Hata Y, Südhof T C
Howard Hughes Medical Institute, University of Texas Southwestern Medical School, Dallas 75235, USA.
J Biol Chem. 1995 Jun 2;270(22):13022-8. doi: 10.1074/jbc.270.22.13022.
Munc-18-1 is a 67-kDa neuronal protein that binds tightly to syntaxin 1 and functions in synaptic vesicle exocytosis (Hata, Y., Slaughter, C.A., and Südhof, T.C. (1993a) Nature 366, 347-351). We have now characterized a new Munc-18 isoform, Munc-18-2, that exhibits 63% amino acid sequence identity with Munc-18-1. Munc-18-2 is expressed in most tissues, whereas Munc-18-1 is primarily expressed in brain. Using recombinant Munc-18-1 and Munc-18-2 produced in COS cells, we show that both forms of Munc-18 bind tightly to syntaxins 1A, 2, and 3 but not to syntaxin 4. In an independent approach to study the binding specificities of Munc-18-1 and Munc-18-2, we used the yeast two-hybrid system. This assay system depends on protein-protein interactions in the cell nucleus. We validated its utility for studying membrane trafficking proteins by testing well characterized interactions between cytosolic proteins that are known to be physiologically important in exocytosis. Strong interactions, such as the binding of syntaxins 1-4 with SNAP-25, were effectively detected by the yeast two-hybrid assay, but weak binding, such as the binding of syntaxins to synaptotagmin or of synaptotagmin to neurexins, was not. Studies on full-length and truncated forms of Munc-18s by the yeast two-hybrid system confirmed their interactions with syntaxins. Both the N and the C terminus of Munc-18 were essential for binding. Munc-18-1 and Munc-18-2 bind only to syntaxins 1A, 2, and 3 but not 4 and 5 by yeast-two hybrid system assays. Our studies demonstrate that neural and non-neural tissues have distinct forms of Munc-18, which may function in different types of exocytosis. The lack of specificity of the interactions between syntaxins and Munc-18s indicates that specificity of membrane trafficking reactions is not dependent on this interaction.
Munc-18-1是一种67 kDa的神经元蛋白,它与 syntaxin 1紧密结合,并在突触小泡胞吐作用中发挥作用(羽田 洋、斯劳特 C.A.、和苏多霍夫 T.C.(1993a)《自然》366卷,347 - 351页)。我们现在鉴定出一种新的Munc-18同工型,即Munc-18-2,它与Munc-18-1的氨基酸序列同一性为63%。Munc-18-2在大多数组织中表达,而Munc-18-1主要在脑中表达。利用在COS细胞中产生的重组Munc-18-1和Munc-18-2,我们发现这两种形式的Munc-18都与syntaxin 1A、2和3紧密结合,但不与syntaxin 4结合。在一项独立研究Munc-18-1和Munc-18-2结合特异性的实验中,我们使用了酵母双杂交系统。该检测系统依赖于细胞核中的蛋白质 - 蛋白质相互作用。我们通过测试已知在胞吐作用中具有重要生理意义的胞质蛋白之间已充分表征的相互作用,验证了其在研究膜转运蛋白方面的实用性。酵母双杂交检测有效地检测到了强相互作用,如syntaxin 1 - 4与SNAP - 25的结合,但未检测到弱相互作用,如syntaxin与突触结合蛋白的结合或突触结合蛋白与神经配素的结合。通过酵母双杂交系统对Munc-18全长和截短形式的研究证实了它们与syntaxin的相互作用。Munc-18的N端和C端对于结合都是必不可少的。通过酵母双杂交系统检测,Munc-18-1和Munc-18-2仅与syntaxin 1A、2和3结合,而不与4和5结合。我们的研究表明,神经组织和非神经组织具有不同形式的Munc-18,它们可能在不同类型的胞吐作用中发挥作用。syntaxin与Munc-18之间相互作用缺乏特异性表明,膜转运反应的特异性并不依赖于这种相互作用。