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Spare the Mbl, spoil the rod? [复制链接]

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发表于 2009-3-6 00:37 |只看该作者 |正序浏览 |打印
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Errington/Elsevier/ C6 |  H, V& @4 h2 D
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New results from Richard Daniel and Jeff Errington (University of Oxford, Oxford, UK) indicate that bacteria have different strategies to control cell shape through cell wall deposition, depending on the presence of an actin-like protein.  B! Z% k9 h9 @: g
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Distant homologues of eukaryotic actin were only recently identified in bacteria. In the rod-shaped Bacillus subtilis, these proteins, members of the MreB family, form helical cables along the cell axis and are required for the maintenance of proper cell shape. Daniel and Errington now show that MreB proteins direct the deposition of cell wall material.
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, ?  c+ A6 ~9 Y# z; y0 ^3 P8 R% XThe authors probed for new cell wall material in Bacillus by labeling precursors inserted into peptidoglycan (PG), the major component of the cell wall. New PG was inserted in a helical pattern matching that of an MreB family member, called Mbl. Mutation of Mbl led to loss of the helical pattern in the cell cylinder. It is not clear how Mbl controls PG synthesis, but the authors believe that the MreC and MreD membrane proteins may connect the cytoplasmic cables to the external cell wall machinery.
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: ]. F1 A0 Y6 ?6 A8 bAdditional transient PG synthesis was found at sites where cell division occurred. Cells lacking Mbl survived by acquiring mutations that allowed them to maintain growth from finished division sites. They continued to grow as long as cell division was not inhibited.
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- `8 `% ^0 [3 _+ P0 wRound bacteria such as Streptococcus lacked MreB proteins and inserted new wall material only at sites of division. Two groups of rod-shaped bacteria also lacked MreB-type proteins. The group found that one of these bacteria, Corynebacterium, relied entirely on continuous growth from cell division sites, just like the B. subtilis mbl mutants. MreB-directed wall synthesis allows cells to grow more rapidly, since new material can be added throughout the growing cell. But polar-growing cells may have the advantage of a static wall that can be reinforced by additional modifications to increase its strength.
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Daniel, R., and J. Errington. 2003. Cell. 113:767–776.(New cell wall (white) is added at divisi)

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发表于 2026-9-30 19:44 |只看该作者
干细胞治疗  

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发表于 2026-9-12 15:56 |只看该作者
干细胞研究重在基础

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发表于 2026-9-12 14:33 |只看该作者
拿分走人呵呵,楼下继续!

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发表于 2026-8-17 01:56 |只看该作者
谢谢分享了!  

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发表于 2026-7-23 18:42 |只看该作者
HOHO~~~~~~  

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发表于 2026-6-14 18:41 |只看该作者
说的真有道理啊!

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发表于 2026-5-30 14:27 |只看该作者
干细胞之家是国内最好的干细胞网站了

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发表于 2026-5-26 13:18 |只看该作者
祝干细胞之家 越办越好~~~~~~~~~`  

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发表于 2026-4-25 05:36 |只看该作者
谢谢哦  
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