端粒和端粒酶在衰老和癌症中的作用综述

Q3 Agricultural and Biological Sciences
Husaina Banu Lateef, Pavane Mitta Suresh, P. Bharathi, S. Pathak, A. Banerjee
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引用次数: 1

摘要

端粒是富含鸟嘌呤的DNA序列,染色体末端存在一种被称为庇护蛋白的蛋白质复合物,以保护其免受破坏,并且已知在衰老中起着关键作用。端粒酶是一种端粒DNA延长酶,它包含端粒DNA合成的核心关键成分。本综述的主要目的是探讨端粒和端粒酶的结构和功能,以及它们对衰老、干细胞和癌症细胞的干预作用。端粒酶RNA成分(TERC)损伤对各种端粒疾病和年龄相关疾病的诱导作用得到了很好的解释。端粒疾病是指先天性角化病、再生障碍性贫血等骨髓衰竭。端粒和端粒酶已成为年龄相关疗法、干细胞疗法和癌症疗法的靶点。本文介绍了天然化合物在再生医学和癌症治疗中的端粒相关酶治疗。端粒酶抑制剂如核苷配体和G4配体在抗癌药物的背景下进行了解释。讨论了TERT启动子突变与癌症的关系。我们的结论是,了解干细胞和癌症细胞中的端粒酶机制,为将干细胞、癌症细胞和与年龄相关的研究转化为有效的治疗方法铺平了道路。端粒酶和端粒的动态特征使其结构和生化研究变得困难。因此,可以对单分子方法进行进一步细致的研究,以促进对端粒酶和端粒成分功能的可行和有效的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Brief Overview of Telomeres and Telomerase in Aging and Cancer
Telomere is guanine-rich DNA sequence with a protein complex known as shelterin present at the chromosomal ends to protect it from destruction and is known to play a key role in aging. Telomerase is a telomeric DNA elongating enzyme, which comprises the central key components for telomeric DNA synthesis. The main objective of this review was to explore the structure and function of telomere and telomerase, and their intervention in aging, stem cells, and cancer cells. The induction of various telomeropathies and age-related diseases by Telomerase RNA component (TERC) impairment is well explained. Telomeropathies refer to bone marrow failures such as dyskeratosis congenita, aplastic anemia, etc. Telomere and telomerase have become the targets for age-related therapies, stem cell therapies, and cancer therapies. This article throws light on the telomerase-related therapies with natural compounds in regenerative medicine and cancer treatment. Telomerase inhibitors like nucleoside ligands and G4 ligands are explained in the context of anti-cancer drugs. The association of TERT promoter mutations with cancer is discussed. We conclude that understanding telomerase mechanisms in stem cells and cancer cells paves a way to translate stem cells, cancer cells, and age-related research into effective therapies. The dynamic features of telomerase and telomeres make their structural and biochemical studies difficult. Hence, further meticulous studies can be done on single-molecule approaches to facilitate feasible and effective studies of telomerase and telomere component functioning.
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来源期刊
Current Applied Science and Technology
Current Applied Science and Technology Agricultural and Biological Sciences-Agricultural and Biological Sciences (miscellaneous)
CiteScore
1.50
自引率
0.00%
发文量
51
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