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5'-脱氧-5'-甲硫基腺苷对小鼠淋巴瘤细胞中二氢乳清酸脱氢酶合成的调节作用

Modulation of diphthamide synthesis by 5'-deoxy-5'-methylthioadenosine in murine lymphoma cells.

作者信息

Yamanaka H, Kajander E O, Carson D A

出版信息

Biochim Biophys Acta. 1986 Sep 19;888(2):157-62. doi: 10.1016/0167-4889(86)90016-9.

Abstract

The histidine derivative diphthamide occurs uniquely in eukaryotic elongation factor 2 (EF-2), and is the specific target for the diphtheria toxin mono(ADP-ribosyl)transferase. The first step in diphthamide biosynthesis may involve the transfer of aminocarboxypropyl moiety from S-adenosylmethionine to the imidazole ring of histidine in EF-2, to yield 2-(3-carboxy-3-aminopropyl)histidine and 5'-deoxy-5'-methylthioadenosine (MeSAdo). As the possible nucleoside product of the initial reaction in the diphthamide biosynthetic pathway, MeSAdo could be an inhibitor of diphthamide formation. In the present experiments, we have analyzed the effects of MeSAdo on diphthamide synthesis in a MeSAdo phosphorylase-deficient mutant murine lymphoma cell line (R1.1, clone H3). As measured by susceptibility to diphtheria toxin-induced ADP-ribosylation, MeSAdo inhibited the formation of diphthamide in EF-2. The inhibition was not due to a nonspecific effect on protein synthesis. Indeed, exogenous MeSAdo substantially protected the lymphoma cells from the lethal effects of diphtheria toxin. These results suggest that MeSAdo can specifically modulate the biosynthesis of diphthamide in EF-2 in murine malignant lymphoma cells.

摘要

组氨酸衍生物白喉酰胺仅存在于真核生物延伸因子2(EF-2)中,是白喉毒素单(ADP-核糖基)转移酶的特异性作用靶点。白喉酰胺生物合成的第一步可能涉及将氨羧丙基部分从S-腺苷甲硫氨酸转移至EF-2中组氨酸的咪唑环上,生成2-(3-羧基-3-氨丙基)组氨酸和5'-脱氧-5'-甲硫基腺苷(MeSAdo)。作为白喉酰胺生物合成途径初始反应可能的核苷产物,MeSAdo可能是白喉酰胺形成的抑制剂。在本实验中,我们分析了MeSAdo对缺乏MeSAdo磷酸化酶的突变小鼠淋巴瘤细胞系(R1.1,克隆H3)中白喉酰胺合成的影响。通过对白喉毒素诱导的ADP-核糖基化的敏感性测定,MeSAdo抑制了EF-2中白喉酰胺的形成。这种抑制并非由于对蛋白质合成的非特异性作用。实际上,外源性MeSAdo可使淋巴瘤细胞免受白喉毒素的致死作用。这些结果表明,MeSAdo可特异性调节小鼠恶性淋巴瘤细胞中EF-2中白喉酰胺的生物合成。

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