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在酶原催化位点用荧光探针标记的人纤溶酶原类似物。制备、表征及其与链激酶的相互作用。

Analogs of human plasminogen that are labeled with fluorescence probes at the catalytic site of the zymogen. Preparation, characterization, and interaction with streptokinase.

作者信息

Bock P E, Day D E, Verhamme I M, Bernardo M M, Olson S T, Shore J D

机构信息

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

出版信息

J Biol Chem. 1996 Jan 12;271(2):1072-80. doi: 10.1074/jbc.271.2.1072.

Abstract

Fluorescent analogs of the proteinase zymogen, plasminogen (Pg), which are specifically inactivated and labeled at the catalytic site have been prepared and characterized as probes of the mechanisms of Pg activation. The active site induced non-proteolytically in Pg by streptokinase (SK) was inactivated stoichiometrically with the thioester peptide chloromethyl ketone. N alpha-[(acetylthio)acetyl]-(D-Phe)-Phe-Arg-CH2Cl; the thiol group generated subsequently on the incorporated inhibitor with NH2OH was quantitatively labeled with the fluorescence probe, 2-((4'-iodoacetamido)anilino)naphthalene-6-sulfonic acid; and the labeled Pg was separated from SK. Cleavage of labeled [Glu]Pg1 by urokinase-type plasminogen activator (uPA) was accompanied by a fluorescence enhancement (delta Fmax/Fo) of 2.0, and formation of 1% plasmin (Pm) activity. Comparison of labeled and native [Glu]Pg1 as uPA substrates showed that activation of labeled [Glu]Pg1 generated [Glu]Pm1 as the major product, while native [Glu]Pg1 was activated at a faster rate and produced [Lys]Pm1 because of concurrent proteolysis by plasmin. When a mixture of labeled and native Pg was activated, to include plasmin-feedback reactions, the zymogens were activated at equivalent rates. The lack of potential proteolytic activity of the Pg derivatives allowed their interactions with SK to be studied under equilibrium binding conditions. SK bound to labeled [Glu]Pg1, and [Lys]Pg1 with dissociation constants of 590 +/- 110 and 110 and 11 +/- 7 nM, and fluorescence enhancements of 3.1 +/- 0.1 and 1.6 +/- 0.1, respectively. Characterization of the interaction of SK with native [Glu]Pg1 by the use of labeled [Glu]Pg1 as a probe indicated a approximately 6-fold higher affinity of SK for the native Pg zymogen compared to the labeled Pg analog. Saturating levels of epsilon-aminocaproic acid reduced the affinity of SK for labeled [Glu]Pg1 by approximately 2-fold and lowered the fluorescence enhancement to 1.8 +/- 0.1, whereas the affinity of SK for labeled [Lys]Pg1 was reduced by approximately 98-fold with little effect on the enhancement. These results demonstrate that occupation of lysine binding sites modulates the affinity of SK for Pg and the changes in the environment of the catalytic site associated with SK-induced conformational activation. Together, these studies show that the labeled Pg derivatives behave as analogs of native Pg which report functionally significant changes in the environment of the catalytic site of the zymogen.

摘要

已制备出蛋白酶原纤溶酶原(Pg)的荧光类似物,其在催化位点被特异性灭活并标记,可作为Pg激活机制的探针进行表征。链激酶(SK)在Pg中通过非蛋白水解方式诱导产生的活性位点,能与硫酯肽氯甲基酮Nα-[(乙酰硫基)乙酰]-(D-苯丙氨酸)-苯丙氨酸-精氨酸-CH₂Cl进行化学计量的灭活反应;随后用羟胺在掺入的抑制剂上产生的硫醇基团,用荧光探针2-((4'-碘乙酰胺基)苯胺基)萘-6-磺酸进行定量标记;标记后的Pg与SK分离。尿激酶型纤溶酶原激活剂(uPA)对标记的[谷氨酸]Pg1的切割伴随着2.0的荧光增强(ΔFmax/Fo)以及1%纤溶酶(Pm)活性的形成。将标记的和天然的[谷氨酸]Pg1作为uPA底物进行比较,结果表明标记的[谷氨酸]Pg1激活后产生[谷氨酸]Pm1作为主要产物,而天然的[谷氨酸]Pg1激活速度更快,由于纤溶酶的同时蛋白水解作用产生[赖氨酸]Pm1。当标记的和天然的Pg混合物被激活,包括纤溶酶反馈反应时,这些酶原以相同的速率被激活。Pg衍生物缺乏潜在的蛋白水解活性,这使得它们与SK的相互作用能够在平衡结合条件下进行研究。SK与标记的[谷氨酸]Pg1和[赖氨酸]Pg1结合,解离常数分别为590±110和110以及11±7 nM,荧光增强分别为3.1±0.1和1.6±0.1。通过使用标记的[谷氨酸]Pg1作为探针来表征SK与天然[谷氨酸]Pg1的相互作用,结果表明与标记的Pg类似物相比,SK对天然Pg酶原的亲和力高约6倍。饱和水平的ε-氨基己酸使SK对标记的[谷氨酸]Pg1的亲和力降低约2倍,并将荧光增强降低至1.8±0.1,而SK对标记的[赖氨酸]Pg1的亲和力降低约98倍,对荧光增强影响很小。这些结果表明,赖氨酸结合位点的占据调节了SK对Pg的亲和力以及与SK诱导的构象激活相关的催化位点环境的变化。总之,这些研究表明标记的Pg衍生物表现为天然Pg的类似物,可报告酶原催化位点环境中功能上重要的变化。

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