Suppr超能文献

链激酶通过赖氨酸结合位点和催化结构域相互作用,优先结合纤溶酶原的伸展构象。

Streptokinase binds preferentially to the extended conformation of plasminogen through lysine binding site and catalytic domain interactions.

作者信息

Boxrud P D, Bock P E

机构信息

Department of Pathology, Vanderbilt University School of Medicine, Nashville, Tennessee 37232, USA.

出版信息

Biochemistry. 2000 Nov 14;39(45):13974-81. doi: 10.1021/bi000594i.

Abstract

Binding of streptokinase (SK) to plasminogen (Pg) activates the zymogen conformationally and initiates its conversion into the fibrinolytic proteinase, plasmin (Pm). Equilibrium binding studies of SK interactions with a homologous series of catalytic site-labeled fluorescent Pg and Pm analogues were performed to resolve the contributions of lysine binding site interactions, associated changes between extended and compact conformations of Pg, and activation of the proteinase domain to the affinity for SK. SK bound to fluorescein-labeled [Glu]Pg(1) and [Lys]Pg(1) with dissociation constants of 624 +/- 112 and 38 +/- 5 nM, respectively, whereas labeled [Lys]Pm(1) bound with a 57000-fold tighter dissociation constant of 11 +/- 2 pM. Saturation of lysine binding sites with 6-aminohexanoic acid had no effect on SK binding to labeled [Glu]Pg(1), but weakened binding to labeled [Lys]Pg(1) and [Lys]Pm(1) 31- and 20-fold, respectively. At low Cl(-) concentrations, where [Glu]Pg assumes the extended conformation without occupation of lysine binding sites, a 23-fold increase in the affinity of SK for labeled [Glu]Pg(1) was observed, which was quantitatively accounted for by expression of new lysine binding site interactions. The results support the conclusion that the SK affinity for the fluorescent Pg and Pm analogues is enhanced 13-16-fold by conversion of labeled [Glu]Pg to the extended conformation of the [Lys]Pg derivative as a result of lysine binding site interactions, and is enhanced 3100-3500-fold further by the increased affinity of SK for the activated proteinase domain. The results imply that binding of SK to [Glu]Pg results in transition of [Glu]Pg to an extended conformation in an early event in the SK activation mechanism.

摘要

链激酶(SK)与纤溶酶原(Pg)的结合会使该酶原发生构象活化,并启动其向纤溶蛋白酶即纤溶酶(Pm)的转化。对SK与一系列同源的催化位点标记的荧光Pg和Pm类似物之间的相互作用进行了平衡结合研究,以解析赖氨酸结合位点相互作用的贡献、Pg在伸展构象和紧密构象之间的相关变化,以及蛋白酶结构域的活化对SK亲和力的影响。SK与荧光素标记的[Glu]Pg(1)和[Lys]Pg(1)结合,解离常数分别为624±112 nM和38±5 nM,而标记的[Lys]Pm(1)结合时的解离常数则紧密57000倍,为11±2 pM。用6-氨基己酸使赖氨酸结合位点饱和对SK与标记的[Glu]Pg(1)的结合没有影响,但使与标记的[Lys]Pg(1)和[Lys]Pm(1)的结合分别减弱了31倍和20倍。在低Cl(-)浓度下,[Glu]Pg呈现伸展构象且赖氨酸结合位点未被占据,此时观察到SK对标记的[Glu]Pg(1)的亲和力增加了23倍,这可以通过新的赖氨酸结合位点相互作用的表达进行定量解释。结果支持以下结论:由于赖氨酸结合位点相互作用,标记的[Glu]Pg转化为[Lys]Pg衍生物的伸展构象,使SK对荧光Pg和Pm类似物的亲和力增强了13 - 16倍,而SK对活化蛋白酶结构域亲和力的增加进一步使亲和力增强了3100 - 3500倍。结果表明,在SK激活机制的早期事件中,SK与[Glu]Pg的结合导致[Glu]Pg转变为伸展构象。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验