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液泡激酶 Yck3p 对效应复合物 HOPS 的磷酸化赋予了 Rab 核苷酸对液泡对接和融合的特异性。

Phosphorylation of the effector complex HOPS by the vacuolar kinase Yck3p confers Rab nucleotide specificity for vacuole docking and fusion.

机构信息

Department of Biochemistry, Geisel School of Medicine at Dartmouth, Hanover, NH 03755-3844, USA.

出版信息

Mol Biol Cell. 2012 Sep;23(17):3429-37. doi: 10.1091/mbc.E12-04-0279. Epub 2012 Jul 11.

Abstract

The homotypic fusion of yeast vacuoles requires the Rab-family GTPase Ypt7p and its effector complex, homotypic fusion and vacuole protein sorting complex (HOPS). Although the vacuolar kinase Yck3p is required for the sensitivity of vacuole fusion to proteins that regulate the Rab GTPase cycle-Gdi1p (GDP-dissociation inhibitor [GDI]) or Gyp1p/Gyp7p (GTPase-activating protein)-this kinase phosphorylates HOPS rather than Ypt7p. We addressed this puzzle in reconstituted proteoliposome fusion reactions with all-purified components. In the presence of HOPS and Sec17p/Sec18p, there is comparable fusion of 4-SNARE (soluble N-ethylmaleimide-sensitive factor attachment protein receptor) proteoliposomes when they have Ypt7p bearing either GDP or GTP, a striking exception to the rule that only GTP-bound forms of Ras-superfamily GTPases have active conformations. However, the phosphorylation of HOPS by recombinant Yck3p confers a strict requirement for GTP-bound Ypt7p for binding phosphorylated HOPS, for optimal membrane tethering, and for proteoliposome fusion. Added GTPase-activating protein promotes GTP hydrolysis by Ypt7p, and added GDI captures Ypt7p in its GDP-bound state during nucleotide cycling. In either case, the net conversion of Ypt7:GTP to Ypt7:GDP has no effect on HOPS binding or activity but blocks fusion mediated by phosphorylated HOPS. Thus guanine nucleotide specificity of the vacuolar fusion Rab Ypt7p is conferred through downstream posttranslational modification of its effector complex.

摘要

酵母液泡的同源融合需要 Rab 家族 GTPase Ypt7p 及其效应物复合物同源融合和液泡蛋白分选复合物 (HOPS)。尽管液泡激酶 Yck3p 是液泡融合对调节 Rab GTP 循环的蛋白质(Gdi1p(GDP 解离抑制剂 [GDI])或 Gyp1p/Gyp7p(GTPase 激活蛋白))敏感所必需的,但这种激酶磷酸化的是 HOPS 而不是 Ypt7p。我们在使用所有纯化成分的重组蛋白脂质体融合反应中解决了这个难题。在 HOPS 和 Sec17p/Sec18p 的存在下,当 Ypt7p 带有 GDP 或 GTP 时,4-SNARE(可溶性 N-乙基马来酰亚胺敏感因子附着蛋白受体)蛋白脂质体的融合具有可比性,这是 Ras 超家族 GTPases 的唯一例外规则,即只有 GTP 结合形式的 Ras 超家族 GTPases 具有活性构象。然而,重组 Yck3p 对 HOPS 的磷酸化赋予了对结合磷酸化 HOPS 的 GTP 结合 Ypt7p 的严格要求,以实现最佳的膜连接和蛋白脂质体融合。添加的 GTP 酶激活蛋白促进 Ypt7p 的 GTP 水解,并且在核苷酸循环期间,添加的 GDI 将 Ypt7p 捕获在其 GDP 结合状态。在这两种情况下,Ypt7:GTP 向 Ypt7:GDP 的净转化对 HOPS 结合或活性没有影响,但会阻止由磷酸化 HOPS 介导的融合。因此,液泡融合 Rab Ypt7p 的鸟嘌呤核苷酸特异性是通过其效应物复合物的下游翻译后修饰赋予的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df8d/3431944/b1e14a6dbb4d/3429fig1.jpg

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