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人类乳腺癌1号基因(BRCA1)BRCT结构域变体的热变性

Thermal unfolding of human BRCA1 BRCT-domain variants.

作者信息

Nikolopoulos George, Pyrpassopoulos Serapion, Thanassoulas Angelos, Klimentzou Persefoni, Zikos Christos, Vlassi Metaxia, Vorgias Constantinos E, Yannoukakos Drakoulis, Nounesis George

机构信息

National Centre for Scientific Research Demokritos, 153 10 Aghia Paraskevi, Greece.

出版信息

Biochim Biophys Acta. 2007 Jun;1774(6):772-80. doi: 10.1016/j.bbapap.2007.03.018. Epub 2007 Apr 6.

Abstract

Missense mutations at the BRCT domain of human BRCA1 protein have been associated with an elevated risk for hereditary breast/ovarian cancer. They have been shown to affect the binding site and they have also been proposed to affect domain stability, severely hampering the protein's tumor suppressor function. In order to assess the impact of various such mutations upon the stability and the function of the BRCT domain, heat-induced denaturation has been employed to study the thermal unfolding of variants M1775R and R1699W, which have been linked with the disease, as well as of V1833M, which has been reported for patients with a family history. Calorimetric and circular dichroism results reveal that in pH 9.0, 5 mM borate buffer, 200 mM NaCl, analogously to wild type BRCT, all three variants undergo partial thermal unfolding to a denatured state, which retains most of the native's structural characteristics. With respect to wild-type BRCT, the mutation M1775R induces the most severe effects especially upon the thermostability, while R1699W also has a strong impact. On the other hand, the thermal unfolding of variant V1833M is only moderately affected relative to wild-type BRCT. Moreover, isothermal titration calorimetric measurements reveal that contrary to M1775R and R1699W variants, V1833M binds to BACH1 and CtIP phosphopeptides.

摘要

人类BRCA1蛋白BRCT结构域的错义突变与遗传性乳腺癌/卵巢癌风险升高有关。这些突变已被证明会影响结合位点,也有人提出它们会影响结构域稳定性,严重阻碍该蛋白的肿瘤抑制功能。为了评估各种此类突变对BRCT结构域稳定性和功能的影响,采用热诱导变性来研究与疾病相关的变体M1775R和R1699W以及有家族病史患者中报道的V1833M的热解折叠情况。量热法和圆二色性结果表明,在pH 9.0、5 mM硼酸盐缓冲液、200 mM NaCl条件下,与野生型BRCT类似,所有三个变体都会经历部分热解折叠形成变性状态,该状态保留了大部分天然结构特征。相对于野生型BRCT,突变M1775R尤其对热稳定性产生最严重影响,而R1699W也有强烈影响。另一方面,变体V1833M的热解折叠相对于野生型BRCT仅受到适度影响。此外,等温滴定量热法测量结果表明,与M1775R和R1699W变体不同,V1833M能与BACH1和CtIP磷酸肽结合。

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