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The transmembrane domains of the bacterial cell division proteins FtsB and ftsl form a stable high-order oligomer

机译:细菌细胞分裂蛋白FtsB和ftsl的跨膜结构域形成稳定的高阶寡聚物

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FtsB and FtsL are two essential integral membrane proteins of the bacterial division complex or "divisome", both characterized by a single transmembrane helix and a juxtamembrane coiled coil domain. The two domains are important for the association of FtsB and FtsL, a key event for their recruitment to the divisome, which in turn allows the recruitment of the late divisomal components to the Z-ring and subsequent completion of the division process. Here we present a biophysical analysis performed in vitro that shows that the transmembrane domains of FtsB and FtsL associate strongly in isolation. Using F?rster resonance energy transfer, we have measured the oligomerization of fluorophore-labeled transmembrane domains of FtsB and FtsL in both detergent and lipid. The data indicate that the transmembrane helices are likely a major contributor to the stability of the FtsB-FtsL complex. Our analyses show that FtsB and FtsL form a 1:1 higher-order oligomeric complex, possibly a tetramer. This finding suggests that the FtsB-FtsL complex is capable of multivalent binding to FtsQ and other divisome components, a hypothesis that is consistent with the possibility that the FtsB-FtsL complex has a structural role in the stabilization of the Z-ring.
机译:FtsB和FtsL是细菌分裂复合体或“二体”的两个必不可少的完整膜蛋白,均以单个跨膜螺旋和近膜卷曲螺旋结构域为特征。这两个域对于FtsB和FtsL的关联很重要,这是将它们募集到单核体的关键事件,这反过来又允许将晚期的二体成分募集到Z环并随后完成分裂过程。在这里,我们介绍了在体外进行的生物物理分析,结果表明FtsB和FtsL的跨膜结构域在分离中强烈相关。使用Fster共振能量转移,我们测量了去污剂和脂质中FtsB和FtsL的荧光团标记的跨膜结构域的低聚。数据表明跨膜螺旋可能是FtsB-FtsL复合体稳定性的主要贡献者。我们的分析表明,FtsB和FtsL形成1:1的高级寡聚复合物,可能是四聚体。该发现表明,FtsB-FtsL复合物能够与FtsQ和其他divisome组分多价结合,这一假说与FtsB-FtsL复合物在Z环的稳定中具有结构性作用的可能性一致。

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