Dipartimento di Scienze, Università "Roma Tre", Viale G. Marconi 446, 00146 Rome, Italy.
Int J Mol Sci. 2022 Dec 2;23(23):15189. doi: 10.3390/ijms232315189.
A growing number of studies have evidenced non-telomeric functions of "telomerase". Almost all of them, however, investigated the non-canonical effects of the catalytic subunit TERT, and not the telomerase ribonucleoprotein holoenzyme. These functions mainly comprise signal transduction, gene regulation and the increase of anti-oxidative systems. Although less studied, TERC (the RNA component of telomerase) has also been shown to be involved in gene regulation, as well as other functions. All this has led to the publication of many reviews on the subject, which, however, are often disseminating personal interpretations of experimental studies of other researchers as original proofs. Indeed, while some functions such as gene regulation seem ascertained, especially because mechanistic findings have been provided, other ones remain dubious and/or are contradicted by other direct or indirect evidence (e.g., telomerase activity at double-strand break site, RNA polymerase activity of TERT, translation of TERC, mitochondrion-processed TERC). In a critical study of the primary evidence so far obtained, we show those functions for which there is consensus, those showing contradictory results and those needing confirmation. The resulting picture, together with some usually neglected aspects, seems to indicate a link between TERT and TERC functions and cellular stemness and gives possible directions for future research.
越来越多的研究证实了“端粒酶”的非端粒功能。然而,几乎所有这些研究都调查了催化亚基 TERT 的非规范作用,而不是端粒酶核糖核蛋白全酶。这些功能主要包括信号转导、基因调控和抗氧化系统的增加。虽然研究较少,但 TERC(端粒酶的 RNA 成分)也被证明参与基因调控以及其他功能。所有这些都导致了关于该主题的许多评论的发表,然而,这些评论往往将其他研究人员的实验研究的个人解释作为原始证据进行传播。事实上,虽然一些功能(如基因调控)似乎已经确定,特别是因为已经提供了机制发现,而其他功能仍然存在疑问和/或被其他直接或间接证据所反驳(例如,双链断裂部位的端粒酶活性、TERT 的 RNA 聚合酶活性、TERC 的翻译、线粒体加工的 TERC)。在对迄今为止获得的主要证据进行的批判性研究中,我们展示了那些有共识的功能、那些显示出矛盾结果的功能和那些需要确认的功能。由此产生的图片,以及一些通常被忽视的方面,似乎表明 TERT 和 TERC 功能与细胞干性之间存在联系,并为未来的研究提供了可能的方向。