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一种基于罗丹明的双功能探针在嗜热栖热放线菌木聚糖酶N端特异性标记中的应用。

Use of a rhodamine-based bifunctional probe in N-terminal specific labeling of Thermomyces lanuginosus xylanase.

作者信息

Jia Jia, Chen Wei, Ma Huimin, Wang Ke, Zhao Chuan

机构信息

Beijing National Laboratory for Molecular Sciences, Key Laboratory of Analytical Chemistry for Living Biosystems, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China.

出版信息

Mol Biosyst. 2010 Oct;6(10):1829-33. doi: 10.1039/c005223j. Epub 2010 Jul 6.

Abstract

Rhodamine B piperazinoacetohydrazine (RBPH) is used as a bifunctional probe for the N-terminal specific modification of a thermophilic enzyme (T. lanuginosus xylanase), and the modification effect on the thermostability of the enzyme is investigated. The probe RBPH, bearing a spectroscopic unit of rhodamine B, a carbonyl-specific labeling unit of hydrazine and a linker of piperazine, not only has a stable always-on spectroscopic response, but also exists in a cationic form. These properties enable RBPH to serve as a bifunctional probe (simultaneous introduction of stable spectroscopic signal and positive charge) for the protein modification, and such an application has been successfully demonstrated on the N-terminal labeling of T. lanuginosus xylanase. A temperature-dependent inactivation study shows that the modification of T. lanuginosus xylanase by RBPH hardly changes its thermostability, in other words, a small change in electric charge of the N-terminal region caused by introducing one positive charge is not enough to alter the thermostability of the enzyme. This reveals a conservative property of the N-terminal domain for electric charge change, and such a property may result from the fact that the N-terminal domain of the enzyme already has 4 charged residues, which can produce strong electrostatic interactions, thereby making the domain quite stable.

摘要

罗丹明B哌嗪基乙酰肼(RBPH)用作嗜热酶(嗜热栖热放线菌木聚糖酶)N端特异性修饰的双功能探针,并研究其对该酶热稳定性的修饰效果。探针RBPH带有罗丹明B的光谱单元、肼的羰基特异性标记单元和哌嗪连接子,不仅具有稳定的常开光谱响应,而且以阳离子形式存在。这些特性使RBPH能够作为蛋白质修饰的双功能探针(同时引入稳定的光谱信号和正电荷),并且这种应用已在嗜热栖热放线菌木聚糖酶的N端标记上得到成功证明。一项温度依赖性失活研究表明,RBPH对嗜热栖热放线菌木聚糖酶的修饰几乎不会改变其热稳定性,换句话说,引入一个正电荷导致N端区域电荷的微小变化不足以改变该酶的热稳定性。这揭示了N端结构域电荷变化的保守特性,这种特性可能源于该酶的N端结构域已经有4个带电荷的残基,它们可以产生强烈的静电相互作用,从而使该结构域相当稳定。

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