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首页> 外文期刊>The Journal of biological chemistry >Reconstitution and Organization of Escherichia coli Proto-ring Elements (FtsZ and FtsA) inside Giant Unilamellar Vesicles Obtained from Bacterial Inner Membranes
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Reconstitution and Organization of Escherichia coli Proto-ring Elements (FtsZ and FtsA) inside Giant Unilamellar Vesicles Obtained from Bacterial Inner Membranes

机译:从细菌内膜获得的巨型Unilamellar囊泡内重建和组织大肠杆菌原振元件(FTSZ和FTSA)

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We have incorporated, for the first time, FtsZ and FtsA (the soluble proto-ring proteins from Escherichia coli) into bacterial giant unilamellar inner membrane vesicles (GUIMVs). Inside the vesicles, the structural organization and spatial distribution of fluorescently labeled FtsZ and FtsA were determined by confocal microscopy. We found that, in the presence of GDP, FtsZ was homogeneously distributed in the lumen of the vesicle. In the presence of GTP analogs, FtsZ assembled inside the GUIMVs, forming a web of dense spots and fibers. Whereas isolated FtsA was found adsorbed to the inner face of GUIMVs, the addition of FtsZ together with GTP analogs resulted in its dislodgement and its association with the FtsZ fibers in the lumen, suggesting that the FtsA-membrane interaction can be modulated by FtsZ polymers. The use of this novel in vitro system to probe interactions between divisome components will help to determine the biological implications of these findings.
机译:我们已经掺入了FTSZ和FTSA(来自大肠杆菌的可溶性原激素蛋白)到细菌巨型Unilamellar内膜囊泡(GUIMV)中。在囊泡内部,通过共聚焦显微镜测定荧光标记的FTSZ和FTSA的结构组织和空间分布。我们发现,在GDP的存在下,FTSZ在囊泡的内腔中均匀分布。在GTP类似物的存在下,FTSZ组装在GUIMV内部,形成致密斑点和纤维的网。虽然发现孤立的FTSA被吸附到GUIMV的内表面,但是与GTP类似物一起添加FTSZ导致其脱臼及其与腔内的FTSZ纤维的关系,表明FTSA膜相互作用可以通过FTSZ聚合物调节。使用这种新型体外系统来探测分层组分之间的相互作用将有助于确定这些发现的生物学意义。

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