Tishgarten T, Yin F F, Faucher K M, Dluhy R A, Grant T R, Fischer von Mollard G, Stevens T H, Lipscomb L A
Department of Biochemistry & Molecular Biology, University of Georgia, Athens 30602, USA.
Protein Sci. 1999 Nov;8(11):2465-73. doi: 10.1110/ps.8.11.2465.
In protein transport between organelles, interactions of v- and t-SNARE proteins are required for fusion of protein-containing vesicles with appropriate target compartments. Mammalian SNARE proteins have been observed to interact with NSF and SNAP, and yeast SNAREs with yeast homologues of NSF and SNAP proteins. This observation led to the hypothesis that, despite low sequence homology, SNARE proteins are structurally similar among eukaryotes. SNARE proteins can be classified into two groups depending on whether they interact with SNARE binding partners via conserved glutamine (Q-SNAREs) or arginine (R-SNAREs). Much of the published structural data available is for SNAREs involved in exocytosis (either in yeast or synaptic vesicles). This paper describes circular dichroism, Fourier transform infrared spectroscopy, and dynamic light scattering data for a set of yeast v- and t-SNARE proteins, Vti1p and Pep12p, that are Q-SNAREs involved in intracellular trafficking. Our results suggest that the secondary structure of Vti1p is highly alpha-helical and that Vti1p forms multimers under a variety of solution conditions. In these respects, Vti1p appears to be distinct from R-SNARE proteins characterized previously. The alpha-helicity of Vti1p is similar to that of Q-SNARE proteins characterized previously. Pep12p, a Q-SNARE, is highly alpha-helical. It is distinct from other Q-SNAREs in that it forms dimers under many of the solution conditions tested in our experiments. The results presented in this paper are among the first to suggest heterogeneity in the functioning of SNARE complexes.
在细胞器之间的蛋白质运输过程中,含蛋白质的囊泡与适当的靶区室融合需要v-SNARE蛋白和t-SNARE蛋白的相互作用。已观察到哺乳动物的SNARE蛋白与NSF和SNAP相互作用,酵母的SNARE蛋白与NSF和SNAP蛋白的酵母同源物相互作用。这一观察结果导致了这样一种假设,即尽管序列同源性较低,但SNARE蛋白在真核生物中结构相似。根据SNARE蛋白是通过保守的谷氨酰胺(Q-SNAREs)还是精氨酸(R-SNAREs)与SNARE结合伴侣相互作用,可将其分为两组。现有的许多已发表的结构数据是关于参与胞吐作用的SNARE蛋白(无论是在酵母中还是突触小泡中)。本文描述了一组酵母v-SNARE蛋白和t-SNARE蛋白Vti1p和Pep12p的圆二色性、傅里叶变换红外光谱和动态光散射数据,它们是参与细胞内运输的Q-SNARE蛋白。我们的结果表明,Vti1p的二级结构高度α螺旋,并且Vti1p在多种溶液条件下形成多聚体。在这些方面,Vti1p似乎与先前表征的R-SNARE蛋白不同。Vti1p的α螺旋性与先前表征的Q-SNARE蛋白相似。Pep12p是一种Q-SNARE蛋白,高度α螺旋。它与其他Q-SNARE蛋白的不同之处在于,在我们实验测试的许多溶液条件下它形成二聚体。本文给出的结果首次表明SNARE复合体功能存在异质性。