van Voorst F, Vereyken I J, de Kruijff B
CBLE, Institute of Biomembranes, Department of Biochemistry of Membranes, Utrecht University, Padualaan 8, 3584 CH, Utrecht, The Netherlands.
FEBS Lett. 2000 Dec 1;486(1):57-62. doi: 10.1016/s0014-5793(00)02209-2.
SecA is the central component of the protein-translocation machinery of Escherichia coli. It is able to interact with the precursor protein, the chaperone SecB, the integral membrane protein complex SecYEG, acidic phospholipids and its own mRNA. We studied the interaction between prePhoE and SecA by using a site-specific photocrosslinking strategy. We found that SecA is able to interact with both the signal sequence and the mature domain of prePhoE. Furthermore, this interaction was dependent on the type of nucleotide bound. SecA in the ADP-bound conformation was unable to crosslink with the precursor, whereas the ATP-bound conformation was active in precursor crosslinking. The SecA-precursor interaction was maintained in the presence of E. coli phospholipids but was loosened by the presence of phosphatidylglycerol bilayers. Examining SecA ATP binding site mutants demonstrated that ATP hydrolysis at the N-terminal high affinity binding site is responsible for the changed interaction with the preprotein.
SecA是大肠杆菌蛋白质转运机制的核心组成部分。它能够与前体蛋白、伴侣蛋白SecB、整合膜蛋白复合物SecYEG、酸性磷脂及其自身的mRNA相互作用。我们采用位点特异性光交联策略研究了前PhoE与SecA之间的相互作用。我们发现SecA能够与前PhoE的信号序列和成熟结构域相互作用。此外,这种相互作用取决于所结合核苷酸的类型。处于ADP结合构象的SecA无法与前体发生交联,而处于ATP结合构象的SecA在前体交联中具有活性。SecA与前体的相互作用在存在大肠杆菌磷脂的情况下得以维持,但在存在磷脂酰甘油双层时会减弱。对SecA ATP结合位点突变体的研究表明,N端高亲和力结合位点处的ATP水解导致了与前体蛋白相互作用的改变。