课题基金 / 基金详情

Redesigning Trypsin via Mutagenesis

Redesigning Trypsin via Mutagenesis
通过诱变重新设​​计胰蛋白酶
批准号:
8904956
负责人:
Charles Craik
金额:
$33.0万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
1990
资助国家:
美国
项目状态:
已结题
起止时间:
1990-01-01 至 1992-12-31

项目摘要

项目成果

Charles Craik的其他基金

相似基金

相关文献

中文摘要
翻译
为了深入了解胰酶的底物特异性、催化机理和结构,将利用分子遗传学、生物化学和生物物理学的现有方法来产生和分析突变的胰酶。有三种常用的方法来改变酶:1)靶向替换,2)区域特异性替换和3)自然适应分析。在每种情况下,胰酶的定点突变都是根据结构和/或功能原理产生的。然后,这种新的胰酶在细菌中过度表达。分离、纯化了感兴趣的变异蛋白,并将其参数与天然酶进行了比较。然后选择选定的突变体进行更详细的动力学、分子动力学和配位三维结构分析。初始修饰的结果将为将来在酶中引入氨基辅助变化提供基础。初步实验已经成功地解决了特定氨基酸在底物识别中的作用和酶的催化机制。拟议的实验包括活性中心残基的氨基酸取代,以研究催化机理、底物结合口袋残基和表面环残基。这些研究将有助于我们理解胰蛋白酶和相关丝氨酸蛋白酶的结构/功能关系。此外,这些研究将有助于为酶的从头设计提供一个框架。
英文摘要
To provide insight into the substrate specificity, catalytic mechanism and structure of trypsin, current methods of molecular genetics, biochemistry and biophysics will be used to generate and analyze mutant trypsins. Three general approaches are used to alter the enzyme: 1) targeted substitutions, 2) region specific substitutions and 3) natural adaptation analysis. In each case site-directed mutants of trypsin are generated according to structural and/or functional principles. The novel trypsins are then over-expressed in bacteria. The variant proteins of interest are isolated, purified and their parameters compared with the native enzyme. Selected mutants are then chosen for more detailed kinetic, molecular dynamic and coordinated three-dimensional structure analysis. Results from the initial modifications will provide a basis for introducing future amino aid changes into the enzyme. Initial experiments have been successful in addressing the role of specific amino acids in substrate recognition and the catalytic mechanism of the enzyme. Proposed experiments involve amino acid replacements of active site residues for studies of the catalytic mechanism, substrate binding pocket residues and surface loop residues. These studies will contribute to our understanding of structure/function relationships in the enzyme trypsin and related serine proteases. In addition, these studies will help provide a framework for the de novo design of enzymes.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
Engineering the Function of Serine Proteases
Renovation of Protein Engineering Facilities
Redesigning Trypsin Via Mutagenesis
Redesigning Trypsinogen Via Directed Mutagenesis
海外基金