首页> 外文期刊>Journal of bacteriology >Domain-swapping analysis of FtsI, FtsL, and FtsQ, bitopic membrane proteins essential for cell division in Escherichia coli.
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Domain-swapping analysis of FtsI, FtsL, and FtsQ, bitopic membrane proteins essential for cell division in Escherichia coli.

机译:FtsI,FtsL和FtsQ(对大肠杆菌中的细胞分裂必不可少的双位膜蛋白)的域交换分析。

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FtsI, FtsL, and FtsQ are three membrane proteins required for assembly of the division septum in the bacterium Escherichia coli. Cells lacking any of these three proteins form long, aseptate filaments that eventually lyse. FtsI, FtsL, and FtsQ are not homologous but have similar overall structures: a small cytoplasmic domain, a single membrane-spanning segment (MSS), and a large periplasmic domain that probably encodes the primary functional activities of these proteins. The periplasmic domain of FtsI catalyzes transpeptidation and is involved in the synthesis of septal peptidoglycan. The precise functions of FtsL and FtsQ are not known. To ask whether the cytoplasmic domain and MSS of each protein serve only as a membrane anchor or have instead a more sophisticated function, we have used molecular genetic techniques to swap these domains among the three Fts proteins and one membrane protein not involved in cell division, MalF. In the cases of FtsI and FtsL, replacement of the cytoplasmic domain and/or MSS resulted in the loss of the ability to support cell division. For FtsQ, MSS swaps supported cell division but cytoplasmic domain swaps did not. We discuss several potential interpretations of these results, including that the essential domains of FtsI, FtsL, and FtsQ have a role in regulating the localization and/or activity of these proteins to ensure that septum formation occurs at the right place in the cell and at the right time during the division cycle.
机译:FtsI,FtsL和FtsQ是在大肠杆菌中组装分隔隔膜所需的三种膜蛋白。缺少这三种蛋白质中的任何一种的细胞会形成长而呈肽状的细丝,最终溶解。 FtsI,FtsL和FtsQ不是同源的,但具有相似的整体结构:小的胞质结构域,单个跨膜区段(MSS)和大的胞质结构域,可能编码这些蛋白质的主要功能活性。 FtsI的周质域催化转肽作用,并参与间隔肽聚糖的合成。 FtsL和FtsQ的确切功能未知。为了询问每种蛋白质的细胞质结构域和MSS是否仅充当膜锚或具有更复杂的功能,我们使用分子遗传技术在三种不参与细胞分裂的Fts蛋白和一种膜蛋白之间交换这些结构域, MalF。在FtsI和FtsL的情况下,细胞质结构域和/或MSS的替换导致支持细胞分裂的能力丧失。对于FtsQ,MSS交换支持细胞分裂,但不支持胞质域交换。我们讨论了这些结果的几种可能的解释,包括FtsI,FtsL和FtsQ的必需结构域在调节这些蛋白质的定位和/或活性中起作用,以确保隔垫的形成发生在细胞的正确位置和位置。在除法周期中的正确时间。

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