Collinet B, Yuzawa H, Chen T, Herrera C, Missiakas D
Department of Microbiology, Immunology & Molecular Genetics, University of California at Los Angeles, California 90095, USA
J Biol Chem. 2000 Oct 27;275(43):33898-904. doi: 10.1074/jbc.m006214200.
The Escherichia coli sigmaE regulon has evolved to sense the presence of misfolded proteins in the bacterial envelope. Expression of periplasmic chaperones and folding catalysts is under the control of sigmaE RNA polymerase. The N-terminal domain of RseA sequesters sigmaE in the cytoplasmic membrane, preventing its association with core RNA polymerase. The C-terminal domain of RseA interacts with RseB, a periplasmic protein. The relative concentration of sigmaE:RseA:RseB is 2:5:1 and this ratio remains unaltered upon heat shock induction of the sigmaE regulon. Purification from crude cellular extracts yields cytoplasmic, soluble sigmaE RNA polymerase as well as membrane sequestered sigmaE.RseA and sigmaE.RseA.RseB. RseB binding to the C-terminal domain of RseA increases the affinity of RseA for sigmaE by 2- to 3-fold (Kd 50-100 nM). RseB binds also to the misfolded aggregates of MalE31, a variant of maltose binding protein that forms inclusion bodies in the periplasm. We discuss a model whereby the RseB-RiseA interaction represents a measure for misfolded polypeptides in the bacterial envelope, modulating the assembly of sigmaE RNA polymerase and the cellular heat shock response.
大肠杆菌σE调控子已经进化到能够感知细菌包膜中错误折叠蛋白质的存在。周质伴侣蛋白和折叠催化剂的表达受σE RNA聚合酶的控制。RseA的N端结构域将σE隔离在细胞质膜中,阻止其与核心RNA聚合酶结合。RseA的C端结构域与周质蛋白RseB相互作用。σE:RseA:RseB的相对浓度为2:5:1,在热休克诱导σE调控子时,该比例保持不变。从粗细胞提取物中纯化可得到细胞质可溶性σE RNA聚合酶以及膜隔离的σE.RseA和σE.RseA.RseB。RseB与RseA的C端结构域结合可使RseA对σE的亲和力提高2至3倍(解离常数为50 - 100 nM)。RseB还与麦芽糖结合蛋白变体MalE31的错误折叠聚集体结合,MalE31在周质中形成包涵体。我们讨论了一个模型,其中RseB - RiseA相互作用代表了细菌包膜中错误折叠多肽的一种度量方式,调节σE RNA聚合酶的组装和细胞热休克反应。