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首页> 外文期刊>The biochemical journal >Reactivities of hydroxylamine and sodium bisulphite with carbonyl-containing haems with the prosthetic groups of the erythrocyte green haemoproteins
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Reactivities of hydroxylamine and sodium bisulphite with carbonyl-containing haems with the prosthetic groups of the erythrocyte green haemoproteins

机译:羟胺和亚硫酸氢钠与含羰基的血红素和红血球绿色血红素蛋白的辅基反应

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pThe reactivities of alkaline NHsub2/subOH and neutral NaHSOsub3/sub with carbonyl and olefinic groups conjugated with the tetrapyrrole nucleus of haems were studied. The reactions were carried out with 2–3nmol of haem ia/i, spirographis haem, isospirographis haem, 2,4-diacetyldeuterohaem and protohaem. Vinyl side chains were found to be insensitive to the chemical action of both alkaline NHsub2/subOH and neutral NaHSOsub3/sub. The formyl-containing haems reacted rapidly with both reagents at room temperature, as evidenced by sizable hypsochromic shifts of the reduced pyridine haemochrome spectrum. In less alkaline solution, the reactions of these formyl-containing haems with NHsub2/subOH were much slower. 2,4-Diacetyldeuterohaem reacted with alkaline NHsub2/subOH, but not with neutral NaHSOsub3/sub. These rapid, simple and straightforward tests are readily usable in differentiating among formyl, acetyl and other electron-withdrawing side chains conjugated with the tetrapyrrole ring of haems. We applied these observations to an investigation of the two unique prosthetic groups of the bovine erythrocyte green haemoproteins. The prosthetic groups of these two proteins were isolated and spectrally characterized. Under the conditions used, the haems did not react with either NHsub2/subOH or NaHSOsub3/sub, but were altered by dithionite, suggesting that the previous interpretation that a formyl group was present [Hultquist, Dean & Reed (1976) iJ. Biol. Chem./ib251/b, 3927–3932] may have been premature. These studies also provide evidence that the α-hydroxyfarnesylethyl side chain of haem ia/i affects the α-band maximum, but not the β- or Soret bands of the reduced pyridine haemochrome spectrum of haem ia/i./p
机译:>研究了碱式NH 2 OH和中性NaHSO 3 与血红素四吡咯核缀合的羰基和烯基的反应性。反应是用2–3nmol血红素,螺旋形血红素,等螺旋形血红素,2,4-二乙酰基氘代血红素和原血进行。发现乙烯基侧链对碱性NH 2 OH和中性NaHSO 3 的化学作用均不敏感。含吡啶的血红素在室温下与两种试剂迅速反应,还原的吡啶血红素光谱的可观的变色位移证明了这一点。在碱性较低的溶液中,这些含甲酰的血红素与NH 2 OH的反应要慢得多。 2,4-二乙酰基氘卤烷与碱性NH 2 OH反应,但不与中性NaHSO 3 反应。这些快速,简单和直接的测试可容易地用于区分与血红素四吡咯环缀合的甲酰基,乙酰基和其他吸电子侧链。我们将这些观察结果应用于对牛红细胞绿色血红蛋白的两个独特修复组的研究。分离并分析了这两种蛋白质的修复基团。在所用条件下,血红素与NH 2 OH或NaHSO 3 均不发生反应,但被连二亚硫酸盐改变,表明先前的解释是存在甲酰基[Hultquist,Dean&amp;里德(1976)生物学Chem。 251 ,3927–3932]可能还为时过早。这些研究还提供了证据,表明血红素 a 的α-羟基法呢基乙基侧链会影响血红素 < / i>。

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