Member of the Italian Society for Evolutionary Biology (SIBE), Asti, 14100, Italy.
Department of Translational Medical Sciences, Federico II University of Naples, Naples, 80131, Italy.
Biochemistry (Mosc). 2021 Dec;86(12):1526-1539. doi: 10.1134/S0006297921120026.
The telomere theory tries to explain cellular mechanisms of aging as mainly caused by telomere shortening at each duplication. The subtelomere-telomere theory overcomes various shortcomings of telomere theory by highlighting the essential role of subtelomeric DNA in aging mechanisms. The present work illustrates and deepens the correspondence between assumptions and implications of subtelomere-telomere theory and experimental results. In particular, it is investigated the evidence regarding the relationships between aging and (i) epigenetic modifications; (ii) oxidation and inflammation; (iii) telomere protection; (iv) telomeric heterochromatin hood; (v) gradual cell senescence; (vi) cell senescence; and (vii) organism decline with telomere shortening. The evidence appears broadly in accordance or at least compatible with the description and implications of the subtelomere-telomere theory. In short, phenomena of cellular aging, by which the senescence of the whole organism is determined in various ways, appear substantially dependent on epigenetic modifications regulated by the subtelomere-telomere-telomeric hood-telomerase system. These phenomena appear to be not random, inevitable, and irreversible but rather induced and regulated by genetically determined mechanisms, and modifiable and reversible by appropriate methods. All this supports the thesis that aging is a genetically programmed and regulated phenoptotic phenomenon and is against the opposite thesis of aging as caused by random and inevitable degenerative factors.
端粒学说试图解释细胞衰老的机制,主要是由于每次复制时端粒缩短。端粒-端粒学说通过强调端粒区 DNA 在衰老机制中的重要作用,克服了端粒学说的各种缺点。本工作阐明并深化了端粒-端粒学说的假设和推论与实验结果之间的对应关系。特别是,研究了衰老与(i)表观遗传修饰;(ii)氧化和炎症;(iii)端粒保护;(iv)端粒异染色质罩;(v)细胞逐渐衰老;(vi)细胞衰老;以及(vii)随着端粒缩短而导致的生物体衰退之间关系的证据。这些证据与端粒-端粒学说的描述和推论大体上是一致的,或者至少是相容的。简而言之,细胞衰老的现象,即通过各种方式决定整个生物体的衰老,主要取决于受端粒-端粒-端粒帽-端粒酶系统调控的表观遗传修饰。这些现象似乎不是随机的、不可避免的和不可逆的,而是由遗传决定的机制诱导和调节的,并且可以通过适当的方法进行修饰和逆转。所有这些都支持衰老作为一种由遗传决定和调控的凋亡现象的论点,而不是相反的衰老是由随机和不可避免的退行性因素引起的论点。