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博莱罗氏菌的 TamB 保守 C 端结构域与多个 BamA POTRA 结构域相互作用。

A conserved C-terminal domain of TamB interacts with multiple BamA POTRA domains in Borreliella burgdorferi.

机构信息

Department of Microbiology and Immunology, University of Oklahoma Health Sciences Center, Oklahoma City, Oklahoma, United States of America.

Chemical Computational Biology Core and the Molecular Graphics and Modeling Laboratory, University of Kansas, Lawrence, Kansas, United States of America.

出版信息

PLoS One. 2024 Aug 29;19(8):e0304839. doi: 10.1371/journal.pone.0304839. eCollection 2024.

Abstract

Lyme disease is the leading tick-borne infection in the United States, caused by the pathogenic spirochete Borreliella burgdorferi, formerly known as Borrelia burgdorferi. Diderms, or bacteria with dual-membrane ultrastructure, such as B. burgdorferi, have multiple methods of transporting and integrating outer membrane proteins (OMPs). Most integral OMPs are transported through the β-barrel assembly machine (BAM) complex. This complex consists of the channel-forming OMP BamA and accessory lipoproteins that interact with the five periplasmic, polypeptide transport-associated (POTRA) domains of BamA. Another system, the translocation and assembly module (TAM) system, has also been implicated in OMP assembly and export. The TAM system consists of two proteins, the BamA paralog TamA which has three POTRA domains and the inner membrane protein TamB. TamB is characterized by a C-terminal DUF490 domain that interacts with the POTRA domains of TamA. Interestingly, while TamB is found in almost all diderms, including B. burgdorferi, TamA is found almost exclusively in Proteobacteria. This strongly suggests a TamA-independent role of TamB in most diderms. We previously demonstrated that BamA interacts with TamB in B. burgdorferi and hypothesized that this is facilitated by the BamA POTRA domains interacting with the TamB DUF490 domain. In this study, we utilized protein-protein co-purification assays to empirically demonstrate that the B. burgdorferi TamB DUF490 domain interacts with BamA POTRA2 and POTRA3. We also observed that the DUF490 domain of TamB interacts with the accessory lipoprotein BamB. To examine if the BamA-TamB interaction is more ubiquitous among diderms, we examined BamA-TamB interactions in Salmonella enterica serovar Typhimurium (St). Interestingly, even though St encodes a TamA protein that interacts with TamB, we observed that the TamB DUF490 of St interacts with BamA in this organism. Our combined findings strongly suggest that the TamB-BamA interaction occurs independent of the TamA component of the TAM protein export system.

摘要

莱姆病是美国最主要的蜱传感染病,由病原体螺旋体伯氏疏螺旋体引起,该病原体以前被称为伯氏疏螺旋体。真细菌,或具有双层膜超微结构的细菌,如伯氏疏螺旋体,具有多种输送和整合外膜蛋白(OMPs)的方法。大多数完整的 OMP 通过β-桶组装机(BAM)复合物输送。该复合物由形成通道的 OMP BamA 和与 BamA 的五个周质、多肽转运相关(POTRA)结构域相互作用的辅助脂蛋白组成。另一个系统,易位和组装模块(TAM)系统,也与 OMP 组装和输出有关。TAM 系统由两个蛋白组成,BamA 同源物 TamA 具有三个 POTRA 结构域和内膜蛋白 TamB。TamB 的特征是其 C 末端 DUF490 结构域与 TamA 的 POTRA 结构域相互作用。有趣的是,虽然 TamB 几乎存在于所有真细菌中,包括伯氏疏螺旋体,但 TamA 几乎仅存在于变形菌门中。这强烈表明 TamB 在大多数真细菌中具有与 TamA 无关的作用。我们之前证明了 BamA 在伯氏疏螺旋体中与 TamB 相互作用,并假设这是由 BamA 的 POTRA 结构域与 TamB 的 DUF490 结构域相互作用促成的。在这项研究中,我们利用蛋白-蛋白共纯化测定法从经验上证明了伯氏疏螺旋体的 TamB DUF490 结构域与 BamA 的 POTRA2 和 POTRA3 相互作用。我们还观察到 TamB 的 DUF490 结构域与辅助脂蛋白 BamB 相互作用。为了检查 BamA-TamB 相互作用是否在真细菌中更为普遍,我们在鼠伤寒沙门氏菌(St)中检查了 BamA-TamB 相互作用。有趣的是,尽管 St 编码了一种与 TamB 相互作用的 TamA 蛋白,但我们观察到 St 的 TamB DUF490 结构域在该生物体中与 BamA 相互作用。我们的综合发现强烈表明,TamB-BamA 相互作用发生在 TAM 蛋白输出系统的 TamA 成分之外。

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