Department of Molecular and Cell Biology, University of California, Berkeley, CA 94720-3204, USA.
Mol Microbiol. 2010 Jun;76(6):1539-54. doi: 10.1111/j.1365-2958.2010.07184.x. Epub 2010 May 12.
Myxococcus xanthus moves by gliding motility powered by Type IV pili (S-motility) and a second motility system, A-motility, whose mechanism remains elusive despite the identification of approximately 40 A-motility genes. In this study, we used biochemistry and cell biology analyses to identify multi-protein complexes associated with A-motility. Previously, we showed that the N-terminal domain of FrzCD, the receptor for the frizzy chemosensory pathway, interacts with two A-motility proteins, AglZ and AgmU. Here we characterized AgmU, a protein that localized to both the periplasm and cytoplasm. On firm surfaces, AgmU-mCherry colocalized with AglZ as distributed clusters that remained fixed with respect to the substratum as cells moved forward. Cluster formation was favoured by hard surfaces where A-motility is favoured. In contrast, AgmU-mCherry clusters were not observed on soft agar surfaces or when cells were in large groups, conditions that favour S-motility. Using glutathione-S-transferase affinity chromatography, AgmU was found to interact either directly or indirectly with multiple A-motility proteins including AglZ, AglT, AgmK, AgmX, AglW and CglB. These proteins, important for the correct localization of AgmU and AglZ, appear to be organized as a motility complex, spanning the cytoplasm, inner membrane and the periplasm. Identification of this complex may be important for uncovering the mechanism of A-motility.
粘细菌黄杆菌通过依赖于 IV 型菌毛的滑动运动(S 运动)和第二种运动系统 A 运动进行运动,尽管已经鉴定了大约 40 个 A 运动基因,但 A 运动的机制仍然难以捉摸。在这项研究中,我们使用生物化学和细胞生物学分析来鉴定与 A 运动相关的多蛋白复合物。之前,我们表明,卷曲化学感觉途径的受体 FrzCD 的 N 端结构域与两种 A 运动蛋白 AglZ 和 AgmU 相互作用。在这里,我们对 AgmU 进行了表征,AgmU 是一种定位于周质和细胞质的蛋白质。在坚固的表面上,AgmU-mCherry 与 AglZ 共定位为分布的簇,这些簇相对于基质固定,因为细胞向前移动。簇的形成有利于 A 运动有利于的硬表面。相比之下,在软琼脂表面或当细胞聚集成大群时,不会观察到 AgmU-mCherry 簇,这些条件有利于 S 运动。使用谷胱甘肽 S-转移酶亲和层析,发现 AgmU 直接或间接与多种 A 运动蛋白相互作用,包括 AglZ、AglT、AgmK、AgmX、AglW 和 CglB。这些对于 AgmU 和 AglZ 的正确定位很重要的蛋白质似乎被组织成一个运动复合物,跨越细胞质、内膜和周质。鉴定这个复合物可能对揭示 A 运动的机制很重要。