Provincial University Key Laboratory of Cellular Stress Response and Metabolic Regulation, College of Life Sciences, Fujian Normal University, Fuzhou City, Fujian Province, 350117, China.
Provincial University Key Laboratory of Cellular Stress Response and Metabolic Regulation, College of Life Sciences, Fujian Normal University, Fuzhou City, Fujian Province, 350117, China.
Biochem Biophys Res Commun. 2019 Apr 23;512(1):100-105. doi: 10.1016/j.bbrc.2019.03.004. Epub 2019 Mar 11.
Protein-protein interaction, including protein homo-oligomerization, is commonly believed to occur through a specific interface made of a limited number of amino acid residues. Here our systematic in vivo photo-crosslinking analysis via genetically incorporated unnatural amino acids unexpectedly shows that the dimerization of HdeA, an acid stress chaperone, is mediated by the residues along its whole polypeptide. These include those "forbidden" residues that are far away from the dimerization interface as judged according to the reported 3-D structure. We demonstrate that such dimerization, though intriguing, is neither a result of protein over-expression nor of any structural disturbance caused by the residue replacement. Similar unexpected dimerization also occurs for two other oligomeric proteins, IbpB (a molecular chaperone existing as polydispersed oligomers in vitro) and DegP (a protease existing as hexamers in vitro). In contrast to these three proteins, dimerization of a few other oligomeric proteins (e.g., OmpF, LamB, SurA, FtsZ and FkpA) that we similarly examined in living cells seems to be mediated only by specific residues. Together, our unexpected observations suggest that, for some oligomeric proteins such as HdeA, IbpB and DegP, their subunit interactions in living cells can also be mediated by residues other than those located at the interfaces as revealed by in vitro structure determination. Our observations might be partially explained by the formation of "encounter complex" or by protein conformational dynamics. Our findings provide new insights on understanding protein-protein interactions and encounter complex formation in living cells.
蛋白质-蛋白质相互作用,包括蛋白质同型寡聚化,通常被认为是通过由有限数量的氨基酸残基组成的特定界面发生的。在这里,我们通过遗传掺入非天然氨基酸进行了系统的体内光交联分析,出乎意料地表明,酸应激伴侣 HdeA 的二聚化是由其整条多肽上的残基介导的。这些残基包括那些根据报道的 3D 结构判断远离二聚化界面的“禁止”残基。我们证明,这种二聚化虽然有趣,但既不是蛋白质过表达的结果,也不是由残基替换引起的任何结构干扰的结果。另外两种寡聚蛋白,IbpB(一种在体外以多分散寡聚体形式存在的分子伴侣)和 DegP(一种在体外以六聚体形式存在的蛋白酶),也会发生类似的意外二聚化。与这三种蛋白不同,我们在活细胞中同样检测到的其他几种寡聚蛋白(例如 OmpF、LamB、SurA、FtsZ 和 FkpA)的二聚化似乎仅由特定残基介导。总的来说,我们意想不到的观察结果表明,对于 HdeA、IbpB 和 DegP 等一些寡聚蛋白,其在活细胞中的亚基相互作用也可以由位于界面以外的残基介导,这是通过体外结构测定揭示的。我们的观察结果可以部分解释为“遭遇复合物”的形成或蛋白质构象动力学。我们的发现为理解活细胞中的蛋白质-蛋白质相互作用和遭遇复合物形成提供了新的见解。