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首页> 外文期刊>Biochemistry >Solution Structure, Backbone Dynamics, and Association Behavior of the C-Terminal BRCT Domain from the Breast Cancer-Associated Protein BRCA1(,).
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Solution Structure, Backbone Dynamics, and Association Behavior of the C-Terminal BRCT Domain from the Breast Cancer-Associated Protein BRCA1(,).

机译:乳腺癌相关蛋白BRCA1(,)的C末端BRCT域的溶液结构,骨干动力学和缔合行为。

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摘要

BRCA1 is a tumor suppressor protein associated with breast and ovarian cancer. The C-terminal region of BRCA1 consists of two closely spaced BRCT domains which mediate essential biological functions, including regulation of transcription and control of cell-cycle progression by their interaction with phosphorylated effector proteins. Here we report the NMR structure of the isolated C-terminal BRCT domain (BRCT-c) from human BRCA1. BRCT-c is well-structured in solution, folding independently in the absence of its BRCT-n counterpart. Ultracentrifugation experiments and size exclusion chromatography reveal that BRCT-c exists as a monomer under near-physiological conditions. Dynamics measurements from NMR data show three loops which coincide with the most variable sequence regions in BRCT domains, to be genuinely flexible in solution. The solution structure of BRCT-c shows subtle conformational changes when compared to the crystal structure of BRCT-c in the tandem repeat of BRCA1. These affect sites involved in formation of the BRCT-n-BRCT-c interface and the binding to phosphoserine-containing peptides. The results suggest that the presence of native BRCT-n and a properly aligned BRCT-n-BRCT-c interface are essential if BRCT-c is to adopt a biologically active conformation. Structural consequences of cancer-associated mutations and biological implications of the dynamic behavior are discussed.
机译:BRCA1是与乳腺癌和卵巢癌相关的肿瘤抑制蛋白。 BRCA1的C端区域由两个间隔很近的BRCT域组成,这些域介导基本的生物学功能,包括转录调控和通过与磷酸化效应蛋白的相互作用来控制细胞周期进程。在这里,我们报告从人BRCA1分离的C端BRCT域(BRCT-c)的NMR结构。 BRCT-c在溶液中结构良好,在没有BRCT-n对应物的情况下可以独立折叠。超速离心实验和尺寸排阻色谱法表明BRCT-c在近乎生理条件下以单体形式存在。根据NMR数据进行的动力学测量结果显示,三个环与BRCT域中变化最大的序列区域相吻合,在溶液中具有真正的灵活性。与BRCA1的串联重复序列中的BRCT-c的晶体结构相比,BRCT-c的溶液结构显示出细微的构象变化。这些影响参与BRCT-n-BRCT-c界面的形成以及与含磷酸丝氨酸的肽的结合的位点。结果表明,如果BRCT-c采用生物学活性构象,则天然BRCT-n和正确对齐的BRCT-n-BRCT-c接口的存在至关重要。讨论了癌症相关突变的结构后果和动态行为的生物学意义。

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