在h-BRCA1中发现的淀粉样变性罕见变异Ser282Leu和Gln356Arg的结构意义。

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-04-01 Epub Date: 2023-12-01 DOI:10.1002/prot.26638
Neha Mishra, Suchita Dubey, Anchala Kumari, Mudassar Ali Khan, Ekaterina S Kuligina, Elena V Preobrazhenskaya, Alexandr A Romanko, Lumbini R Yadav, Rajiv Sarin, Evgeny N Imyanitov, Ashok K Varma
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引用次数: 0

摘要

初步研究表明BRCA1(170-1600)残基本质上是无序的,结构细节未知。然而,在这个BRCA1的中心区域已经发现了数千种临床报告的变异。因此,我们的目的是表征h-BRCA1(260-553),以评估分别从印度和俄罗斯人群中发现的两种罕见错义变体Ser282Leu, Gln356Arg的致病性的结构基础。小角度x射线散射分析显示,WT评分Rg -32 Å、Dmax -93 Å和Rflex-51%部分紊乱,而Ser282Leu变异表现出较高程度的紊乱,Gln356Arg聚集。在十字形DNA和2,2,2-三氟乙醇(TFE)存在的情况下,WT蛋白也具有从无序到有序转变的固有倾向。随着TFE浓度的增加,Gln356Arg突变体的α螺旋型增加,而Ser282Leu突变体仅在TFE浓度最高时表现出显著差异。此外,与Gln356Arg和Ser282Leu蛋白- dna复合物相比,WT-DNA复合物的热位移更高。Ser282Leu和Gln356Arg蛋白经30 μM硫黄素T (ThT)在37℃下观察到成熟的淀粉样原纤维,透射电镜观察到WT蛋白处于原原纤维状态。ThT荧光监测显示,随着时间的推移,Gln356Arg形成了淀粉样蛋白形成的高阶聚集体。此外,计算分析证实,Ser282Leu和Gln356Arg突变体的构象波动比WT更大。这些突变引起的整体结构改变为进一步将BRCA1中临床意义不确定的变异分类为淀粉样变变体提供了一种机制方法,这些变异可能在疾病发病机制中发挥重要作用。
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Structural implications of amyloidogenic rare variants Ser282Leu and Gln356Arg identified in h-BRCA1.

Preliminary studies have shown BRCA1 (170-1600) residues to be intrinsically disordered with unknown structural details. However, thousands of clinically reported variants have been identified in this central region of BRCA1. Therefore, we aimed to characterize h-BRCA1(260-553) to assess the structural basis for pathogenicity of two rare missense variants Ser282Leu, Gln356Arg identified from the Indian and Russian populations respectively. Small-angle X-ray scattering analysis revealed WT scores Rg -32 Å, Dmax -93 Å, and Rflex-51% which are partially disordered, whereas Ser282Leu variant displayed a higher degree of disorderedness and Gln356Arg was observed to be aggregated. WT protein also possesses an inherent propensity to undergo a disorder-to-order transition in the presence of cruciform DNA and 2,2,2-Trifluoroethanol (TFE). An increased alpha-helical pattern was observed with increasing concentration of TFE for the Gln356Arg mutant whereas Ser282Leu mutant showed significant differences only at the highest TFE concentration. Furthermore, higher thermal shift was observed for WT-DNA complex compared to the Gln356Arg and Ser282Leu protein-DNA complex. Moreover, mature amyloid-like fibrils were observed with 30 μM thioflavin T (ThT) at 37°C for Ser282Leu and Gln356Arg proteins while the WT protein exists in a protofibril state as observed by TEM. Gln356Arg formed higher-order aggregates with amyloidogenesis over time as monitored by ThT fluorescence. In addition, computational analyses confirmed larger conformational fluctuations for Ser282Leu and Gln356Arg mutants than for the WT. The global structural alterations caused by these variants provide a mechanistic approach for further classification of the variants of uncertain clinical significance in BRCA1 into amyloidogenic variants which may have a significant role in disease pathogenesis.

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