Broome-Smith J K, Gnaneshan S, Hunt L A, Mehraein-Ghomi F, Hashemzadeh-Bonehi L, Tadayyon M, Hennessey E S
Microbial Genetics Group, School of Biological Sciences, University of Sussex, Falmer, Brighton, UK.
Mol Membr Biol. 1994 Jan-Mar;11(1):3-8. doi: 10.3109/09687689409161023.
Most proteins destined for secretion are synthesized with amino-terminal extensions, known as signal peptides, which play a vital role in their translocation across the membrane bordering the cytoplasm. Following translocation across the eukaryotic endoplasmic reticulum (ER) membrane or the bacterial cytoplasmic membrane, signal peptides are proteolytically removed from the preproteins. The process of membrane protein assembly can be likened to that of protein export in that it involves the translocation of portions of proteins across membranes. Moreover, the topological similarities between eukaryotic ER and plasma membrane proteins and bacterial cytoplasmic membrane proteins suggest that the mechanisms of membrane protein assembly may, like those of protein export, share fundamental similarities in eukaryotic and bacterial cells. However, whilst many of the ER and plasma membrane proteins of higher eukaryotes are synthesized with cleavable signal peptides, the same is true of only very few bacterial cytoplasmic membrane proteins. This fact is not widely appreciated, probably because certain exceptional (signal peptide-containing) bacterial membrane proteins, such as the major coat protein of bacteriophage M13, have been the subject of extensive investigations. In this review we highlight this anomaly and discuss it within the general context of membrane protein topology.
大多数 destined for secretion 的蛋白质在合成时带有氨基末端延伸序列,即信号肽,这些信号肽在其穿过与细胞质相邻的膜的过程中起着至关重要的作用。在穿过真核内质网(ER)膜或细菌细胞质膜后,信号肽会从前体蛋白上被蛋白酶水解去除。膜蛋白组装过程可以比作蛋白质输出过程,因为它涉及蛋白质部分片段跨膜转运。此外,真核 ER 和质膜蛋白与细菌细胞质膜蛋白之间的拓扑相似性表明,膜蛋白组装机制可能与蛋白质输出机制一样,在真核细胞和细菌细胞中具有基本的相似性。然而,虽然高等真核生物的许多 ER 和质膜蛋白是由可裂解的信号肽合成的,但只有极少数细菌细胞质膜蛋白也是如此。这一事实并未得到广泛认可,可能是因为某些特殊的(含信号肽的)细菌膜蛋白,如噬菌体 M13 的主要外壳蛋白,一直是广泛研究的对象。在本综述中,我们强调了这一异常现象,并在膜蛋白拓扑结构的总体背景下进行讨论。