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Active-site characterization of S1 nuclease I. Affinity purification and influence of amino-group modification

机译:S1核酸酶I的活性位点表征。亲和纯化和氨基修饰的影响

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pA simple procedure, involving heat-treatment, DEAE-Sephadex, AMP-Sepharose and Bio-Gel P-60 chromatography, was developed for the purification of S1 nuclease to homogeneity from commercially available Takadiastase powder. Chemical modification of the amino groups of purified S1 nuclease revealed that lysine is essential for single-stranded DNAase, RNAase and phosphomonoesterase activities associated with the enzyme. The kinetics of inactivation suggested the involvement of a single lysine residue in the active site of the enzyme. Additionally, lysine modification was accompanied by a concomitant loss of all the activities of the enzyme, indicating the presence of a common catalytic site responsible for the hydrolysis of single-stranded DNA, RNA and 3′-AMP. Substrate-protection and inhibitor-binding studies on enzyme modified with 2,4,6-trinitrobenzenesulphonic acid showed that lysine may be involved in the substrate binding./p
机译:开发了一种简单的方法,包括热处理,DEAE-Sephadex,AMP-Sepharose和Bio-Gel P-60色谱法,用于从市售Takadiastase粉末中纯化S1核酸酶至均一。纯化的S1核酸酶氨基的化学修饰表明,赖氨酸对于与该酶相关的单链DNAase,RNAase和磷酸单酯酶活性至关重要。失活的动力学表明单个赖氨酸残基参与酶的活性位点。另外,赖氨酸修饰伴随着酶所有活性的丧失,表明存在负责单链DNA,RNA和3'-AMP水解的共同催化位点。对2,4,6-三硝基苯磺酸修饰的酶的底物保护和抑制剂结合研究表明,赖氨酸可能参与底物的结合。

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