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Comparative study of bacterial SPOR domains identifies functionally important differences in glycan binding affinity

细菌 SPOR 结构域的比较研究确定了聚糖结合亲和力的重要功能差异

基本信息

DOI:
10.1101/2022.07.01.498525
发表时间:
2022
期刊:
bioRxiv
影响因子:
--
通讯作者:
David S. Weiss
中科院分区:
文献类型:
--
作者: Atsushi Yahashiri;Gabriela M. Kaus;D. Popham;Jon C.D. Houtman;David S. Weiss研究方向: -- MeSH主题词: --
关键词: --
来源链接:pubmed详情页地址

文献摘要

Bacterial SPOR domains target proteins to the divisome by binding septal peptidoglycan (PG) at sites where cell wall amidases have removed stem peptides. These PG structures are referred to as denuded glycans. Although all characterized SPOR domains bind denuded glycans, whether there are differences in affinity is not known. Here we use isothermal titration calorimetry (ITC) to determine the relative PG glycan binding affinity (Kd) of four Escherichia coli SPOR domains and one Cytophaga hutchinsonii SPOR domain. We found that the Kd values ranged from approximately 1 µM for E. coli DamXSPOR and C. hutchinsonii CHU2221SPOR to about 10 µM for E. coli FtsNSPOR. To ask whether these differences in PG binding affinity are important for SPOR domain protein function, we constructed and characterized a set of DamX and FtsN “swap” proteins. As expected, all SPOR domain swap proteins localized to the division site, and in the case of FtsN all of the heterologous SPOR domains supported cell division. But for DamX only the high-affinity SPOR domain from CHU2221 supported normal function in cell division. In summary, different SPOR domains bind denuded PG glycans with different affinity, which appears to be very important for the function of some SPOR domain proteins (e.g., DamX) but not others (e.g., FtsN). Importance SPOR domain proteins are prominent components of the cell division apparatus in a wide variety of bacteria. The primary function of SPOR domains is to target proteins to the division site, which they accomplish by binding to septal peptidoglycan. But whether SPOR domains have any functions beyond septal targeting is unknown. Here we show that SPOR domains vary in their PG binding affinities and, at least in the case of the E. coli cell division protein DamX, having a high-affinity SPOR domain contributes to proper function.
细菌孢子域通过结合蛋白质(PG)在细胞壁氨基酶的位点上取消了这些PG结构。亲和力(KD)的四个escherichia大肠杆菌结构域和一个细胞菌spor域。交换蛋白质SPOR domain swap proteins localized to the division site, and in the case of FtsN all of the heterologous SPOR domains supported cell division. But for DamX only the high-affinity SPOR domain from CHU2221 supported normal function in cell division. In summary, different SPOR domains bind denuded PG glycans with different affinity, which appears to be very important for the function of some SPOR domain proteins (e.g., DamX) but not others (例如,FTSN)。案例大肠杆菌细胞分裂蛋白DAMX,具有高亲和力的孢子结构域有助于适当的功能。
参考文献(2)
被引文献(0)
Nuclear magnetic resonance solution structure of the peptidoglycan-binding SPOR domain from Escherichia coli DamX: insights into septal localization.
大肠杆菌 DamX 肽聚糖结合 SPOR 结构域的核磁共振溶液结构:对隔膜定位的见解。
DOI:
10.1021/bi301609e
发表时间:
2013
期刊:
Biochemistry
影响因子:
2.9
作者:
Williams,KyleB;Yahashiri,Atsushi;Arends,SJRyan;Popham,DavidL;Fowler,CAndrew;Weiss,DavidS
通讯作者:
Weiss,DavidS

数据更新时间:{{ references.updateTime }}

David S. Weiss
通讯地址:
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所属机构:
--
电子邮件地址:
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