Swasthi Hema M, Bhasne Karishma, Mahapatra Sayanta, Mukhopadhyay Samrat
Biochemistry. 2018 Nov 6;57(44):6270-6273. doi: 10.1021/acs.biochem.8b00841. Epub 2018 Oct 22.
Curli is a biofilm-forming amyloid that is expressed on the surface of Gram-negative enteric bacteria such as Escherichia coli and Salmonella spp. Curli is primarily composed of the major structural subunit, CsgA, and interacts with a wide range of human proteins that contribute to bacterial virulence. The adsorption of curli onto the contact-phase proteins and fibrinogen results in a hypocoagulatory state. Using an array of biochemical and biophysical tools, we elucidated the molecular mechanism of interaction between human fibrinogen and CsgA. Our results revealed that a substoichiometric concentration of fibrinogen delays the onset of CsgA aggregation by inhibiting the early events of CsgA assembly. The presence of fibrinogen prevents the maturation of CsgA into fibrils and maintains the soluble state of CsgA. We also demonstrate that fibrinogen interacts more effectively with the disordered conformational state of CsgA than with the ordered β-rich state. Our study suggested that fibrinogen is an anti-curli protein and that the interplay of CsgA and fibrinogen might be a host defense mechanism against curli biogenesis, biofilm formation, bacterial colonization, and infection.
卷曲菌毛是一种形成生物膜的淀粉样蛋白,在革兰氏阴性肠道细菌(如大肠杆菌和沙门氏菌属)的表面表达。卷曲菌毛主要由主要结构亚基CsgA组成,并与多种有助于细菌毒力的人类蛋白质相互作用。卷曲菌毛吸附到接触相蛋白和纤维蛋白原上会导致血液凝固性降低的状态。我们使用一系列生化和生物物理工具,阐明了人类纤维蛋白原与CsgA之间相互作用的分子机制。我们的结果表明,亚化学计量浓度的纤维蛋白原通过抑制CsgA组装的早期事件来延迟CsgA聚集的开始。纤维蛋白原的存在可防止CsgA成熟为纤维,并维持CsgA的可溶状态。我们还证明,纤维蛋白原与CsgA的无序构象状态的相互作用比与有序的富含β片层的状态更有效。我们的研究表明,纤维蛋白原是一种抗卷曲菌毛蛋白,CsgA与纤维蛋白原之间的相互作用可能是宿主针对卷曲菌毛生物合成、生物膜形成、细菌定植和感染的防御机制。