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组织再生过程中端粒酶功能的上调

Upregulation of telomerase function during tissue regeneration.

作者信息

Elmore Lynne W, Norris Michelle W, Sircar Sohini, Bright A Taylor, McChesney Patricia A, Winn Richard N, Holt Shawn E

机构信息

Department of Pathology, 1101 East Marshall Street, Medical College of Virginia at Virginia Commonwealth University, Richmond, VA 23298, USA.

出版信息

Exp Biol Med (Maywood). 2008 Aug;233(8):958-67. doi: 10.3181/0712-RM-345. Epub 2008 May 14.

Abstract

Telomerase plays a primary role in the maintenance of telomeres in immortal, germ, and tumor cells in humans but is lacking in most somatic cells and tissues. However, many species, including fish and inbred mice, express telomerase in most cells and tissues. Little is known about the expression of telomerase in aquatic species, although the importance of telomerase for longevity has been suggested. We compared telomerase activity and telomere lengths among a broad range of tissues from aquatic species and found telomerase at significant levels in both long- and short-lived aquatic species, suggesting constitutive telomerase expression has an alternative function. Telomere lengths in these aquatic species were comparable to those observed in normal human tissues and cell strains. Given that a host of aquatic species with short life spans have telomerase and a tremendous capacity to regenerate, we tested the hypothesis that telomerase upregulation is important for tissue regeneration. During regeneration, telomerase activity was upregulated and telomere lengths are maintained with the shortest telomeres being elongated, indicating the importance for maintaining telomere length and integrity during tissue regeneration. Thus, the expression of telomerase in aquatic animals is likely not related to longevity but to their ability to regenerate injured tissue.

摘要

端粒酶在维持人类永生细胞、生殖细胞和肿瘤细胞中的端粒方面发挥着主要作用,但在大多数体细胞和组织中缺乏。然而,包括鱼类和近交系小鼠在内的许多物种在大多数细胞和组织中都表达端粒酶。尽管有人提出端粒酶对长寿很重要,但关于端粒酶在水生物种中的表达情况却知之甚少。我们比较了多种水生物种组织中的端粒酶活性和端粒长度,发现无论是长寿还是短寿的水生物种,其端粒酶水平都很高,这表明组成型端粒酶表达具有其他功能。这些水生物种的端粒长度与正常人类组织和细胞系中观察到的端粒长度相当。鉴于许多寿命较短的水生物种具有端粒酶且具有巨大的再生能力,我们检验了端粒酶上调对组织再生很重要这一假设。在再生过程中,端粒酶活性上调,端粒长度得以维持,最短的端粒也被延长,这表明在组织再生过程中维持端粒长度和完整性很重要。因此,水生物种中端粒酶的表达可能与寿命无关,而是与它们再生受损组织的能力有关。

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