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模拟 von Hippel-Lindau 肿瘤抑制蛋白上 F76del 突变:疾病机制及对药物开发的影响。

Simulation of the mutation F76del on the von Hippel-Lindau tumor suppressor protein: mechanism of the disease and implications for drug development.

机构信息

Coordenação de Pesquisa Clínica e Incorporação Tecnológica, Instituto Nacional de Câncer - INCA, Rua André Cavalcanti, 37, Centro, 20231-050, Rio de Janeiro, RJ, Brazil.

出版信息

Proteins. 2013 Feb;81(2):349-63. doi: 10.1002/prot.24191. Epub 2012 Oct 26.

DOI:10.1002/prot.24191
PMID:23011899
Abstract

The von Hippel-Lindau tumor suppressor protein (pVHL) plays a central role in the oxygen-sensing pathway by regulating the degradation of the hypoxia-inducible factor (HIF-1α). The capture of HIF-1α by pVHL is regulated by an oxygen-dependent hydroxylation of a specific conserved prolyl residue. The VHL gene is mutated in the von Hippel-Lindau cancer predisposition syndrome, which is characterized by the development of highly vascularized tumors and is associated with constitutively high levels of HIF-1α. The disturbance of the dynamic coupling between HIF-1α and pVHL bearing the commonly found mutation F76del was experimentally confirmed but the mechanism of such complex disruption is still not clear. Performing unbiased molecular dynamics simulations, we show that the F76del mutation may enlarge the HIF binding pocket in pVHL and induce the formation of an internal cavity in the hydrophobic core of the β-domain, which can lead to a partial destabilization of the β-sheets S1, S4, and S7 and a consequent loss of hydrogen bonds with a conserved recognition motif in HIF. The newly formed cavity has a significant druggability score and may be a suitable target for stabilizing ligands. Studies of this nature may help to fill the information gap between genotype-phenotype correlations with details obtained at atomic level and provide basis for future development of drug candidates, such as pharmacological chaperones, with the specific aim of reverting the dysfunction of such pathological protein complexes found in patients with VHL.

摘要

希佩尔-林道肿瘤抑制蛋白 (pVHL) 通过调节缺氧诱导因子 (HIF-1α) 的降解,在氧感应途径中发挥核心作用。pVHL 通过对特定保守脯氨酸残基的氧依赖性羟化作用来调节 HIF-1α 的捕获。VHL 基因在希佩尔-林道癌症易感性综合征中发生突变,该综合征的特征是形成高度血管化的肿瘤,并与 HIF-1α 的持续高水平相关。携带常见突变 F76del 的 HIF-1α 和 pVHL 之间的动态偶联失调已通过实验得到证实,但这种复杂的破坏机制仍不清楚。通过进行无偏的分子动力学模拟,我们表明 F76del 突变可能会扩大 pVHL 中的 HIF 结合口袋,并诱导β-结构域疏水区内形成一个内部空腔,这可能导致β-片层 S1、S4 和 S7 的部分失稳,并导致与 HIF 中保守识别基序的氢键丧失。新形成的空腔具有显著的成药性评分,可能是稳定配体的合适靶标。此类研究可以帮助填补基因型-表型相关性与原子水平获得的详细信息之间的信息空白,并为未来开发药物候选物(如药理学伴侣)提供基础,其特定目标是恢复患者中发现的此类病理性蛋白复合物的功能障碍VHL。

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Oncotarget. 2017 Jan 24;8(4):6700-6717. doi: 10.18632/oncotarget.14265.