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溶菌酶中酪氨酸与色氨酸之间分子内长程电子转移的重新评估。其他残基参与的证据。

Re-evaluation of intramolecular long-range electron transfer between tyrosine and tryptophan in lysozymes. Evidence for the participation of other residues.

作者信息

Stuart-Audette Marilyne, Blouquit Yves, Faraggi Moshe, Sicard-Roselli Cécile, Houée-Levin Chantal, Jollès Pierre

机构信息

LCP, Centre Universitaire, Orsay, France.

出版信息

Eur J Biochem. 2003 Sep;270(17):3565-71. doi: 10.1046/j.1432-1033.2003.03741.x.

DOI:10.1046/j.1432-1033.2003.03741.x
PMID:12919320
Abstract

One-electron oxidation of six different c-type lysozymes from hen egg white, turkey egg white, human milk, horse milk, camel stomach and tortoise was studied by gamma- and pulse-radiolysis. In the first step, one tryptophan side chain is oxidized to indolyl free radical, which is produced quantitatively. As shown already, the indolyl radical subsequently oxidizes a tyrosine side chain to the phenoxy radical in an intramolecular reaction. However this reaction is not total and its stoichiometry depends on the protein. Rate constants also vary between proteins, from 120 x s(-1) to 1000 x s(-1) at pH 7.0 and room temperature [extremes are hen and turkey egg white (120 x s(-1)) and human milk (1000 x s(-1))]. In hen and turkey egg white lysozymes we show that another reactive site is the Asn103-Gly104 peptidic bond, which gets broken radiolytically. Tryptic digestion followed by HPLC separation and identification of the peptides was performed for nonirradiated and irradiated hen lysozyme. Fluorescence spectra of the peptides indicate that Trp108 and/or 111 remain oxidized and that Tyr20 and 53 give bityrosine. Tyr23 appears not to be involved in the process. Thus new features of long-range intramolecular electron transfer in proteins appear: it is only partial and other groups are involved which are silent in pulse radiolysis.

摘要

通过γ射线和脉冲辐解研究了来自鸡蛋白、火鸡蛋白、人乳、马乳、骆驼胃和乌龟的六种不同c型溶菌酶的单电子氧化。第一步,一个色氨酸侧链被氧化为吲哚自由基,该自由基定量生成。如前所示,吲哚自由基随后在分子内反应中将一个酪氨酸侧链氧化为苯氧自由基。然而,该反应并不完全,其化学计量取决于蛋白质。不同蛋白质之间的速率常数也有所不同,在pH 7.0和室温下,速率常数在120×s⁻¹至1000×s⁻¹之间[极端情况是鸡和火鸡蛋白溶菌酶(120×s⁻¹)和人乳溶菌酶(1000×s⁻¹)]。在鸡和火鸡蛋白溶菌酶中,我们发现另一个反应位点是Asn103 - Gly104肽键,它会被辐射分解断裂。对未辐照和辐照的鸡溶菌酶进行胰蛋白酶消化,然后通过HPLC分离和鉴定肽段。肽段的荧光光谱表明Trp108和/或111仍被氧化,Tyr20和53生成了双酪氨酸。Tyr23似乎未参与该过程。因此,蛋白质中远程分子内电子转移出现了新特征:它只是部分的,并且涉及其他在脉冲辐解中无信号的基团。

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