Bassham D C, Sanderfoot A A, Kovaleva V, Zheng H, Raikhel N V
Michigan State University-Department of Energy Plant Research Laboratory, Michigan State University, East Lansing, Michigan 48824-1312, USA.
Mol Biol Cell. 2000 Jul;11(7):2251-65. doi: 10.1091/mbc.11.7.2251.
The Sec1p family of proteins are thought to be involved in the regulation of vesicle fusion reactions through interaction with t-SNAREs (target soluble N-ethylmaleimide-sensitive factor attachment protein receptors) at the target membrane. AtVPS45 is a member of this family from Arabidopsis thaliana that we now demonstrate to be present on the trans-Golgi network (TGN), where it colocalizes with the vacuolar cargo receptor AtELP. Unlike yeast Vps45p, AtVPS45 does not interact with, or colocalize with, the prevacuolar t-SNARE AtPEP12. Instead, AtVPS45 interacts with two t-SNAREs, AtTLG2a and AtTLG2b, that show similarity to the yeast t-SNARE Tlg2p. AtTLG2a and -b each colocalize with AtVPS45 at the TGN; however, AtTLG2a is in a different region of the TGN than AtTLG2b by immunogold electron microscopy. Therefore, we propose that complexes containing AtVPS45 and either AtTLG2a or -b define functional subdomains of the TGN and may be required for different trafficking events. Among other Arabidopsis SNAREs, AtVPS45 antibodies preferentially coprecipitate AtVTI1b over the closely related isoform AtVTI1a, implying that AtVTI1a and AtVTI1b also have distinct functions within the cell. These data point to a functional complexity within the plant secretory pathway, where proteins encoded by gene families have specialized functions, rather than functional redundancy.
Sec1p蛋白家族被认为通过与靶膜上的t-SNAREs(靶可溶性N-乙基马来酰亚胺敏感因子附着蛋白受体)相互作用,参与囊泡融合反应的调控。AtVPS45是拟南芥中该家族的一个成员,我们现在证明它存在于反式高尔基体网络(TGN)上,在那里它与液泡货物受体AtELP共定位。与酵母Vps45p不同,AtVPS45不与液泡前体t-SNARE AtPEP12相互作用,也不与之共定位。相反,AtVPS45与两种t-SNAREs,AtTLG2a和AtTLG2b相互作用,它们与酵母t-SNARE Tlg2p具有相似性。AtTLG2a和-b都与AtVPS45在TGN处共定位;然而,通过免疫金电子显微镜观察,AtTLG2a在TGN中的区域与AtTLG2b不同。因此,我们提出含有AtVPS45和AtTLG2a或-b的复合物定义了TGN的功能亚域,可能是不同运输事件所必需的。在其他拟南芥SNAREs中,AtVPS45抗体优先共沉淀AtVTI1b而不是与之密切相关的异构体AtVTI1a,这意味着AtVTI1a和AtVTI1b在细胞内也具有不同的功能。这些数据表明植物分泌途径中存在功能复杂性,其中基因家族编码的蛋白质具有专门的功能,而不是功能冗余。