Le Goff Xavier, Chesnel Franck, Delalande Olivier, Couturier Anne, Dréano Stéphane, Le Goff Cathy, Vigneau Cécile, Arlot-Bonnemains Yannick
CNRS, UMR 6290 IGDR, Université Rennes 1, BIOSIT, Molecular Bases of Tumorigenesis: VHL Disease Team, 35043 Rennes cedex, France
CNRS, UMR 6290 IGDR, Université Rennes 1, BIOSIT, Molecular Bases of Tumorigenesis: VHL Disease Team, 35043 Rennes cedex, France.
J Cell Sci. 2016 Jul 1;129(13):2638-50. doi: 10.1242/jcs.184846. Epub 2016 May 13.
Quality control mechanisms promote aggregation and degradation of misfolded proteins. In budding yeast, the human von Hippel-Lindau protein (pVHL, officially known as VHL) is misfolded and forms aggregates. Here, we investigated the aggregation of three pVHL isoforms (pVHL213, pVHL160, pVHL172) in fission yeast. The full-length pVHL213 isoform aggregates in highly dynamic small puncta and in large spherical inclusions, either close to the nucleus or to the cell ends. The large inclusions contain the yeast Hsp104 chaperone. Aggregate clearance is regulated by proteasomal degradation. The pVHL160 isoform forms dense foci and large irregularly shaped aggregates. In silico, prediction of pVHL aggregation propensity identified a key aggregation-promoting region within exon 2. Consistently, the pVHL172 isoform, which lacks exon 2, formed rare reduced inclusions. We studied the aggregation propensity of pVHL variants harbouring missense mutations found in kidney carcinomas. We show that the P86L mutation stimulated small aggregate formation, the P146A mutation increased large inclusion formation, whereas the I151S mutant destabilized pVHL. The prefoldin subunit Pac10 (the human homolog VBP-1 binds to pVHL) is required for pVHL stability. Reduction of soluble functional pVHL might be crucial in VHL-related diseases.
质量控制机制促进错误折叠蛋白的聚集和降解。在芽殖酵母中,人类冯·希佩尔-林道蛋白(pVHL,官方名称为VHL)会错误折叠并形成聚集体。在此,我们研究了三种pVHL异构体(pVHL213、pVHL160、pVHL172)在裂殖酵母中的聚集情况。全长pVHL213异构体在靠近细胞核或细胞末端的高度动态的小斑点和大的球形内含物中聚集。大的内含物中含有酵母Hsp104伴侣蛋白。聚集体的清除受蛋白酶体降解的调节。pVHL160异构体形成致密的病灶和大的不规则形状的聚集体。通过计算机模拟,对pVHL聚集倾向的预测确定了外显子2内一个关键的聚集促进区域。一致的是,缺少外显子2的pVHL172异构体形成的内含物较少。我们研究了携带在肾癌中发现的错义突变的pVHL变体的聚集倾向。我们发现,P86L突变刺激了小聚集体的形成,P146A突变增加了大内含物的形成,而I151S突变则使pVHL不稳定。预折叠蛋白亚基Pac10(人类同源物VBP-1与pVHL结合)是pVHL稳定性所必需的。可溶性功能性pVHL的减少可能在与VHL相关的疾病中起关键作用。