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Arf1p Chs5p and the ChAPs are required for export of specialized cargo from the Golgi

机译:从高尔基出口特殊货物需要Arf1pChs5p和ChAP

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摘要

In Saccharomyces cerevisiae, the synthesis of chitin is temporally and spatially regulated through the transport of Chs3p (chitin synthase III) to the plasma membrane in the bud neck region. Traffic of Chs3p from the trans-Golgi network (TGN)/early endosome to the plasma membrane requires the function of Chs5p and Chs6p. Chs6p belongs to a family of four proteins that we have named ChAPs for Chs5p-Arf1p-binding Proteins. Here, we show that all ChAPs physically interact not only with Chs5p but also with the small GTPase Arf1p. A short sequence at the C-terminus of the ChAPs is required for protein function and the ability to bind to Chs5p. Simultaneous disruption of two members, Δbud7 and Δbch1, phenocopies a Δchs6 or Δchs5 deletion with respect to Chs3p transport. Moreover, the ChAPs interact with each other and can form complexes. In addition, they are all at least partially localized to the TGN in a Chs5p-dependent manner. Most importantly, several ChAPs can interact physically with Chs3p. We propose that the ChAPs facilitate export of cargo out of the Golgi.
机译:在酿酒酵母中,几丁质的合成在时间和空间上是通过Chs3p(几丁质合酶III)向芽颈区域质膜的转运来调节的。 Chs3p从反高尔基网络(TGN)/早期内体向质膜的运输需要Chs5p和Chs6p的功能。 Chs6p属于四个蛋白家族,我们将其命名为ChAPs(Chs5p-Arf1p结合蛋白)。在这里,我们显示所有ChAP不仅与Chs5p物理相互作用,而且还与小GTPase Arf1p物理相互作用。 ChAPs C末端的短序列是蛋白质功能和结合Chs5p的能力所必需的。同时破坏两个成员Δbud7和Δbch1,表型反映了相对于Chs3p转运的Δchs6或Δchs5缺失。而且,ChAP彼此相互作用并且可以形成复合物。另外,它们全部以Chs5p依赖性方式至少部分地定位于TGN。最重要的是,几个ChAP可以与Chs3p进行物理交互。我们建议,《行动计划》有助于从高尔基出口货物。

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