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大肠杆菌将甲硫氨酸衍生的甲基基团掺入到 siro 血红素中。

Incorporation of methionine-derived methyl groups into sirohaem by Escherichia coli.

作者信息

Siegel L M, Davis P S, Murphy M J

出版信息

Biochem J. 1977 Dec 1;167(3):669-74. doi: 10.1042/bj1670669.

Abstract

Sirohaem is a new type of haem that has been detected as a prosthetic group of several bacterial and plant enzymes that catalyse the six-electron reductions of sulphite to sulphide or of nitrite to NH(3). When a methionine-requiring mutant of Escherichia coli K12 was grown on a minimal medium supplemented with d-glucose and l-[Me-(3)H]methionine, 2.4 methyl groups per spectrophotometrically detectable haem group were incorporated into the sirohaem prosthetic group of the NADPH-sulphite reductase isolated from the organism. When the same strain of cells was grown on minimal medium supplemented with d-[U-(14)C]glucose and l-[Me-(3)H]methionine, the sirohaem isolated was found to contain a ratio of glucose-derived carbon/methionine-derived methyl of 19.8. This ratio is in excellent agreement with the value of 20 predicted by the iron-dimethyl-urotetrahydroporphyrin structure for sirohaem proposed by Murphy, Siegel, Kamin & Rosenthal [(1973) J. Biol. Chem.248, 2801-2814]. It can be concluded that sirohaem is indeed methylated, with the methyl groups derived from methionine (rather than by modification of existing side chains, as in protohaem). The structure proposed by Murphy et al. (1973) is therefore probably correct in its essential features. A possible relationship between the pathway for biosynthesis of sirohaem and that for synthesis of vitamin B(12) is discussed.

摘要

西罗血红素是一种新型血红素,已被检测为几种细菌和植物酶的辅基,这些酶催化亚硫酸盐六电子还原为硫化物或亚硝酸盐六电子还原为NH₃。当大肠杆菌K12的甲硫氨酸需求突变体在补充有d-葡萄糖和l-[甲基-(³)H]甲硫氨酸的基本培养基上生长时,每分光光度法可检测到的血红素基团有2.4个甲基被掺入从该生物体中分离出的NADPH-亚硫酸盐还原酶的西罗血红素辅基中。当相同菌株的细胞在补充有d-[U-(¹⁴)C]葡萄糖和l-[甲基-(³)H]甲硫氨酸的基本培养基上生长时,发现分离出的西罗血红素中葡萄糖衍生碳/甲硫氨酸衍生甲基的比例为19.8。该比例与墨菲、西格尔、卡明和罗森塔尔[(1973年)《生物化学杂志》248, 2801 - 2814]提出的西罗血红素的铁-二甲基-尿卟啉结构预测的20的值非常一致。可以得出结论,西罗血红素确实被甲基化了,甲基来自甲硫氨酸(而不是像原血红素那样通过对现有侧链的修饰)。因此,墨菲等人(1973年)提出的结构在其基本特征上可能是正确的。本文还讨论了西罗血红素生物合成途径与维生素B₁₂合成途径之间可能的关系。

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