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[已解决求助] development [复制链接]

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发表于 2011-3-10 19:13 |只看该作者 |倒序浏览 |打印
http://dev.biologists.org/conten ... 15.abstract?papetoc
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DEVELOPMENT AND STEM CELLS1 F( I9 X% ?7 ?/ L5 D4 _+ g; `
Direct in vivo cellular reprogramming involves transition through discrete, non-pluripotent steps
$ P. {& _/ p1 q) O8 @  m( _) mJai Prakash Richard, Steven Zuryn, Nadine Fischer, Valeria Pavet, Nadège Vaucamps and Sophie Jarriault*( Q- Q" x1 z$ {, ]+ _
*Author for correspondence: sophie@igbmc.fr
! Z) u# P) N: D1 {" P4 iSummary
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! K4 Q1 e7 T: L: ~/ X" |& bCells can change identity during normal development, in response to tissue damage or defined artificial treatments, or during disease processes such as cancer. Strikingly, not only the reprogramming of tissue cells to an embryonic stem cell-like state, but also the direct conversion from one cell type to another have been described. Direct cell type conversion could represent an alternative strategy for cellular therapies. However, little is known about the actual cellular steps undertaken by a cell as it changes its identity and their possible consequences for the organism. Using an in vivo single-cell system of natural direct reprogramming, in which a C. elegans rectal cell transforms into a motoneuron, we present an in-depth analysis of the cellular transformations involved. We found that the reprogrammed cell transits through intermediate states during direct in vivo reprogramming. We identified and characterised a mutant in the conserved COE transcription factor UNC-3 in which this cellular transformation is blocked. We determined that complete erasure of initial identity first takes place, followed by stepwise, unc-3-dependent, redifferentiation into a motoneuron. Furthermore, unlike in vitro induced reprogramming, reversion to a dedifferentiated identity does not lead to an increase in cellular potential in a natural, in vivo context. Our findings suggest that direct cell type conversion occurs via successive steps, and that dedifferentiation can occur in the absence of cell division. Furthermore, our results suggest that mechanisms are in place in vivo to restrict cell potential during reprogramming, a finding with important implications for regenerative medicine.9 I) g: K# F. }. @: W

' Q/ v# n- K: O0 S' XAccepted January 31, 2011.

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发表于 2011-3-10 20:00 |只看该作者
回复 flydayzhu 的帖子
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"...that complete erasure of initial identity first takes place, followed by stepwise, unc-3-dependent, redifferentiation into a motoneuron",
; T) a; h- |1 v+ z"...reversion to a dedifferentiated identity does not lead to an increase in cellular potential in a natural, in vivo context".
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0 ?! ]6 ~+ _( T" P这意思是说去分化并不导致多潜能(cellular potential),那么抹去“原身份”后是个什么状态呢?
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哺乳动物体内自然存在的直接转分化机制及其可控性,可能是下一个热点。
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! \* |& k2 U8 Q7 N9 q4 T哪位朋友找来原文看看。
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发表于 2011-3-11 15:59 |只看该作者
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这篇没人能找到吗?
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9 f' |$ n& U. L4 N% {悬赏一下,50个包包!

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发表于 2011-3-15 10:10 |只看该作者
干细胞之家微信公众号
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发表于 2011-3-15 10:17 |只看该作者
回复 vanallan 的帖子
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9 t/ h: a4 L) m/ [8 S9 n% H+ X% G等我问问怎么转包包:)

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发表于 2011-3-15 11:08 |只看该作者
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没事,开玩笑的!

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发表于 2011-3-15 21:05 |只看该作者
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发表于 2011-3-15 21:42 |只看该作者
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