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Synthesis of Desthiobiotin from 78-Diaminopel-argonic Acid in Biotin Auxotrophs of Escherichia coli K-12

机译:大肠杆菌K-12的生物素营养缺陷型中78-二氨基苯丙酸合成脱硫生物素

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摘要

The synthesis of desthiobiotin from 7,8-diaminopelargonic acid (DAP) was demonstrated in resting cell suspensions of Escherichia coli K-12 bioA mutants under conditions in which the biotin locus was derepressed. The biosynthetically formed desthiobiotin was identified by chromatography, electrophoresis, and by its ability to support the growth of yeast and those E. coli biotin auxotrophs that are blocked earlier in the biotin pathway. Optimal conditions for desthiobiotin synthesis were determined. Desthiobiotin synthetase activity was repressed 67% when partially derepressed resting cells were incubated in the presence of 3 ng of biotin per ml. Serine, bicarbonate, and glucose stimulated desthiobiotin synthesis apparently by acting as sources of CO2. The results of this study are consistent with an earlier postulated pathway for biotin biosynthesis in E. coli: pimelic acid → 7-oxo-8-aminopelargonic acid → DAP → desthiobiotin → biotin.
机译:在降压生物素基因座的条件下,在大肠杆菌K-12 bioA突变体的静止细胞悬浮液中证明了由7,8-二氨基壬酸(DAP)合成脱硫生物素。通过色谱,电泳及其支持酵母和那些在生物素途径中被阻断的大肠杆菌生物素营养缺陷型细菌的生长的能力,鉴定了生物合成形成的脱硫生物素。确定了脱硫生物素合成的最佳条件。当每毫升3 ng生物素存在下孵育部分去抑制的静息细胞时,去硫生物素合成酶的活性被抑制67%。丝氨酸,碳酸氢盐和葡萄糖显然是通过充当CO2的来源来刺激脱硫生物素的合成。这项研究的结果与在大肠杆菌中较早提出的生物素生物合成途径一致:庚二酸→7-氧代-8-氨基壬酸→DAP→脱硫生物素→生物素。

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