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Proteomic and Biochemical Comparison of the Cellular Interaction Partners of Human VPS33A and VPS33B

机译:人VPS33A和VPS33B细胞相互作用伴侣的蛋白质组学和生化比较

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摘要

Multi-subunit tethering complexes control membrane fusion events in eukaryotic cells. Class C core vacuole/endosome tethering (CORVET) and homotypic fusion and vacuole protein sorting (HOPS) are two such complexes, both containing the Sec1/Munc18 protein subunit VPS33A. Metazoans additionally possess VPS33B, which has considerable sequence similarity to VPS33A but does not integrate into CORVET or HOPS complexes and instead stably interacts with VIPAR. It has been recently suggested that VPS33B and VIPAR comprise two subunits of a novel multi-subunit tethering complex (named “CHEVI”), perhaps analogous in configuration to CORVET and HOPS. We utilized the BioID proximity biotinylation assay to compare and contrast the interactomes of VPS33A and VPS33B. Overall, few proteins were identified as associating with both VPS33A and VPS33B, suggesting that these proteins have distinct sub-cellular localizations. Consistent with previous reports, we observed that VPS33A was co-localized with many components of class III phosphatidylinositol 3-kinase (PI3KC3) complexes: PIK3C3, PIK3R4, NRBF2, UVRAG and RUBICON. Although VPS33A clearly co-localized with several subunits of CORVET and HOPS in this assay, no proteins with the canonical CORVET/HOPS domain architecture were found to co-localize with VPS33B. Instead, we identified that VPS33B interacts directly with CCDC22, a member of the CCC complex. CCDC22 does not co-fractionate with VPS33B and VIPAR in gel filtration of human cell lysates, suggesting that CCDC22 interacts transiently with VPS33B/VIPAR rather than forming a stable complex with these proteins in cells. We also observed that the protein complex containing VPS33B and VIPAR is considerably smaller than CORVET/HOPS, suggesting that the CHEVI complex comprises just VPS33B and VIPAR.
机译:多亚基束缚复合物控制真核细胞中的膜融合事件。 C类核心液泡/内体束缚(CORVET),同型融合和液泡蛋白分选(HOPS)就是两个这样的复合体,都包含Sec1 / Munc18蛋白亚基VPS33A。后生动物还具有VPS33B,其与VPS33A具有相当的序列相似性,但不整合到CORVET或HOPS复合物中,而是稳定地与VIPAR相互作用。最近已经提出,VPS33B和VIPAR包含新颖的多亚基束缚复合物(命名为“ CHEVI”)的两个亚基,其构型可能类似于CORVET和HOPS。我们利用BioID邻近生物素化测定法来比较和对比VPS33A和VPS33B的相互作用基因组。总体而言,几乎没有蛋白质被确定与VPS33A和VPS33B相关,这表明这些蛋白质具有不同的亚细胞定位。与以前的报告一致,我们观察到VPS33A与III类磷脂酰肌醇3-激酶(PI3KC3)复合物的许多成分共定位:PIK3C3,PIK3R4,NRBF2,UVRAG和RUBICON。尽管在此分析中VPS33A明显与CORVET和HOPS的多个亚基共定位,但未发现具有规范CORVET / HOPS结构域结构的蛋白质与VPS33B共定位。相反,我们确定了VPS33B与CDC复合体的成员CCDC22直接交互。在人细胞裂解物的凝胶过滤中,CCDC22不与VPS33B和VIPAR共分离,这表明CCDC22与VPS33B / VIPAR瞬时相互作用,而不是与这些蛋白在细胞中形成稳定的复合物。我们还观察到,包含VPS33B和VIPAR的蛋白质复合物比CORVET / HOPS小得多,这表明CHEVI复合物仅包含VPS33B和VIPAR。

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