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InTERTpreting telomerase structure and function

机译:解释端粒酶的结构和功能

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The Nobel Prize in Physiology or Medicine was recently awarded to Elizabeth Blackburn, Carol Greider and Jack Szostak for their pioneering studies on chromosome termini (telomeres) and their discovery of telomerase, the enzyme that synthesizes telomeres. Telomerase is a unique cellular reverse transcriptase that contains an integral RNA subunit, the telomerase RNA and a catalytic protein subunit, the telomerase reverse transcriptase (TERT), as well as several species-specific accessory proteins. Telomerase is essential for genome stability and is associated with a broad spectrum of human diseases including various forms of cancer, bone marrow failure and pulmonary fibrosis. A better understanding of telomerase structure and function will shed important insights into how this enzyme contributes to human disease. To this end, a series of high-resolution structural studies have provided critical information on TERT architecture and may ultimately elucidate novel targets for therapeutic intervention. In this review, we discuss the current knowledge of TERT structure and function, revealed through the detailed analysis of TERT from model organisms. To emphasize the physiological importance of telomeres and telomerase, we also present a general discussion of the human diseases associated with telomerase dysfunction.
机译:最近,伊丽莎白·布莱克本,卡罗尔·格雷德和杰克·索斯塔克获得了诺贝尔生理学或医学奖,以表彰他们在染色体端粒(端粒)方面的开创性研究以及端粒酶的发现,端粒酶是一种合成端粒的酶。端粒酶是一种独特的细胞逆转录酶,包含一个不可或缺的RNA亚基,端粒酶RNA和催化蛋白亚基,端粒酶逆转录酶(TERT)以及几种物种特异性辅助蛋白。端粒酶对于基因组稳定是必不可少的,并且与人类疾病广泛相关,包括各种形式的癌症,骨髓衰竭和肺纤维化。对端粒酶结构和功能的更好理解将使人们对该酶如何导致人类疾病产生重要的见解。为此,一系列的高分辨率结构研究提供了有关TERT体系结构的关键信息,并可能最终阐明治疗干预的新靶点。在这篇综述中,我们讨论了TERT结构和功能的当前知识,通过对模型生物的TERT的详细分析揭示了这一知识。为了强调端粒和端粒酶的生理重要性,我们还对与端粒酶功能障碍有关的人类疾病进行了一般性讨论。

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