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High-Copy Suppressor Analysis Reveals a Physical Interaction between Sec34p and Sec35p a Protein Implicated in Vesicle Docking

机译:高复制抑制物分析揭示了Sec34p和Sec35p之间的物理相互作用该蛋白与囊泡对接有关

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摘要

A temperature-sensitive mutant, sec34-2, is defective in the late stages of endoplasmic reticulum (ER)-to-Golgi transport. A high-copy suppressor screen that uses the sec34-2 mutant has resulted in the identification of the SEC34 structural gene and a novel gene called GRP1. GRP1 encodes a previously unidentified hydrophilic yeast protein related to the mammalian Golgi protein golgin-160. Although GRP1 is not essential for growth, the grp1Δ mutation displays synthetic lethal interactions with several mutations that result in ER accumulation and a block in the late stages of ER-to-Golgi transport, but not with those that block the budding of vesicles from the ER. Our findings suggest that Grp1p may facilitate membrane traffic indirectly, possibly by maintaining Golgi function. In an effort to identify genes whose products physically interact with Sec34p, we also tested the ability of overexpressed SEC34 to suppress known secretory mutations that block vesicular traffic between the ER and the Golgi. This screen revealed that SEC34 specifically suppresses sec35-1. SEC34 encodes a hydrophilic protein of ∼100 kDa. Like Sec35p, which has been implicated in the tethering of ER-derived vesicles to the Golgi, Sec34p is predominantly soluble. Sec34p and Sec35p stably associate with each other to form a multiprotein complex of ∼480 kDa. These data indicate that Sec34p acts in conjunction with Sec35p to mediate a common step in vesicular traffic.
机译:对温度敏感的突变体sec34-2在内质网(ER)到高尔基体转运的后期有缺陷。使用sec34-2突变体的高拷贝抑制基因筛选已鉴定出SEC34结构基因和一个名为GRP1的新基因。 GRP1编码与哺乳动物高尔基体蛋白golgin-160相关的先前未鉴定的亲水性酵母蛋白。尽管GRP1对于生长不是必需的,但grp1Δ突变显示出合成的致命相互作用,其中有几种突变会导致ER积累,并在ER到高尔基体转运的后期受到阻滞,但不是与那些阻止小泡发芽的突变相互作用。 ER。我们的发现表明,Grp1p可能通过维持高尔基体功能间接促进膜运输。为了鉴定其产物与Sec34p发生物理相互作用的基因,我们还测试了过表达SEC34抑制阻断ER与高尔基体之间水泡运输的已知分泌突变的能力。该屏幕显示SEC34特异性抑制sec35-1。 SEC34编码约100 kDa的亲水蛋白。像Sec35p一样,它与ER来源的小泡与高尔基体的系留有牵连,Sec34p主要是可溶的。 Sec34p和Sec35p彼此稳定结合,形成约480 kDa的多蛋白复合物。这些数据表明Sec34p与Sec35p共同发挥作用,介导水泡运输中的共同步骤。

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