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Glutathione transferase P1-1: self-preservation of an anti-cancer enzyme

机译:谷胱甘肽转移酶P1-1:抗癌酶的自我保存

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pSelf-preservation is a typical property of living organisms, observed in the simplest prokaryotic cell as well as in the more complex pluricellular organisms. Surprisingly we found a self-preservation mechanism operating at the level of a single enzyme. Human glutathione transferase P1-1 operates in such a way towards either killer compounds (competitive and irreversible inhibitors) or physical factors (temperature and UV-rays), which could suppress its detoxicating and anti-cancer activity in the cell. This property, here termed ‘co-operative self-preservation’, is based on a structural intersubunit communication, by which one subunit, as a consequence of an inactivating modification, triggers a defence arrangement in the other subunit. Paradoxically this ability, developed during evolution for the survival of the cell, may not always be advantageous for us. In fact, glutathione transferase P1-1 is overexpressed in most tumour cells and pharmacological attempts to inhibit this enzyme iin vivo/i, to prevent the drug resistance phenomenon during chemotherapy, may be thwarted by such self-preservation./p
机译:>在最简单的原核细胞以及更复杂的多细胞生物中观察到,自我保存是活生物体的典型特性。出人意料的是,我们发现了一种在单个酶水平上起作用的自我保存机制。人谷胱甘肽转移酶P1-1对杀手化合物(竞争性和不可逆抑制剂)或物理因素(温度和紫外线)起作用,可以抑制其在细胞中的解毒和抗癌活性。此属性(此处称为“合作自我保存”)基于结构化的子单元间通信,通过这种通信,一个子单元由于失活的修改而触发了另一个子单元中的防御安排。矛盾的是,这种在进化过程中为细胞存活而发展的能力可能并不总是对我们有利。实际上,谷胱甘肽转移酶P1-1在大多数肿瘤细胞中都过表达,并且这种自我保存可能会阻止药理学尝试在体内抑制该酶以防止化疗期间的耐药性现象。 / p>

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