Müller G, Zimmermann R
Institut für Physiologische Chemie der Universität München, FRG.
EMBO J. 1987 Jul;6(7):2099-107. doi: 10.1002/j.1460-2075.1987.tb02476.x.
Honeybee prepromelittin is correctly processed and imported by dog pancreas microsomes. Insertion of prepromelittin into microsomal membranes, as assayed by signal sequence removal, does not depend on signal recognition particle (SRP) and docking protein. We addressed the question as to how prepromelittin bypasses the SRP/docking protein system. Hybrid proteins between prepromelittin, or carboxy-terminally truncated derivatives, and the cytoplasmic protein dihydrofolate reductase from mouse were constructed. These hybrid proteins were analysed for membrane insertion and sequestration into microsomes. The results suggest the following: (i) The signal sequence of prepromelittin is capable of interacting with the SRP/docking protein system, but this interaction is not mandatory for membrane insertion; this is related to the small size of prepromelittin. (ii) In prepromelittin a cluster of negatively charged amino acids must be balanced by a cluster of positively charged amino acids in order to allow membrane insertion. (iii) In general, a signal sequence can be sufficient to mediate membrane insertion independently of SRP and docking protein in the case of short precursor proteins; however, the presence and distribution of charged amino acids within the mature part of these precursors can play distinct roles.
蜜蜂前催乳素原可被犬胰腺微粒体正确加工和导入。以前体信号序列去除法测定,前催乳素原插入微粒体膜并不依赖信号识别颗粒(SRP)和对接蛋白。我们探讨了前催乳素原如何绕过SRP/对接蛋白系统这一问题。构建了前催乳素原或其羧基末端截短衍生物与小鼠细胞质蛋白二氢叶酸还原酶之间的杂合蛋白。分析了这些杂合蛋白的膜插入及被隔离于微粒体的情况。结果表明:(i)前催乳素原的信号序列能够与SRP/对接蛋白系统相互作用,但这种相互作用对于膜插入并非必需;这与前催乳素原的小尺寸有关。(ii)在前催乳素原中,一簇带负电荷的氨基酸必须由一簇带正电荷的氨基酸来平衡,以便实现膜插入。(iii)一般来说,对于短的前体蛋白,一个信号序列就足以独立于SRP和对接蛋白介导膜插入;然而,这些前体蛋白成熟部分中带电氨基酸的存在和分布可能发挥不同作用。