Akiyama Y, Inada T, Nakamura Y, Ito K
Institute for Virus Research, Kyoto University, Japan.
J Bacteriol. 1990 Jun;172(6):2888-93. doi: 10.1128/jb.172.6.2888-2893.1990.
SecY is an Escherichia coli integral membrane protein required for efficient translocation of other proteins across the cytoplasmic membrane; it is embedded in this membrane by the 10 transmembrane segments. Among several SecY-alkaline phosphatase (PhoA) fusion proteins that we constructed previously, SecY-PhoA fusion 3-3, in which PhoA is fused to the third periplasmic region of SecY just after the fifth transmembrane segment, was found to be subject to rapid proteolytic processing in vivo. Both the SecY and PhoA products of this cleavage have been identified immunologically. In contrast, cleavage of SecY-PhoA 3-3 was barely observed in a lep mutant with a temperature-sensitive leader peptidase. The full-length fusion protein accumulated in this mutant was cleaved in vitro by the purified leader peptidase. A sequence Ala-202-Ile-Ala located near the proposed interface between transmembrane segment 5 and periplasmic domain 3 of SecY was found to be responsible for the recognition and cleavage by the leader peptidase, since a mutated fusion protein with Phe-Ile-Phe at this position was no longer cleaved even in the wild-type cells. These results indicate that SecY contains a potential leader peptidase cleavage site that undergoes cleavage if the PhoA sequence is attached carboxy terminally. Thus, transmembrane segment 5 of SecY can fulfill both of the two important functions of the signal peptide, translocation and cleavage, although the latter function is cryptic in the normal SecY protein.
SecY是一种大肠杆菌内膜蛋白,是其他蛋白质有效跨细胞质膜转运所必需的;它通过10个跨膜片段嵌入该膜中。在我们之前构建的几种SecY-碱性磷酸酶(PhoA)融合蛋白中,SecY-PhoA融合蛋白3-3(其中PhoA在第五个跨膜片段之后与SecY的第三个周质区域融合)在体内会受到快速的蛋白水解加工。这种切割产生的SecY和PhoA产物均已通过免疫学方法鉴定。相比之下,在具有温度敏感型前导肽酶的lep突变体中,几乎未观察到SecY-PhoA 3-3的切割。在该突变体中积累的全长融合蛋白在体外被纯化的前导肽酶切割。发现位于SecY跨膜片段5和周质结构域3之间推测界面附近的序列Ala-202-Ile-Ala负责前导肽酶的识别和切割,因为在该位置具有Phe-Ile-Phe的突变融合蛋白即使在野生型细胞中也不再被切割。这些结果表明,SecY含有一个潜在的前导肽酶切割位点,如果PhoA序列连接在羧基末端,则会发生切割。因此,SecY的跨膜片段5可以履行信号肽的两个重要功能,即转运和切割,尽管后一种功能在正常的SecY蛋白中是隐藏的。