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首页> 外文期刊>The Journal of Biochemistry >The peptidoglycan-binding (PGB) domain of the Escherichia coli pal protein can also function as the PGB domain in E. coli flagellar motor protein MotB.
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The peptidoglycan-binding (PGB) domain of the Escherichia coli pal protein can also function as the PGB domain in E. coli flagellar motor protein MotB.

机译:大肠杆菌pal蛋白的肽聚糖结合(PGB)结构域还可以用作大肠杆菌鞭毛运动蛋白MotB中的PGB结构域。

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摘要

The bacterial flagellar stator proteins, MotA and MotB, form a complex and are thought to be anchored to the peptidoglycan by the C-terminal conserved peptidoglycan-binding (PGB) motif of MotB. To clarify the role of the C-terminal region, we performed systematic cysteine mutagenesis and constructed a chimeric MotB protein which was replaced with the peptidoglycan-associated lipoprotein Pal. Although this chimera could not restore motility to a motB strain, we were able to isolate two motile revertants. One was F172V in the Pal region and the other was P159L in the MotB region. Furthermore, we attempted to map the MotB Cys mutations in the crystal structure of Escherichia coli Pal. We found that the MotB mutations that affected motility nearly overlapped with the predicted PG-binding residues of Pal. Our results indicate that, although the functions of MotB and Pal are very different, the PGB region of Pal is interchangeable with the PGB region of MotB.
机译:细菌鞭毛的定子蛋白质MotA和MotB形成复合物,并被认为通过MotB的C端保守肽聚糖结合(PGB)基序锚定在肽聚糖上。为了阐明C末端区域的作用,我们进行了系统的半胱氨酸诱变并构建了嵌合MotB蛋白,该蛋白被肽聚糖相关的脂蛋白Pal取代。尽管这种嵌合体不能使motB菌株恢复活力,但我们能够分离出两个能动的回复子。一个是在Pal区域的F172V,另一个是在MotB区域的P159L。此外,我们尝试在大肠杆菌Pal的晶体结构中绘制MotB Cys突变图。我们发现,影响运动的MotB突变几乎与预测的Pal PG结合残基重叠。我们的结果表明,尽管MotB和Pal的功能差异很大,但是Pal的PGB区域与MotB的PGB区域是可互换的。

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