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大肠杆菌磷酸烯醇丙酮酸:糖磷酸转移酶系统中含组氨酸的蛋白质HPr活性位点组氨酸的天冬氨酸替代物能够接受和捐赠磷酰基。酰基磷酸的自发去磷酸化会自动催化内部环化反应。

The aspartyl replacement of the active site histidine in histidine-containing protein, HPr, of the Escherichia coli Phosphoenolpyruvate:Sugar phosphotransferase system can accept and donate a phosphoryl group. Spontaneous dephosphorylation of acyl-phosphate autocatalyzes an internal cyclization.

作者信息

Napper S, Delbaere L T, Waygood E B

机构信息

Department of Biochemistry, University of Saskatchewan, Saskatoon, Saskatchewan S7N 5E5, Canada.

出版信息

J Biol Chem. 1999 Jul 30;274(31):21776-82. doi: 10.1074/jbc.274.31.21776.

Abstract

The active site residue, His(15), in histidine-containing protein, HPr, can be replaced by aspartate and still act as a phosphoacceptor and phosphodonor with enzyme I and enzyme IIA(glucose), respectively. Other substitutions, including cysteine, glutamate, serine, threonine, and tyrosine, failed to show any activity. Enzyme I K(m) for His(15) --> Asp HPr is increased 10-fold and V(max) is decreased 1000-fold compared with wild type HPr. The phosphorylation of Asp(15) led to a spontaneous internal rearrangement involving the loss of the phosphoryl group and a water molecule, which was confirmed by mass spectrometry. The protein species formed had a higher pI than His(15) --> Asp HPr, which could arise from the formation of a succinimide or an isoimide. Hydrolysis of the isolated high pI form gave only aspartic acid at residue 15, and no isoaspartic acid was detected. This indicates that an isoimide rather than a succinimide is formed. In the absence of phosphorylation, no formation of the high pI form could be found, indicating that phosphorylation catalyzed the formation of the cyclization. The possible involvement of Asn(12) in an internal cyclization with Asp(15) was eliminated by the Asn(12) --> Ala mutation in His(15) --> AspHPr. Asn(12) substitutions of alanine, aspartate, serine, and threonine in wild type HPr indicated a general requirement for residues capable of forming a hydrogen bond with the Nepsilon(2) atom of His(15), but elimination of the hydrogen bond has only a 4-fold decrease in k(cat)/K(m).

摘要

含组氨酸的蛋白质HPr中的活性位点残基His(15),可以被天冬氨酸取代,并且依然分别作为磷酸受体和磷酸供体与酶I和酶IIA(葡萄糖)起作用。其他取代,包括半胱氨酸、谷氨酸、丝氨酸、苏氨酸和酪氨酸,均未显示出任何活性。与野生型HPr相比,酶I对His(15)→Asp HPr的K(m)增加了10倍,V(max)降低了1000倍。Asp(15)的磷酸化导致了一个自发的内部重排,涉及磷酰基和一个水分子的丢失,这通过质谱得到了证实。形成的蛋白质种类的pI比His(15)→Asp HPr更高,这可能是由琥珀酰亚胺或异琥珀酰亚胺的形成导致的。分离出的高pI形式的水解产物在残基15处仅产生天冬氨酸,未检测到异天冬氨酸。这表明形成的是异琥珀酰亚胺而非琥珀酰亚胺。在没有磷酸化的情况下,未发现高pI形式形成,这表明磷酸化催化了环化反应的形成。His(15)→AspHPr中的Asn(12)→Ala突变排除了Asn(12)与Asp(15)进行内部环化的可能性。野生型HPr中丙氨酸、天冬氨酸、丝氨酸和苏氨酸对Asn(12)的取代表明,一般需要能够与His(15)的Nε(2)原子形成氢键的残基,但氢键的消除仅使k(cat)/K(m)降低了4倍。

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