Zoltner Martin, Leung Ka Fai, Alsford Sam, Horn David, Field Mark C
Division of Biological Chemistry and Drug Discovery, University of Dundee, Dundee, United Kingdom.
Department of Pathology, University of Cambridge, Cambridge, United Kingdom.
PLoS Pathog. 2015 Oct 22;11(10):e1005236. doi: 10.1371/journal.ppat.1005236. eCollection 2015 Oct.
Recently we identified multiple suramin-sensitivity genes with a genome wide screen in Trypanosoma brucei that includes the invariant surface glycoprotein ISG75, the adaptin-1 (AP-1) complex and two deubiquitylating enzymes (DUBs) orthologous to ScUbp15/HsHAUSP1 and pVHL-interacting DUB1 (type I), designated TbUsp7 and TbVdu1, respectively. Here we have examined the roles of these genes in trafficking of ISG75, which appears key to suramin uptake. We found that, while AP-1 does not influence ISG75 abundance, knockdown of TbUsp7 or TbVdu1 leads to reduced ISG75 abundance. Silencing TbVdu1 also reduced ISG65 abundance. TbVdu1 is a component of an evolutionarily conserved ubiquitylation switch and responsible for rapid receptor modulation, suggesting similar regulation of ISGs in T. brucei. Unexpectedly, TbUsp7 knockdown also blocked endocytosis. To integrate these observations we analysed the impact of TbUsp7 and TbVdu1 knockdown on the global proteome using SILAC. For TbVdu1, ISG65 and ISG75 are the only significantly modulated proteins, but for TbUsp7 a cohort of integral membrane proteins, including the acid phosphatase MBAP1, that is required for endocytosis, and additional ISG-related proteins are down-regulated. Furthermore, we find increased expression of the ESAG6/7 transferrin receptor and ESAG5, likely resulting from decreased endocytic activity. Therefore, multiple ubiquitylation pathways, with a complex interplay with trafficking pathways, control surface proteome expression in trypanosomes.
最近,我们在布氏锥虫中通过全基因组筛选鉴定出多个对苏拉明敏感的基因,其中包括不变表面糖蛋白ISG75、衔接蛋白-1(AP-1)复合物以及与酿酒酵母Ubp15/人源HAUSP1和pVHL相互作用的去泛素化酶1(I型)直系同源的两种去泛素化酶(DUBs),分别命名为TbUsp7和TbVdu1。在此,我们研究了这些基因在ISG75转运中的作用,而ISG75的转运似乎是苏拉明摄取的关键。我们发现,虽然AP-1不影响ISG75的丰度,但敲低TbUsp7或TbVdu1会导致ISG75丰度降低。沉默TbVdu1也会降低ISG65的丰度。TbVdu1是进化上保守的泛素化开关的一个组成部分,负责快速的受体调节,这表明布氏锥虫中ISG的调节方式类似。出乎意料的是,敲低TbUsp7也会阻断内吞作用。为了整合这些观察结果,我们使用稳定同位素标记氨基酸法(SILAC)分析了敲低TbUsp7和TbVdu1对整体蛋白质组的影响。对于TbVdu1,ISG65和ISG75是仅有的显著受调控的蛋白质,但对于TbUsp7,一组整合膜蛋白,包括内吞作用所需的酸性磷酸酶MBAP1以及其他与ISG相关的蛋白质表达下调。此外,我们发现转铁蛋白受体ESAG6/7和ESAG5的表达增加,这可能是由于内吞活性降低所致。因此,多种泛素化途径与转运途径复杂地相互作用,控制着锥虫表面蛋白质组的表达。