通路重组而导致的。这太有趣了, 肿瘤基因(抑癌基因和原癌基因)的表达与多细胞生物体在遗传发生层面的形态协同一致的。这些基因变异破坏了多细胞生物体强加的协作方式,并通过新的“协同作战”方式表现出许多癌症特定标志(Hanahan and Weinberg),但是他们没有能够解释可演化性。最新的数据(Spakowski, et al.)显示将正常细胞转化为癌所需的信号通路重组的可我们的基因组中那些正常情况下被沉默的重复序列来完成,由此招募“冲突基因”( Burt and Trivers)作为一个“蓄水池”来配合成体细胞的自主演化。

% ^* C, u  o7 f( @(摘自《协同演化论》: http://biocomplexity.indiana.edu/events/biocXI/abs.php, \; E% ?# \% A; `

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附上原文,若翻译不准确请批评!6 R! ]+ X) e) T( Y% M
José Costa (Yale University Medical School)+ w2 Y9 V0 r, I; U& ~7 _  i

" Q& f& S, X: E“The Cancer Paradox: Innovating through Atavism”
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1 r9 U1 W* Y; kAfter providing a concise primer on cancer, I will focus on the conceptual models that inform medical cancer research. Interpreting clinical and experimental data in light of ecological and evolutionary dynamics provides an effective way to generate hypotheses that both explain and enable prediction of the natural history of tumors. Metapopulation dynamics (Levins) is well suited to describe the variational changes in tissues undergoing neoplastic transformation and the effects of intermediate disturbance in communities (Tillman) provide a “top down” mechanism to understand how the environment (internal and external) causes tumors. Cooperation is known to play a role in tumor formation/progression and its impact on the competition implicit in the microevolutionary process of tumor formation can be explored with agent-based models based on minor modifications of the Lotka-Volterra equation.
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The inescapable conclusion of the current understanding of the mechanism of tumor progression is that evolvability is the fundamental property of both preneoplastic and tumor cells with metastatic potential. The capacity of somatic cells to evolve is an atavism, as this property is lost in the transition of uni- to multicellularity. Whereas unicellular organisms evolve to find new solutions to environmental challenges, somatic cells in multicellular organisms die when the environment imposes a stress beyond their physiologic capacity to adapt. For most tumors of the adult, cancer cells result from the rewiring of control circuits in response to a hostile environment. It is of interest that the coordinated expression of “cancer genes” (tumor supressors and oncogenes) coincides with the appearance of multicellularity in the filogenetic scale. Mutation of these genes disrupts the cooperation imposed by multicellularity and underlies many of the hallmarks of cancer (Hanahan and Weinberg) including novel ways to cooperate, but they fail to explain evolvability. Recent data (Spakowski, et al.) suggest that the rewiring required to transform normal cells into cancer may be accomplished by using repetitive sequences in our genomes, which are normally repressed, thus enlisting “genes in conflict” (Burt and Trivers) to cooperate as capacitators of the evolution of somatic cells.
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发表于 2010-12-21 13:00 |显示全部帖子
本帖最后由 sunsong7 于 2010-12-21 13:23 编辑 & ]& f0 Y4 ?9 d9 y0 X0 A

* P6 P5 D4 Z; w1 [+ g9 v# S回复 marrowstem 的帖子
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4 ]% b0 i+ O8 s) p( u我对“Paradox”的理解和你不同,这个状语描述的主体仍是“cancer”,idea也好,hypothesis也好,牛人们的CSC和 CIC,甚至包括“进化论”也都是假说, 科学的精神就是追寻真理。
) p: Z7 k6 y! F3 y% N) ^ 一、我认为 “癌症的悖论”涵义如题,解释见下文。 关键论点是“单细胞生物体在面临环境的挑战时通过演变来寻找新的解决方案(新生),多细胞生物体中的成体细胞遇到环境施加的超过它们的生理耐受能力压力时选择死亡(凋亡)。” 3 |( W  ]/ q* c' L2 |
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1. 通常意义上癌症出现加速了宿主的死亡;8 f/ u7 u: O3 E
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2. 癌细胞是一种“返祖”行为,由多细胞生物体返回到单细胞生物体,是一种“新生”。. u  p  l: V( {- n  t* [: O8 v
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! K& Q  p( D9 C* }6 L' l. e, i二、这个“正常体细胞”是指成体干细胞,“返祖”过程分为两个阶段:
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1. 成体干细胞在恶劣微环境中“全能性”被触发,这个过程类似于用导入病毒或用miRNA进行“重编程”产生iPS——第一阶段返祖成体干细胞变回“胚胎干细胞”;
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2. 被触发“全能性”的干细胞在非胚胎性为环境中命运出现了无限多可能性,其中一条道是开放癌症基因“开关”,第二阶段由多细胞生物体中的全能性干细胞变回单细胞生物体。
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发表于 2010-12-22 02:20 |显示全部帖子
本帖最后由 sunsong7 于 2010-12-22 02:46 编辑 + y$ b. J- n% G9 q6 p6 \3 p1 `

" @7 ]8 m1 j  Z+ _5 F. X回复 marrowstem 的帖子- M  q; a4 m/ V1 `0 |
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很高兴回答你的问题!+ H7 ^8 ^$ L' D  Z7 I* Y8 A+ Y

3 O4 N; }- n6 S6 D+ t3 Y首先,肿瘤发生是个多因素多步骤的过程,对于多细胞生物个体来讲是小概率事件,成体干细胞的绝大多数基因突变和调节失控的累积会造成细胞病变最终凋亡或被免疫检测系统所清除,有一条道路可以改变它的命运,就是选择“返祖”——成为全能性干细胞(前述的“内源性iPS”),练就了“免疫逃逸”的真功夫才幸存下来;0 P4 F; C: E% s* {/ M1 f
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第二,具备了全能这些细胞在体内的命运出现了许许多多的不确定性,其中一种可能性是遭遇“二次打击”后继续“返祖”,摆脱多细胞生物体的体统控制,成为具有特立独行的单细胞生物体——癌变;
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" @. ~4 B8 k) {0 [! F第三,癌变后的这些细胞仍保留一定的对干细胞的“记忆”——在胚胎性微环境中可以被“归零”形成一些分化分化组织,在非胚胎性微环境中可表现出所谓的“肿瘤干细胞”特征,在不同层次发生“分化受阻”,形成具有异质性的单一细胞克隆的肿瘤组织;: m! A. s6 I6 w- ?+ x* D+ f

* t! C: f6 W5 l5 W) ?3 [第四,以上返祖现象相关的证据非常之多,癌细胞与ES/iPS的相关性包括:免疫逃逸、永生化、接触抑制丧失、抵御化疗或放疗能力、自主性、浸润性和转移能力、有氧酵解代谢方式、体外培养贴壁性下降和出现胚胎干细胞样克隆以及对血清依赖性降低灯;还有胎源性肿瘤标志物: 甲胎蛋白、癌胚抗原、鳞状细胞抗原、Survivin蛋白、癌抗原199、前列腺特异性抗原、组织多肽特异性抗原、人绒毛膜促性腺激素等;畸胎瘤和VSEL也同样提供了佐证。) s, X' A# q2 [% [+ A" A, R

, E# H! }" c3 A' R( G7 k第五,关于关于癌组织病理切片的表现出的组织性问题,下面的画面可以给出答案——是单细胞生物群体的组织性?还是多细胞生物体系统调控组织性?
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发表于 2010-12-22 20:45 |显示全部帖子
本帖最后由 sunsong7 于 2010-12-22 20:46 编辑 ; y8 q9 u; z2 M2 H

: [* p9 t0 G) O! m非常欣赏marrowstem 渊博的知识和独到的思维方式,感谢marrowstem在讨论过程中所提出的许多重要观点!
% o; {5 M& m4 G9 j7 E" y在marrowstem 的启发下本人接触到许多过去未涉足的知识领域,包括他的许多生动科普性读物和和非常有价值观点;* F% J/ }9 Q0 o: W% ~
未知者无畏——虽然明知自己的观点十分幼稚,但希望这些讨论能启发更多人对癌症的思考。
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发表于 2011-4-16 23:59 |显示全部帖子
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癌症是一种返祖现象?


, i: I0 Z- X+ I4 w. y5 Q2011-02-10 11:112011-02-09 15:30:48 作者:歆塬 来源:化石网
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* _. D- H0 Q9 d+ [% o摘要: 图:上排为正常的乳房细胞,下排为乳腺癌症细胞;左列显示整个细胞,灰色区域为细胞质,中列显示细胞核形态,右列显示细胞核DNA密度变化 澳大利亚国立大学的天体生物学家Paul Davies教授及其同伴在研究 ...
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Two scientists, including ASU’s Paul Davies, write about the idea that cancer has ancient evolutionary roots in a paper released Feb. 7 in the journal Physical Biology. Davies heads up the Center for the Convergence of Physical Sciences and Cancer Biology at ASU, a major research initiative funded by the National Cancer Institute. His center is investigating insights from physical science on cancer cells, similar to the ones in this image. Shown here, the upper row shows a normal breast cell with a smooth nuclear membrane of regular shape. The bottom row shows an aggressive breast cancer cell with a distinctively irregular nucleus and overall shape. The left column shows the whole cell, with the cytoplasm appearing as a gray haze. The middle column shows the naked nuclear membrane and the right column shows density variations in the nuclear DNA. (Credit: Image courtesy of Vivek Nandakumar, Center for Biosignatures Discovery Automation, Biodesign Institute, Arizona State University)- }7 g6 |+ C2 P
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澳大利亚国立大学的天体生物学家Paul Davies教授及其同伴在研究癌症治愈方法的过程中发现,癌症细胞并非是一类偶然产生的“无赖”细胞,而是在漫长的演化过程中对环境压力进行有效适应的结果。( a) S6 c" j9 y0 a" J4 R
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Davies和他的同伴认为,癌症细胞能够重新使用十几亿年前的细胞基因途径,那个时候,疏松的细胞群刚开始聚集在一起形成多细胞生命形式,Davies将其称为后生动物一代(Metazoa 1.0)。当然,这个时候的多细胞生命体的功能细胞完整度以及器官分化程度都远远不及现代多细胞生命。Davies进一步推测说,后生动物一代的那种能产生结构较疏松生命体的基因至今仍然存在,只不过被后来演化出的能控制更复杂而精确的生理机能的基因所抑制住了。因此,一旦由于某些因素而将这一抑制作用释放,古老的基因形式又会再次出现,令人害怕的癌症细胞也就应运而生。肿瘤就是后生动物一代在现代生命体中的再次出现,在这种情况下,癌症的发生仅是时间问题而已。
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* O/ [2 \% R! o如果Davies的理论是正确的,那么这种最简单生命体的基因组很容易逃避身体的控制并且产生对化学疗法的抗性。不过,细胞只能采取有限的基因途径来使其不断产生基因不稳定性和危害性,那么,在即将到来的个性化医药时代,癌症或许能被某些特定的药物所控制。
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这项研究向肿瘤学家表明,癌症是一种有限的且可以预测的返祖性症状,且这种症状不会有任何变化,在谁的身上都一样。当然,结论也为生命起源的研究提供了重要的线索。( Z  u) J' ^: U8 f0 H. h( [
http://www.uua.cn/news/show-11095-1.html
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Conceptualizing Cancer Cells as Ancient 'Toolkit'

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ScienceDaily (Feb. 8, 2011) — Despite decades of research and billions of dollars, cancer remains a major killer, with an uncanny ability to evade both the body's defenses and medical intervention. Now an Arizona State University scientist believes he has an explanation.
7 x4 m$ ~, X1 H+ O& o8 G0 f  Fhttp://www.sciencedaily.com/releases/2011/02/110207133704.htm
% L" S  D# C# {5 f: Y# w. b"Cancer is not a random bunch of selfish rogue cells behaving badly, but a highly-efficient pre-programmed response to stress, honed by a long period of evolution," claims professor Paul Davies, director of the BEYOND Center for Fundamental Concepts in Science at ASU and principal investigator of a major research program funded by the National Cancer Institute designed to bring insights from physical science to the problem of cancer.
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2 V& E3 S* L" ]In a paper published online Feb. 7 in the UK Institute of Physics journal Physical Biology, Davies and Charles Lineweaver from the Australian National University draw on their backgrounds in astrobiology to explain why cancer cells deploy so many clever tricks in such a coherent and organized way.
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They say it's because cancer revisits tried-and-tested genetic pathways going back a billion years, to the time when loose collections of cells began cooperating in the lead-up to fully developed multicellular life. Dubbed by the authors "Metazoa 1.0," these early assemblages fell short of the full cell and organ differentiation associated with modern multicellular organisms -- like humans.
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But according to Davies and Lineweaver, the genes for the early, looser assemblages -- Metazoa 1.0 -- are still there, forming an efficient toolkit. Normally it is kept locked, suppressed by the machinery of later genes used for more sophisticated body plans. If something springs the lock, the ancient genes systematically roll out the many traits that make cancer such a resilient form of life -- and such a formidable adversary.
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# A# [& n( Z" c9 l"Tumors are a re-emergence of our inner Metazoan 1.0, a throwback to an ancient world when multicellular life was simpler," says Davies. "In that sense, cancer is an accident waiting to happen."
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If Davies and Lineweaver are correct, then the genomes of the simplest multicellular organisms will hide clues to the way that cancer evades control by the body and develops resistance to chemotherapy. And their approach suggests that a limited number of genetic pathways are favored by cells as they become progressively genetically unstable and malignant, implying that cancer could be manageable by a finite suite of drugs in the coming era of personalized medicine.- F% o, D2 t$ |0 n. T

1 u& |1 ?% z3 W5 Y6 G"Our new model should give oncologists new hope because cancer is a limited and ultimately predictable atavistic adversary," says Lineweaver. "Cancer is not going anywhere evolutionarily; it just starts up in a new patient the way it started up in the previous one."5 Y% s. C% {$ @' P( Z
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The authors also believe that the study of cancer can inform astrobiology. "It's not a one-way street," says Davies. "Cancer can give us important clues about the nature and history of life itself."
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) }3 u) s! m! D% V$ [Story Source:7 |  A, V' M1 {
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The above story is reprinted (with editorial adaptations by ScienceDaily staff) from materials provided by Arizona State University.
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& G- R; l- C. C# E- ?, i. RJournal Reference:+ R" E  N# {  W) O6 D

. _$ f- F) a6 a' r1.P. C. W. Davies, C. H. Lineweaver. Cancer tumors as Metazoa 1.0: tapping genes of ancient ancestors. Physical Biology, 2011; 8: 015001 DOI: 10.1088/1478-3975/8/1/015001
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  \0 S2 g. D" I- J癌—基因的返祖现象
/ F9 S" x# t" y% ~4 z( d* i作者:袁永群 顾美皎 所在机构:同济医科大学附属同济医院妇产科 + ]! v/ v( ~- F9 i! Y

! {  L; o1 J- g" O4 W1 M摘要:基因重复是生物进化的重要来源,在此基础上可产生基因倒转,移位,替换,缺失等基因重排,为原始基因保留在高等生物基因库中提供了可能。早期胚胎发育的基因控制和真核细胞的起源,反映基因重复知基因进化地历程肿瘤形成过程中,原始基因在特定的微环境作用下,被激活表达,而形成肿瘤。我们认为癌症是基因的返祖现象。
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发表于 2011-4-17 00:21 |显示全部帖子
本帖最后由 sunsong7 于 2011-4-17 00:38 编辑 ) `3 ?9 l2 V7 P" n# R7 Z
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癌肿瘤是原始的多细胞生物
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Cancer tumors as Metazoa 1.0: tapping genes of ancient ancestors

   
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PCWDavies1 and C H Lineweaver2


3 c4 r5 V5 V  C3 A! _- M7 uPhys. Biol. 8 (2011) 015001
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Abstract5 B. b! K$ o8 H5 n4 v) I+ {& g
The genes of cellular cooperation that evolved with multicellularity about a billion years ago are the same genes that malfunction to cause cancer. We hypothesize that cancer is an atavistic  condition that occurs when genetic or epigenetic malfunction unlocks an ancient ‘toolkit’ of pre-existing adaptations, re-establishing the dominance of an earlier layer of genes that controlled loose-knit colonies of only partially differentiated cells, similar to tumors. The existence of such a toolkit implies that the progress of the neoplasm in the host organism differs distinctively from normal Darwinian evolution. Comparative genomics and the phylogeny of basal metazoans, opisthokonta and basal multicellular eukaryotes should help identify the relevant genes and yield the order in which they evolved. This order will be a rough guide to the reverse order in which cancer develops, as mutations disrupt the genes of cellular cooperation. Our proposal is consistent with current understanding of cancer and explains the paradoxical rapidity with which cancer acquires a suite of mutually-supportive complex abilities. Finally we make several predictions and suggest ways to test this model.( ?1 h1 ?" d# l. `( P- R

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天文学家:癌是十亿年前的类生物$ T$ ?# W  f% o& G

Cancer resembles life 1 billion years ago, say astrobiologists

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Cancer is an evolutionary throwback, resembling early multicellular life, and flourishes when the more evolutionarily recent genes that regulate cellular cooperation fail.9 |! b6 [* q8 c
Tim Dean (Australian Life Scientist)08 February, 2011
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Sometimes stepping back and looking at the big picture can lend new clarity to an ongoing debate. In this case, it took the distant perspective of astrobiologists to reckon the origins of cancer.# z' p# E/ V; A
The astrobiologists, working with oncologists in the US, have suggested that cancer resembles ancient forms of life that flourished between 600 million and 1 billion years ago.2 @; X7 a- \* o/ q. o
Read more about what this discovery means for cancer research.
8 |4 G+ S- [  P- _; q7 S, tThe genes that controlled the behaviour of these early multicellular organisms still reside within our own cells, managed by more recent genes that keep them in check.
  Z4 e3 O$ q$ k7 y- E! fIt's when these newer controlling genes fail that the older mechanisms take over, and the cell reverts to its earlier behaviours and grows out of control.
) H0 O% ~+ ?0 L$ P' `& l/ XThe new theory, published in the journal Physical Biology, has been put forward by two leading figures in the world of cosmology and astrobiology: Paul Davies, director of the Beyond Center for Fundamental Concepts in Science, Arizona State University; and Charles Lineweaver, from the Australian National University.4 w. r" K. g: F
In the paper, they suggest that a close look at cancer shows similarities with early forms of multicellular life.( ~9 h$ G, W. i( N* i
"'Advanced' metazoan life of the form we now know, i.e. organisms with cell specialization and organ differentiation, was preceded by colonies of eukaryotic cells in which cellular cooperation was fairly rudimentary, consisting of networks of adhering cells exchanging information chemically, and forming self-organized assemblages with only a moderate division of labor," they write.3 [9 c; E( d9 t
According to Lineweaver, this suggests that cancer is an atavism, or an evolutionary throwback.3 k, H3 f# N( R, q
“Unlike bacteria and viruses, cancer has not developed the capacity to evolve into new forms. In fact, cancer is better understood as the reversion of cells to the way they behaved a little over one billion years ago, when humans were nothing more than loose-knit colonies of only partially differentiated cells.
' m/ I  r" J# n0 t. n: M' b“We think that the tumours that develop in cancer patients today take the same form as these simple cellular structures did more than a billion years ago,” he said.
3 k# y3 \9 `+ o6 RIn a way, the genes that controlled this early multi-cellular form of life are like a computer operating system's 'safe mode', and when there are failures or mutations in the more recent genes that manage the way cells specialise and interact to form the complex life of today, then the earlier level of programming takes over.6 t! `3 e8 i) C
One piece of evidence to support this theory is that cancers appear in virtually all metazoans, with the notable exception of the bizarre naked mole rat.
6 V3 k# D" E0 ^5 b7 M& D, w"This quasi-ubiquity suggests that the mechanisms of cancer are deep-rooted in evolutionary history, a conjecture that receives support from both paleontology and genetics," they write.8 n& R6 d; F. V( s
Their notion is in contrast to a prevailing theory that cancer cells are 'rogue' cells that evolve rapidly within the body, overcoming the normal slew of cellular defences.
: [6 A/ ?; ?: uHowever, Davies and Lineweaver point out that cancer cells are highly cooperative with each other, if competing with the host's cells. This suggests a pre-existing complexity that is reminiscent of early multicellular life.: D6 U6 V8 h+ h; H; h: d
They also point out that cancers' manifold survival mechanisms are predictable, and unlikely to emerge spontaneously through evolution within each individual in such a consistent way.1 ~+ j, B4 U# z/ u+ ~4 N( W
The good news is that this means combating cancer is not necessarily as complex as if the cancers were rogue cells evolving new and novel defence mechanisms within the body.. O. i2 `; X8 n; f0 o  [
Instead, because cancers fall back on the same evolved mechanisms that were used by early life, we can expect them to remain predictable, thus if they're susceptible to treatment, it's unlikely they'll evolve new ways to get around it.6 I; o( k( d' Z5 v
"Given cancer’s formidable complexity and diversity, how might one make progress toward controlling it? If the atavism hypothesis is correct, there are new reasons for optimism," they write.
, e& x6 @0 E4 ]4 O"The postulated toolkit of Metazoa 2.0, although admittedly complex, is nevertheless a fixed and finite feature of multicellular life. The number of tools in the kit is not infinite. What one cancer learns cannot be passed on to the next generation of cancers in other patients. 9 j" b/ c" x8 ^! T$ g2 `
"Cancer is not going anywhere evolutionarily; it just starts up all over again in the next patient."+ r! T3 w. Y2 G" \. v( t
They also suggest that new therapies could concentrate on the existing cellular regulation mechanisms that have evolved to keep these ancient genes in check.' B. p# G  p) r- Q, x
The paper is available online at the Physical Biology site. ) H% R2 T8 a+ _  u7 c3 N/ H( ~
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http://www.lifescientist.com.au/ ... ay_astrobiologists/
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发表于 2011-4-17 15:08 |显示全部帖子
本帖最后由 sunsong7 于 2011-4-17 15:16 编辑 ! c) j4 A8 N6 U( p/ U9 m. d# g
marrowstem 发表于 2011-4-17 14:30
9 `: j% A7 P8 ~+ A癌细胞的发生是不是一种“返祖”现象,本人觉得这并不是一个值得非要争论的问题。因为假如真的就是的 ...

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不能接受你的观点,历史上多数重要科学突破都与当时的“主流”相悖,所谓“大牛”也只能代表过去的成就,即便诺贝尔奖得主也很少能突破自己,有些大牛甚至会妨碍科学的进步。
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癌是机体组织的叛逆者,目前手术、放疗、化疗、生物药物等手段在癌症面前的无能表现恰恰说明了“大牛”们的“主流”思想或理论的失败。
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基因祖先的追溯表明,地球上所有各种品系的狗都有共同的祖先——东亚狼,各种肤色的人类也有共同的夏娃与亚当——非洲直立人....
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- m  j; x* k8 b1 F! {  O癌细胞许多行为源自于生命远古的本能,如果形形色色的癌拥有10亿年前的原始祖先——无论是原生动物或后生动物的基因,都将有助于我们更好地了解癌的发生发展规律,最终将其征服。6 P5 S' Z7 t- X
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