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用2-[(4-溴-2,3-二氧代丁基)硫基]腺苷5'-单磷酸对兔肌肉腺苷琥珀酸裂解酶活性位点进行亲和标记。

Affinity Labeling of the active site of rabbit muscle adenylosuccinate lyase by 2-[(4-bromo-2.3-dioxobutyl)thio] adenosine 5'-monophosphate.

作者信息

Gite S U, Colman R F

机构信息

Department of Chemistry and Biochemistry, University of Delaware, Newark, Delaware 19716, USA.

出版信息

Biochemistry. 1996 Feb 27;35(8):2658-67. doi: 10.1021/bi952640y.

Abstract

Rabbit muscle adenylosuccinate lyase upon incubation with 7.5-50 muM 2 -[(4-bromo-2.3-dioxobutyl)thio]adenosine 5'-monophosphate (2-BDB-TAMP) in 0.05 M PIPES buffer, ph 7.0 and 10 degrees C, gives a time dependent biphasic inactivation. The rate of inactivation exhibits a nonlinear dependence on the concentration 2-BDB-TAMP, which can be described by reversible binding of reagent to the enzyme (K1=8.5 microM. 5.2 microM) prior to the irreversible reaction, with maximum rate constants of 0.319 and 0.027 min-1 for the fast and slow phases, respectively. The enzyme is a tetramer, with subunits of 50 000 Da. When the enzyme was 90% inactivated, 0.84 mol of reagent/mol of subunit was incorporated as measured by protein-bound phosphate analysis; similar results were obtained using 2-BDB-[14C]TAMP. Complete protection against inactivation and incorporation was afforded by 1 mM 5'-AMP and by 0.1 mM 5'-AMP + 5 mM fumarate (the natural products of adenylosuccinate hydrolysis) but not by 0.1 mM 5'-AMP alone, 5 mM fumarate alone, or 0.1 mM 5'-AMP + 5 mM maleate or 5 mM succinate. These studies suggest that 2-BDB-TAMP inactivates adenylosuccinate lyase by specific reaction at the substrate binding site, with negative cooperativity between subunits accounting for the appearance of two phases of inactivation. Cleavage of 2-BDB-TAMP-modified enzyme with cyanogen bromide and subsequent separation of peptides by reverse phase HPLC gave only one radioactive peak. This radioactive peptide was further digested with papain and the target site of the 2-BDB-TAMP reaction was identified as Arg112. We conclude that Arg112 is located in the substrate binding site of rabbit muscle adenylosuccinate lyase.

摘要

兔肌肉腺苷酸琥珀酸裂解酶在0.05 M PIPES缓冲液(pH 7.0,10℃)中与7.5 - 50 μM 2 - [(4 - 溴 - 2,3 - 二氧代丁基)硫代]腺苷5'-单磷酸(2 - BDB - TAMP)一起温育时,会产生时间依赖性的双相失活。失活速率对2 - BDB - TAMP浓度呈非线性依赖,这可以通过试剂在不可逆反应之前与酶的可逆结合(K1 = 8.5 μM、5.2 μM)来描述,快速相和慢速相的最大速率常数分别为0.319和0.027 min-1。该酶是一种四聚体,亚基分子量为50 000 Da。当酶90%失活时,通过蛋白质结合磷酸盐分析测定,每摩尔亚基掺入0.84摩尔试剂;使用2 - BDB - [14C]TAMP也获得了类似结果。1 mM 5'-AMP以及0.1 mM 5'-AMP + 5 mM富马酸(腺苷酸琥珀酸水解的天然产物)可完全保护酶不被失活和掺入,但单独的0.1 mM 5'-AMP、单独的5 mM富马酸、0.1 mM 5'-AMP + 5 mM马来酸或5 mM琥珀酸则不能。这些研究表明,2 - BDB - TAMP通过在底物结合位点的特异性反应使腺苷酸琥珀酸裂解酶失活,亚基之间的负协同作用导致了双相失活现象的出现。用溴化氰裂解2 - BDB - TAMP修饰的酶,随后通过反相HPLC分离肽段,仅得到一个放射性峰。该放射性肽段再用木瓜蛋白酶进一步消化,2 - BDB - TAMP反应的靶位点被鉴定为Arg112。我们得出结论,Arg112位于兔肌肉腺苷酸琥珀酸裂解酶的底物结合位点。

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