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金黄色葡萄球菌的磷酸烯醇丙酮酸依赖性磷酸转移酶系统。磷酸载体蛋白HPr的1H核磁共振谱中的酪氨酸完全归属。

The phosphoenolpyruvate-dependent phosphotransferase system of Staphylococcus aureus. Complete tyrosine assignments in the 1H nuclear-magnetic-resonance spectrum of the phosphocarrier protein HPr.

作者信息

Schmidt-Aderjan U, Rösch P, Frank R, Hengstenberg W

出版信息

Eur J Biochem. 1979 May 2;96(1):43-8. doi: 10.1111/j.1432-1033.1979.tb13011.x.

Abstract

Upon nitration of the phosphocarrier protein HPr three nitrated derivatives of the protein were isolated: mononitrated HPr, dinitrated HPr and trinitrated HPr. Tryptic digestion of the derivatives leads to nitrotyrosine-containing peptides which were isolated and characterized by amino acid analysis. This resulted in the determination of the positions of the nitrated tyrosyl residues in the amino acid sequence. In mononitrated HPr only Tyr-56 was modified, in dinitrated HPr both Tyr-56 and Tyr-37 had reacted with the nitrating agent; modification of all three tyrosyl residues in trinitrated HPr required more drastic reaction conditions. The nuclear magnetic resonance spectra of the three derivatives allowed the assignments of the tyrosine resonances as follows: Tyr-A and Tyr-B with pK values of 10.5 and 11.5 were designated Tyr-56 and Tyr-37 whereas Tyr-C, whose protons are not titratable before denaturation of the protein, was assigned to Tyr-6 in the amino acid sequence. The nitration studies, together with the titration behaviour of the three tyrosines, indicate the topology of the tyrosyl residues to be as follows: Tyr-56 is located at the surface, Tyr-37 is slightly buried, Tyr-6 is deeply buried. The nitrotyrosyl derivatives retain their biological activity.

摘要

在对磷酸载体蛋白HPr进行硝化反应后,分离出了该蛋白的三种硝化衍生物:单硝化HPr、二硝化HPr和三硝化HPr。对这些衍生物进行胰蛋白酶消化,得到了含硝基酪氨酸的肽段,通过氨基酸分析对其进行了分离和表征。这确定了氨基酸序列中硝化酪氨酸残基的位置。在单硝化HPr中,只有Tyr-56被修饰;在二硝化HPr中,Tyr-56和Tyr-37都与硝化剂发生了反应;三硝化HPr中所有三个酪氨酸残基的修饰需要更剧烈的反应条件。三种衍生物的核磁共振谱确定了酪氨酸共振峰如下:pK值为10.5和11.5的Tyr-A和Tyr-B分别对应Tyr-56和Tyr-37,而在蛋白质变性前其质子不可滴定的Tyr-C在氨基酸序列中对应Tyr-6。硝化研究以及这三个酪氨酸的滴定行为表明,酪氨酸残基的拓扑结构如下:Tyr-56位于表面;Tyr-37略微埋藏;Tyr-6深埋。硝基酪氨酸衍生物保留了它们的生物活性。

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