Progression of Benign Breast Tumors: A Review of Differential Expression of BRCA1

Warda Fatima, Unzila Yasin
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Abstract

Benign breast tumors, a group of heterogeneous disorders, have a high incidence in females which is the effect of multiple environmental and genetic factors. Some notable genetic factors include the involvement of the highly penetrant BRCA1 gene and its major interactions with other genetic activators. BRCA1’s interaction with certain proteins, such as 53BP-1 and ATM kinases, is initiated through the phosphorylation of their respective domains to create varied complexes with different functions. Consequently, BRCA1/BACH complex formation, in particular, helps in DNA repair processes. When this formation mutates, it can produce severe benign breast tumors. On the other hand, TP53 gene mutation also causes high damage to breast epithelia, irrespective of its interaction with BRCA1 function. BARD1 protein is also known to assist BRCA1 in maintaining its phenotype during the entire process of repair. These complex formations reveal the dual functioning of BRCA1 in relation to different proteinaceous entities as a tumor suppressor gene and a breast disease causing gene. Thus, this study focuses on BRCA1 mutation, its interaction with other genes, and its role in the DNA repair processes.
乳腺良性肿瘤的进展:BRCA1差异表达的研究进展
乳腺良性肿瘤是一类异质性疾病,在女性中发病率高,受多种环境和遗传因素的影响。一些值得注意的遗传因素包括高渗透性BRCA1基因的参与及其与其他遗传激活因子的主要相互作用。BRCA1与某些蛋白质(如53BP-1和ATM激酶)的相互作用是通过磷酸化它们各自的结构域来启动的,从而产生具有不同功能的各种复合物。因此,BRCA1/BACH复合物的形成尤其有助于DNA修复过程。当这种结构发生突变时,它可以产生严重的良性乳腺肿瘤。另一方面,与BRCA1功能的相互作用无关,TP53基因突变也会对乳腺上皮造成高度损伤。BARD1蛋白也被认为在整个修复过程中协助BRCA1维持其表型。这些复杂的结构揭示了BRCA1作为肿瘤抑制基因和乳腺致病基因与不同蛋白质实体相关的双重功能。因此,本研究的重点是BRCA1突变,它与其他基因的相互作用,以及它在DNA修复过程中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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