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Knockdown of AMPKα decreases ATM expression and increases radiosensitivity under hypoxia and nutrient starvation in an SV40-transformed human fibroblast cell line, LM217

机译:AMPKα的敲低降低了ATM表达,并在SV40转化的人成纤维细胞系LM217下提高缺氧和营养饥饿下的放射敏感性

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Abstract Background Presence of unperfused regions containing cells under hypoxia and nutrient starvation contributes to radioresistance in solid human tumors. It is well known that hypoxia causes cellular radioresistance, but little is known about the effects of nutrient starvation on radiosensitivity. We have reported that nutrient starvation induced decrease of mTORC1 activity and decrease of radiosensitivity in an SV40-transformed human fibroblast cell line, LM217, and that nutrient starvation induced increase of mTORC1 activity and increase of radiosensitivity in human liver cancer cell lines, HepG2 and HuH6 (Murata et?al., BBRC 2015). Knockdown of mTOR using small interfering RNA (siRNA) for mTOR suppressed radiosensitivity under nutrient starvation alone in HepG2 cells, which suggests that mTORC1 pathway regulates radiosensitivity under nutrient starvation alone. In the present study, effects of hypoxia and nutrient starvation on radiosensitivity were investigated using the same cell lines. Methods LM217 and HepG2 cells were used to examine the effects of hypoxia and nutrient starvation on cellular radiosensitivity, mTORC1 pathway including AMPK, ATM, and HIF-1α, which are known as regulators of mTORC1 activity, and glycogen storage, which is induced by HIF-1 and HIF-2 under hypoxia and promotes cell survival. Results Under hypoxia and nutrient starvation, AMPK activity and ATM expression were increased in LM217?cells and decreased in HepG2 cells compared with AMPK activity under nutrient starvation alone or ATM expression under hypoxia alone. Under hypoxia and nutrient starvation, radiosensitivity was decreased in LM217?cells and increased in HepG2 cells compared with radiosensitivity under hypoxia alone. Under hypoxia and nutrient starvation, knockdown of AMPK decreased ATM activity and increased radiation sensitivity in LM217?cells. In both cell lines, mTORC1 activity was decreased under hypoxia and nutrient starvation. Under hypoxia alone, knockdown of mTOR slightly increased ATM expression but did not affect radiosensitivity in LM217. Under hypoxia and nutrient starvation, HIF-1α expression was suppressed and glycogen storage was reduced. Conclusion Our data suggest that AMPK regulates ATM expression and partially regulates radiosensitivity under hypoxia and nutrient starvation. The molecular mechanism underlying the induction of ATM expression by AMPK remains to be elucidated. Highlights ? AMPK activity and ATM expression were increased under hypoxia and nutrient starvation in LM217. ? Nutrient starvation decreased radiosensitivity under hypoxia in LM217. ? Knockdown of AMPKα decreased ATM expression and increased radiosensitivity in LM217. ? AMPK activity and ATM expression were decreased under hypoxia and nutrient starvation in HepG2. ? Nutrient starvation increased radiosensitivity under hypoxia in HepG2.
机译:摘要在缺氧和营养饥饿下含有细胞的不稠密区域的背景存在有助于固体人肿瘤的放射性。众所周知,缺氧导致细胞放射率,但是关于营养饥饿对放射敏感性的影响几乎是众所周知的。我们据报道,营养饥饿诱导MTORC1活性降低和SV40转化的人成纤维细胞系,LM217中的放射敏感性降低,以及营养饥饿诱导的MTORC1活性升高以及人肝癌细胞系中的辐射敏感性增加,Hepg2和Huh6 (Murata et?Al。,BBRC 2015)。使用小干扰RNA(siRNA)用于MTOR的MTOR敲低,仅在HepG2细胞中单独营养饥饿的放射敏感性,这表明MTORC1途径单独调节营养饥饿下的放射敏感性。在本研究中,使用相同的细胞系研究了缺氧和营养饥饿对放射敏感性的影响。方法方法LM217和HepG2细胞用于检查缺氧和营养饥饿对细胞放射敏感性的影响,包括AMPK,ATM和HIF-1α,其称为MTORC1活性的调节剂和由HIF诱导的糖储存-1和HIF-2在缺氧下,促进细胞存活。在缺氧和营养饥饿下,在LM217中增加了AMPK活性和ATM表达,在单独营养饥饿下的营养饥饿下的AMPK活性或单独的AMP2细胞中减少。在缺氧和营养饥饿下,在LM217中的放射敏感性降低?细胞在HepG2细胞中增加,与单独的缺氧下的放射敏感性相比。在缺氧和营养饥饿下,安培的敲低下降atm,LM217中的辐射敏感性增加。细胞。在两种细胞系中,MTORC1活性在缺氧和营养饥饿下降低。在单独缺氧下,MTOR敲低略微增加的ATM表达,但在LM217中没有影响放射敏感性。根据缺氧和营养饥饿,抑制HIF-1α表达,并降低了糖原储存。结论我们的数据表明,安培调节ATM表达,部分调节缺氧和营养饥饿下的放射敏感性。 AMPK诱导ATM表达诱导的分子机制仍有待阐明。强调 ?在LM217的缺氧和营养饥饿下,AMPK活性和ATM表达增加。还营养饥饿在LM217中缺氧下的放射敏感性降低。还AMPKα的敲低下降了atm表达和LM217中的放射敏感性增加。还在HepG2的缺氧和营养饥饿下降低了AMPK活性和ATM表达。还营养饥饿在HepG2中缺氧下的放射敏感性增加。

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