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SHMT2 drives glioma cell survival in ischaemia but imposes a dependence on glycine clearance

机译:sHmT2在缺血时驱动神经胶质瘤细胞存活,但对甘氨酸清除有依赖性

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摘要

Cancer cells adapt their metabolic processes to support rapid proliferation, but less is known about how cancer cells alter metabolism to promote cell survival in a poorly vascularized tumour microenvironment1, 2, 3. Here we identify a key role for serine and glycine metabolism in the survival of brain cancer cells within the ischaemic zones of gliomas. In human glioblastoma multiforme, mitochondrial serine hydroxymethyltransferase (SHMT2) and glycine decarboxylase (GLDC) are highly expressed in the pseudopalisading cells that surround necrotic foci. We find that SHMT2 activity limits that of pyruvate kinase (PKM2) and reduces oxygen consumption, eliciting a metabolic state that confers a profound survival advantage to cells in poorly vascularized tumour regions. GLDC inhibition impairs cells with high SHMT2 levels as the excess glycine not metabolized by GLDC can be converted to the toxic molecules aminoacetone and methylglyoxal. Thus, SHMT2 is required for cancer cells to adapt to the tumour environment, but also renders these cells sensitive to glycine cleavage system inhibition.
机译:癌细胞适应新陈代谢过程以支持快速增殖,但对于血管微弱的肿瘤微环境1、2、3中癌细胞如何改变新陈代谢以促进细胞存活的了解较少,这里我们确定丝氨酸和甘氨酸代谢在存活中的关键作用脑胶质瘤缺血区内的脑癌细胞在人类胶质母细胞瘤中,线粒体丝氨酸羟甲基转移酶(SHMT2)和甘氨酸脱羧酶(GLDC)在围绕坏死灶的假性苍白细胞中高度表达。我们发现SHMT2活性限制了丙酮酸激酶(PKM2)的活性并减少了氧气消耗,从而引发了一种新陈代谢状态,赋予血管化程度低的肿瘤区域中的细胞深远的生存优势。 GLDC抑制会损害具有高SHMT2水平的细胞,因为未被GLDC代谢的过量甘氨酸可转化为有毒分子氨基丙酮和甲基乙二醛。因此,SHMT2是癌细胞适应肿瘤环境所必需的,但也使这些细胞对甘氨酸裂解系统的抑制敏感。

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