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Growth arrest in human T-cells is controlled by the non-coding RNA growth-arrest-specific transcript 5 (GAS5)

机译:人类T细胞的生长停滞受非编码RNA生长停滞特异性转录本5(GAS5)控制

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摘要

The control of growth of lymphocyte populations is crucial to the physiological regulation of the immune system, and to the prevention of both leukaemic and autoimmune disease. This control is mediated through modulation of the cell cycle and regulation of cell death. During log-phase growth the rate of proliferation is high and there is a low rate of cell death. As the population density increases, the cell cycle is extended and apoptosis becomes more frequent as the population enters growth arrest. Here, we show that growth-arrest-specific transcript 5 (GAS5) plays an essential role in normal growth arrest in both T-cell lines and non-transformed lymphocytes. Overexpression of GAS5 causes both an increase in apoptosis and a reduction in the rate of progression through the cell-cycle. Consistent with this, down-regulation of endogenous GAS5 inhibits apoptosis and maintains a more rapid cell cycle, indicating that GAS5 expression is both necessary and sufficient for normal growth arrest in T-cell lines as well as human peripheral blood T-cells. Control of apoptosis and the cell cycle by GAS5 has significant consequences for disease pathogenesis, because independent studies have already identified GAS5 as an important candidate gene in the development of autoimmune disease
机译:淋巴细胞种群的生长控制对于免疫系统的生理调节以及预防白血病和自身免疫性疾病至关重要。该控制通过调节细胞周期和调节细胞死亡来介导。在对数期生长期间,增殖速率高而细胞死亡速率低。随着种群密度的增加,随着种群进入生长停滞,细胞周期延长,凋亡变得更加频繁。在这里,我们显示了特定于生长停滞的转录本5(GAS5)在正常生长停滞中在T细胞系和未转化的淋巴细胞中都起着至关重要的作用。 GAS5的过度表达会导致凋亡增加,并导致整个细胞周期的进展速度降低。与此相一致,内源性GAS5的下调抑制细胞凋亡并维持更快速的细胞周期,这表明GAS5表达对于T细胞系以及人类外周血T细胞的正常生长停滞是必要和充分的。 GAS5对细胞凋亡和细胞周期的控制对疾病的发病机理具有重要意义,因为独立研究已经确定GAS5是自身免疫性疾病发展中的重要候选基因。

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