Biozentrum, Growth & Development, University of Basel, Klingelbergstrasse 70, CH-4056 Basel, Switzerland.
J Biol Chem. 2011 Jul 15;286(28):25027-38. doi: 10.1074/jbc.M110.215657. Epub 2011 Apr 11.
Intracellular transport is largely dependent on vesicles that bud off from one compartment and fuse with the target compartment. The first contact of an incoming vesicle with the target membrane is mediated by tethering factors. The tethering factor responsible for recruiting Golgi-derived vesicles to the ER is the Dsl1 tethering complex, which is comprised of the essential proteins Dsl1p, Dsl3p, and Tip20p. We investigated the role of the Tip20p subunit at the ER by analyzing two mutants, tip20-5 and tip20-8. Both mutants contained multiple mutations that were scattered throughout the TIP20 sequence. Individual mutations could not reproduce the temperature-sensitive phenotype of tip20-5 and tip20-8, indicating that the overall structure of Tip20p might be altered in the mutants. Using molecular dynamics simulations comparing Tip20p and Tip20-8p revealed that some regions, particularly the N-terminal domain and parts of the stalk region, were more flexible in the mutant protein, consistent with its increased susceptibility to proteolysis. Both Tip20-5p and Tip20-8p mutants prevented proper ER trans-SNARE complex assembly in vitro. Moreover, Tip20p mutant proteins disturbed the interaction between Dsl1p and the coatomer coat complex, indicating that the Dsl1p-coatomer interaction could be stabilized or regulated by Tip20p. We provide evidence for a direct role of the Dsl1 complex, in particular Tip20p, in the formation and stabilization of ER SNARE complexes.
细胞内运输在很大程度上依赖于从一个隔室出芽并与靶隔室融合的小泡。进入的小泡与靶膜的最初接触由系留因子介导。负责将高尔基体衍生的小泡募集到内质网的系留因子是 Dsl1 系留复合物,它由必需蛋白 Dsl1p、Dsl3p 和 Tip20p 组成。我们通过分析两个突变体 tip20-5 和 tip20-8 来研究 Tip20p 在 ER 中的作用。这两个突变体都包含散布在 TIP20 序列中的多个突变。单个突变不能再现 tip20-5 和 tip20-8 的温度敏感表型,表明突变体中 Tip20p 的整体结构可能发生了改变。使用比较 Tip20p 和 Tip20-8p 的分子动力学模拟表明,一些区域,特别是 N 端结构域和部分茎区,在突变蛋白中更具柔韧性,这与其对蛋白水解的敏感性增加一致。Tip20-5p 和 Tip20-8p 突变体都阻止了内质网跨 SNARE 复合物在体外的正确组装。此外,Tip20p 突变蛋白干扰了 Dsl1p 与衣壳蛋白衣壳复合物的相互作用,表明 Dsl1p-衣壳蛋白相互作用可以被 Tip20p 稳定或调节。我们提供了证据证明 Dsl1 复合物,特别是 Tip20p,在 ER SNARE 复合物的形成和稳定中起直接作用。