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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Molecular cloning and measurement of telomerase reverse transcriptase (TERT) transcription patterns in tissues of European hake (Merluccius merluccius) and Atlantic cod (Gadus morhua) during aging
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Molecular cloning and measurement of telomerase reverse transcriptase (TERT) transcription patterns in tissues of European hake (Merluccius merluccius) and Atlantic cod (Gadus morhua) during aging

机译:衰老过程中欧洲鳕(Merluccius merluccius)和大西洋鳕(Gadus morhua)组织中端粒酶逆转录酶(TERT)转录模式的分子克隆和测量

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摘要

Telomerase is a reverse transcriptase ribonucleoprotein that maintains the ends of linear chromosomes. This enzyme plays a major role in cell processes like proliferation, differentiation and tumorigenesis, being associated with aging and survival of species. In this study, the gene coding for TERT (Telomerase Reverse Transcriptase) of two commercial fish species, European hake (Merluccius merluccius) and Atlantic cod (Gadus morhua), has been partially cloned. A fragment of 1581. bp (hake) and 633. bp (cod) showed high homology (identity 74%, query cover 99%, E-value = 0) with known Perciformes TERT sequences. TERT transcription patterns were assessed by qRT-PCR in different tissues of hake (brain, ovary, testis, muscle, skin, gills, liver and kidney) and cod (brain, muscle and skin) of different sizes/ages in order to understand its role in the physiological aging of teleosts. TERT was found to be ubiquitously transcribed in all tissues and size/age groups studied in both species. Significantly higher relative transcription levels (p < 0.05) were found with increasing size/age of M. merluccius in the kidney, muscle, skin and gonad, the latter exhibiting particularly high relative transcription levels. Male hakes showed higher TERT relative transcription levels in the brain, gonad and liver than females, although these differences were not statistically significant (p < 0.05). In G. morhua, higher TERT relative transcription levels were recorded in the muscle and brain of fry and juvenile individuals. Therefore, TERT relative transcription pattern exhibited a higher telomerase demand in early developmental stages and also in mature stages, suggesting tissue renewal or regeneration processes as a conserved mechanism for maintaining long-term cell proliferation capacity and preventing senescence. Thus, it can be concluded that TERT relative transcription level was species and tissue specific and changed with the age of fishes.
机译:端粒酶是一种逆转录酶核糖核蛋白,可维持线性染色体的末端。这种酶在细胞增殖,分化和肿瘤发生等细胞过程中起着重要作用,与物种的衰老和生存有关。在这项研究中,已部分克隆了编码两种商业鱼类(欧洲鳕(Merluccius merluccius)和大西洋鳕(Gadus morhua))的TERT(端粒酶逆转录酶)基因。 1581. bp(无鳕)和633.bp(鳕鱼)的片段与已知的Performformes TERT序列具有高度同源性(同一性74%,查询覆盖率99%,E值= 0)。通过qRT-PCR在不同大小/年龄的鳕鱼的不同组织(大脑,卵巢,睾丸,肌肉,皮肤、,、肝和肾脏)和鳕鱼(大脑,肌肉和皮肤)的不同组织中评估TERT转录模式。在硬骨鱼的生理老化中的作用。发现TERT在两个物种研究的所有组织和大小/年龄组中普遍存在。随着在肾脏,肌肉,皮肤和性腺中M. mucciuccius的大小/年龄的增加,发现相对转录水平显着更高(p <0.05),后者表现出特别高的相对转录水平。雄性无须鳕显示出在脑,性腺和肝脏中的TERT相对转录水平高于雌性,尽管这些差异没有统计学意义(p <0.05)。在G. morhua中,在鱼苗和少年个体的肌肉和大脑中记录到​​更高的TERT相对转录水平。因此,TERT相对转录模式在早期发育阶段和成熟阶段都表现出更高的端粒酶需求,表明组织更新或再生过程是维持长期细胞增殖能力和防止衰老的保守机制。因此,可以得出结论,TERT相对转录水平是物种和组织特异性的,并且随着鱼类年龄的变化而变化。

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