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1
Haem ligands of the ferricytochrome c of Ustilago sphaerogena.黑粉菌铁细胞色素c的血红素配体。
Biochem J. 1974 Jun;139(3):547-53. doi: 10.1042/bj1390547.
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The primary structure of cytochrome c from the rust fungus Ustilago sphaerogena.来自锈菌球形黑粉菌的细胞色素c的一级结构。
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3
Multiple low spin forms of the cytochrome c ferrihemochrome. EPR spectra of various eukaryotic and prokaryotic cytochromes c.细胞色素c高铁血红素的多种低自旋形式。各种真核生物和原核生物细胞色素c的电子顺磁共振光谱。
J Biol Chem. 1977 Jan 25;252(2):574-82.
4
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Site-directed modifications indicate differences in axial haem c iron ligation between the related NrfH and NapC families of multihaem c-type cytochromes.定点修饰表明,相关的多血红素c型细胞色素NrfH家族和NapC家族在轴向血红素c铁配体方面存在差异。
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A new spatial structure for the axial methionine observed in cytochrome c5 from Pseudomonas mendocina. Correlations with the electronic structure of heme c.在门多萨假单胞菌细胞色素c5中观察到的轴向甲硫氨酸的新空间结构。与血红素c电子结构的相关性。
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本文引用的文献

1
Cytochrome c modified by digestion with proteolytic enzymes. 1. Digestion.经蛋白水解酶消化修饰的细胞色素c。1. 消化。
Biochem J. 1951 Aug;49(3):362-7. doi: 10.1042/bj0490362.
2
Modification of the methionine residues in ribonuclease.核糖核酸酶中甲硫氨酸残基的修饰
Biochemistry. 1962 Jan;1:68-75. doi: 10.1021/bi00907a011.
3
Isolation and amino acid composition of chymotryptic peptides from horse heart cytochrome c.马心脏细胞色素c中胰凝乳蛋白酶肽段的分离及氨基酸组成
J Biol Chem. 1962 Jul;237:2151-60.
4
GUANIDINATED CYTOCHROME C.胍基化细胞色素C
Proc Natl Acad Sci U S A. 1964 Dec;52(6):1469-76. doi: 10.1073/pnas.52.6.1469.
5
Alkylation and identification of the histidine residues at the active site of ribonuclease.核糖核酸酶活性位点组氨酸残基的烷基化及鉴定
J Biol Chem. 1963 Jul;238:2413-9.
6
[Surgeon-General Emanuel Andreas Gottfred SAUGMAN, 16 December 1878--19 April 1962].[外科主任伊曼纽尔·安德烈亚斯·戈特弗雷德·绍格曼,1878年12月16日 - 1962年4月19日]
Militaerlaegen. 1962 Oct;68:33-7.
7
Preparation of crystalline Pseudomonas cvtochrome c-551 and its general properties.结晶假单胞菌细胞色素c-551的制备及其一般性质。
Biochem J. 1960 Oct;77(1):194-201. doi: 10.1042/bj0770194.
8
Oxidation-linked proton functions in heme octa- and undecapeptides from mammalian cytochrome c.来自哺乳动物细胞色素c的血红素八肽和十一肽中的氧化连接质子功能。
J Biol Chem. 1960 Dec;235:3640-5.
9
The reaction of iodoacetate with methionine.碘乙酸与甲硫氨酸的反应。
J Biol Chem. 1959 Jul;234(7):1761-4.
10
Spectrum of horse-heart cytochrome c.马心细胞色素c的光谱
Biochem J. 1959 Mar;71(3):570-2. doi: 10.1042/bj0710570.

黑粉菌铁细胞色素c的血红素配体。

Haem ligands of the ferricytochrome c of Ustilago sphaerogena.

作者信息

Vinogradov S N, Bitar K G, Lowenkron S

出版信息

Biochem J. 1974 Jun;139(3):547-53. doi: 10.1042/bj1390547.

DOI:10.1042/bj1390547
PMID:4368759
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1166319/
Abstract

The mammalian-type cytochrome c of the basidiomycete Ustilago sphaerogena contains in a single polypeptide chain of 107 residues, two histidine residues located at positions 18 and 33, and one methionine residue situated at position 80 (Bitar et al., 1972). The reaction of Ustilago ferricytochrome c with bromoacetate at neutral pH resulted in the modification of histidine-33, but not of histidine-18 or of the invariant methionine residue. The activities of Ustilago cytochrome c with mitochondrial cytochrome c oxidase and with NADH-cytochrome c reductase were unaltered by the modification. The equilibrium constants for the formation of low-spin complexes of the ferrihaem octapeptide of horse cytochrome c (residues 14-21, including the haem bound covalently to cysteines 14 and 17) with imidazole, N(2)-acetylhistidine and monocarboxymethyl derivatives of N(2)-acetylhistidine were determined spectrophotometrically. Alkylation of the imidazole side-chain group of N(2)-acetylhistidine resulted in a marked decrease in its ability to form low-spin ferrihaem complexes. These results indicate that in Ustilago ferricytochrome c in solution histidine-33 is not involved in the central co-ordination complex. Since side-chain groups of residues other than histidine and methionine do not appear to be involved in the central complexes of other mammalian-type cytochromes c (Hettinger & Harbury, 1964, 1965; Myer & Harbury, 1965) it is likely that in Ustilago ferricytochrome c in solution at neutral pH, the side-chain groups of histidine-18 and methionine-80 are involved in the central co-ordination complex. The latter is stable over the pH range 2.6-8.4.

摘要

担子菌球形黑粉菌的哺乳动物型细胞色素c在一条由107个残基组成的单多肽链中,含有位于第18和33位的两个组氨酸残基,以及位于第80位的一个甲硫氨酸残基(比塔尔等人,1972年)。在中性pH条件下,球形黑粉菌高铁细胞色素c与溴乙酸的反应导致组氨酸-33被修饰,但组氨酸-18或不变的甲硫氨酸残基未被修饰。球形黑粉菌细胞色素c与线粒体细胞色素c氧化酶和NADH-细胞色素c还原酶的活性不受该修饰的影响。用分光光度法测定了马细胞色素c的高铁血红素八肽(残基14 - 21,包括与半胱氨酸14和17共价结合的血红素)与咪唑、N(2)-乙酰组氨酸和N(2)-乙酰组氨酸的单羧甲基衍生物形成低自旋复合物的平衡常数。N(2)-乙酰组氨酸的咪唑侧链基团烷基化导致其形成低自旋高铁血红素复合物的能力显著降低。这些结果表明,在溶液中的球形黑粉菌高铁细胞色素c中,组氨酸-33不参与中心配位复合物。由于除组氨酸和甲硫氨酸以外的残基侧链基团似乎不参与其他哺乳动物型细胞色素c的中心复合物(赫廷格和哈伯里,1964年、1965年;迈尔和哈伯里,1965年),因此在中性pH条件下溶液中的球形黑粉菌高铁细胞色素c中,组氨酸-18和甲硫氨酸-80的侧链基团可能参与中心配位复合物。后者在2.6 - 8.4的pH范围内稳定。