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VHL gene mutations and their effects on hypoxia inducible factor HIFalpha: identification of potential driver and passenger mutations.

机译:VHL基因突变及其对缺氧诱导因子HIFalpha的影响:潜在的驾驶员和乘客突变的鉴定。

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摘要

Mutations of the von Hippel-Lindau (VHL) gene are frequent in clear cell renal cell carcinomas (ccRCC). Nonsense and frameshift mutations abrogate the function of the VHL protein (pVHL), whereas missense mutations can have different effects. To identify those missense mutations with functional consequences, we sequenced VHL in 256 sporadic ccRCC and identified 187 different VHL mutations of which 65 were missense mutations. Location and destabilizing effects of VHL missense mutations were determined in silico. The majority of the thermodynamically destabilizing missense mutations were located in exon 1 in the core of pVHL, whereas protein surface mutations in exon 3 affected the interaction domains of elongin B and C. Their impact on pVHL's functionality was further investigated in vitro by stably reintroducing VHL missense mutations into a VHL null cell line and by monitoring the green fluorescent protein (GFP) signals after the transfection of a hypoxia inducible factor (HIF)alpha-GFP expression vector. pVHL's functionality ranged from no effect to complete HIF stabilization. Interestingly, Asn78Ser, Asp121Tyr, and Val130Phe selectively influenced HIF1alpha and HIF2alpha degradation. In summary, we obtained three different groups of missense mutations: one with severe destabilization of pVHL; a second without destabilizing effects on pVHL but relevance for the interaction with HIFalpha, elongin B, and elongin C; and a third with pVHL functions comparable with wild type. We therefore conclude that the specific impact of missense mutations may help to distinguish between driver and passenger mutations and may explain responses of ccRCC patients to HIF-targeted therapies.
机译:von Hippel-Lindau(VHL)基因的突变在透明细胞肾细胞癌(ccRCC)中很常见。无意义和移码突变消除了VHL蛋白(pVHL)的功能,而错义突变可能具有不同的作用。为了鉴定那些具有功能性后果的错义突变,我们在256个散发ccRCC中对VHL进行了测序,并鉴定了187个不同的VHL突变,其中65个为错义突变。在计算机上确定了VHL错义突变的位置和不稳定作用。大多数热力学不稳定的错义突变位于pVHL核心的第1外显子,而第3外显子的蛋白表面突变影响elongin B和C的相互作用域。通过稳定地重新引入VHL,进一步研究了它们对pVHL功能的影响。转染缺氧诱导因子(HIF)α-GFP表达载体后,将错义突变突变为VHL空细胞系,并通过监测绿色荧光蛋白(GFP)信号进行检测。 pVHL的功能范围从无影响到完整的HIF稳定。有趣的是,Asn78Ser,Asp121Tyr和Val130Phe有选择地影响了HIF1alpha和HIF2alpha的降解。总而言之,我们获得了三组不同的错义突变:第一组pVHL严重不稳定;第二组pVHL严重不稳定。一秒钟对pVHL没有稳定作用,但与HIFalpha,Elongin B和Elongin C的相互作用相关;三分之一具有与野生型相当的pVHL功能。因此,我们得出的结论是,错义突变的特定影响可能有助于区分驾驶员突变和乘客突变,并且可以解释ccRCC患者对以HIF为靶标的疗法的反应。

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