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1
Inhibited thrombins. Interactions with fibrinogen and fibrin.凝血酶抑制物。与纤维蛋白原和纤维蛋白的相互作用。
Biochem J. 1987 Mar 15;242(3):881-7. doi: 10.1042/bj2420881.
2
The effect of antithrombin III-independent thrombin inhibitors and heparin on fibrin accretion onto fibrin-coated polyethylene.抗凝血酶III非依赖性凝血酶抑制剂和肝素对纤维蛋白在纤维蛋白包被的聚乙烯上沉积的影响。
Thromb Haemost. 1993 Feb 1;69(2):130-4.
3
Evidence for thrombin enhancement of fibrin polymerization that is independent of its catalytic activity.凝血酶增强纤维蛋白聚合的证据,该增强作用与其催化活性无关。
J Lab Clin Med. 1991 Mar;117(3):218-25.
4
Hydrophobic affinity chromatography of human thrombin.人凝血酶的疏水亲和色谱法。
Arch Biochem Biophys. 1993 Apr;302(1):109-12. doi: 10.1006/abbi.1993.1187.
5
The acceleratory effect of thrombin on fibrin clot assembly.凝血酶对纤维蛋白凝块组装的加速作用。
Blood Coagul Fibrinolysis. 1990 Oct;1(4-5):475-8. doi: 10.1097/00001721-199010000-00020.
6
Inhibition of thrombin by arginine-containing peptide chloromethyl ketones and bis chloromethyl ketone-albumin conjugates.含精氨酸的肽氯甲基酮和双氯甲基酮-白蛋白缀合物对凝血酶的抑制作用。
J Enzyme Inhib. 1995;9(1):17-27. doi: 10.3109/14756369509040678.
7
Clot-bound thrombin is protected from inhibition by heparin-antithrombin III but is susceptible to inactivation by antithrombin III-independent inhibitors.与凝块结合的凝血酶可免受肝素-抗凝血酶III的抑制,但易被不依赖抗凝血酶III的抑制剂灭活。
J Clin Invest. 1990 Aug;86(2):385-91. doi: 10.1172/JCI114723.
8
Identification and characterization of the thrombin binding sites on fibrin.纤维蛋白上凝血酶结合位点的鉴定与表征
J Biol Chem. 1996 Sep 20;271(38):23121-5. doi: 10.1074/jbc.271.38.23121.
9
Anion-binding exosite of human alpha-thrombin and fibrin(ogen) recognition.人α-凝血酶的阴离子结合外位点与纤维蛋白(原)识别
Biochemistry. 1988 Sep 6;27(18):7106-12. doi: 10.1021/bi00418a066.
10
Structural and functional properties of human alpha-thrombin, phosphopyridoxylated alpha-thrombin, and gamma T-thrombin. Identification of lysyl residues in alpha-thrombin that are critical for heparin and fibrin(ogen) interactions.人α-凝血酶、磷酸吡哆醛化α-凝血酶和γT-凝血酶的结构与功能特性。确定α-凝血酶中对肝素和纤维蛋白(原)相互作用至关重要的赖氨酰残基。
J Biol Chem. 1989 Nov 5;264(31):18419-25.

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Thermal shift assay to probe melting of thrombin, fibrinogen, fibrin monomer, and fibrin: Gly-Pro-Arg-Pro induces a fibrin monomer-like state in fibrinogen.热迁移分析探测凝血酶、纤维蛋白原、纤维蛋白单体和纤维蛋白的解链:甘-脯-精-脯诱导纤维蛋白原形成纤维蛋白单体样构象。
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2
Crystal structure of the complex between thrombin and the central "E" region of fibrin.凝血酶与血纤蛋白中央“E”区域复合物的晶体结构。
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3
Fibrin monomer protects thrombin from inactivation by heparin-antithrombin III: implications for heparin efficacy.纤维蛋白单体可保护凝血酶不被肝素-抗凝血酶III灭活:对肝素疗效的影响。
Proc Natl Acad Sci U S A. 1989 May;86(10):3619-23. doi: 10.1073/pnas.86.10.3619.
4
The refined 1.9 A crystal structure of human alpha-thrombin: interaction with D-Phe-Pro-Arg chloromethylketone and significance of the Tyr-Pro-Pro-Trp insertion segment.人α-凝血酶的精细1.9埃晶体结构:与D-苯丙氨酸-脯氨酸-精氨酸氯甲基酮的相互作用以及酪氨酸-脯氨酸-脯氨酸-色氨酸插入片段的意义
EMBO J. 1989 Nov;8(11):3467-75. doi: 10.1002/j.1460-2075.1989.tb08511.x.
5
Clot-bound thrombin is protected from inhibition by heparin-antithrombin III but is susceptible to inactivation by antithrombin III-independent inhibitors.与凝块结合的凝血酶可免受肝素-抗凝血酶III的抑制,但易被不依赖抗凝血酶III的抑制剂灭活。
J Clin Invest. 1990 Aug;86(2):385-91. doi: 10.1172/JCI114723.
6
Molecular basis of fibrinogen Naples associated with defective thrombin binding and thrombophilia. Homozygous substitution of B beta 68 Ala----Thr.与凝血酶结合缺陷及血栓形成倾向相关的那不勒斯纤维蛋白原的分子基础。Bβ68位丙氨酸纯合性替代为苏氨酸。
J Clin Invest. 1992 Jul;90(1):238-44. doi: 10.1172/JCI115841.
7
Endothelial cell spreading on fibrin requires fibrinopeptide B cleavage and amino acid residues 15-42 of the beta chain.内皮细胞在纤维蛋白上的铺展需要纤维蛋白肽B的裂解以及β链的15-42位氨基酸残基。
J Clin Invest. 1992 Mar;89(3):842-50. doi: 10.1172/JCI115663.
8
The refined 1.9-A X-ray crystal structure of D-Phe-Pro-Arg chloromethylketone-inhibited human alpha-thrombin: structure analysis, overall structure, electrostatic properties, detailed active-site geometry, and structure-function relationships.D-苯丙氨酸-脯氨酸-精氨酸氯甲基酮抑制的人α-凝血酶的精制1.9埃X射线晶体结构:结构分析、整体结构、静电性质、详细的活性位点几何结构及结构-功能关系
Protein Sci. 1992 Apr;1(4):426-71. doi: 10.1002/pro.5560010402.

本文引用的文献

1
Selective immobilization of alpha-thrombin by surface-bound fibrin.表面结合的纤维蛋白对α-凝血酶的选择性固定
J Lab Clin Med. 1981 Mar;97(3):403-11.
2
Mechanism of action of thrombin on fibrinogen. Direct evidence for the involvement of phenylalanine at position P9.凝血酶对纤维蛋白原的作用机制。P9位苯丙氨酸参与作用的直接证据。
Biochemistry. 1982 Nov 23;21(24):6167-71. doi: 10.1021/bi00267a022.
3
Immunochemical determination of conformational equilibria for fragments of the A alpha chain of fibrinogen.纤维蛋白原Aα链片段构象平衡的免疫化学测定
Biochemistry. 1982 Apr 13;21(8):1794-806. doi: 10.1021/bi00537a015.
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Studies on the mechanism of thrombin. Interaction with fibrin.凝血酶作用机制的研究。与纤维蛋白的相互作用。
J Biol Chem. 1983 Sep 10;258(17):10530-5.
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Human alpha-thrombin binding to nonpolymerized fibrin-Sepharose: evidence for an anionic binding region.人α-凝血酶与非聚合纤维蛋白-琼脂糖的结合:阴离子结合区域的证据。
Biochemistry. 1985 Nov 19;24(24):7005-9. doi: 10.1021/bi00345a038.
6
Gold labeling of thrombin and ultrastructural studies of thrombin-gold conjugate binding by fibrin.凝血酶的金标记及纤维蛋白对凝血酶-金结合物结合的超微结构研究
Anal Biochem. 1985 May 15;147(1):49-56. doi: 10.1016/0003-2697(85)90007-7.
7
A two-step fibrinogen--fibrin transition in blood coagulation.血液凝固过程中纤维蛋白原向纤维蛋白的两步转变。
Nature. 1978 Oct 12;275(5680):501-5. doi: 10.1038/275501a0.
8
The binding of thrombin by fibrin.凝血酶与纤维蛋白的结合。
J Biol Chem. 1979 Oct 25;254(20):10421-5.
9
D-Phe-Pro-ArgCH2C1-A selective affinity label for thrombin.D-苯丙氨酸-脯氨酸-精氨酸CH2C1——一种凝血酶的选择性亲和标记物。
Thromb Res. 1979;14(6):969-73. doi: 10.1016/0049-3848(79)90014-8.
10
Photoaffinity labeling of a single receptor for alpha-thrombin on mouse embryo cells.小鼠胚胎细胞上α-凝血酶单一受体的光亲和标记
J Biol Chem. 1979 Jul 25;254(14):6244-7.

凝血酶抑制物。与纤维蛋白原和纤维蛋白的相互作用。

Inhibited thrombins. Interactions with fibrinogen and fibrin.

作者信息

Kaminski M, McDonagh J

出版信息

Biochem J. 1987 Mar 15;242(3):881-7. doi: 10.1042/bj2420881.

DOI:10.1042/bj2420881
PMID:3593282
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1147791/
Abstract

Fibrin-monomer-Sepharose was used to study thrombin binding to fibrin and the role of the enzyme active centre in this interaction. Binding properties of preformed enzyme-inhibitor complexes, as well as inhibition of thrombin already adsorbed to fibrin monomer, were investigated. No apparent difference was found in binding properties of phenylmethanesulphonyl fluoride-, D-Phe-Pro-Arg-CH2Cl- and dansylarginine NN-(3-ethylpentane-1,5-diyl)amide-inhibited thrombins. Also, the elution profile of phenylmethane-sulphonyl fluoride-inhibited thrombin from fibrinogen-Sepharose was identical with that of active thrombin from fibrin-monomer-Sepharose. Thus far the only low-Mr inhibitor that prevents thrombin from binding to fibrin monomer is pyridoxal 5'-phosphate. Preformed hirudin-thrombin complexes do not interact with fibrin. The extent to which the active centre of thrombin associated with fibrin is still accessible to substrates and inhibitors was also studied. Thrombin bound to fibrin hydrolyses a synthetic substrate at the same rate as the free enzyme. Water-soluble low-Mr inhibitors such as D-Phe-Pro-Arg-CH2Cl and dansylarginine NN-(3-ethylpentane-1,5-diyl)amide can readily modify the active centre of the fibrin-associated enzyme, and the active centre is exposed to the degree that displacement of dansylarginine NN-(3-ethylpentane-1,5-diyl)amide by D-Phe-Pro-Arg-CH2Cl is possible without disturbing the binding. Hirudin disrupts the affinity between thrombin and fibrin. These data indicate that the active centre of thrombin associated with fibrin through extended binding is fully exposed and freely accessible. It is possible that extended binding may play a regulatory role in the activation of Factor XIII by thrombin, as well as inactivation of this enzyme by antithrombin III.

摘要

纤维蛋白单体-琼脂糖用于研究凝血酶与纤维蛋白的结合以及酶活性中心在这种相互作用中的作用。研究了预先形成的酶-抑制剂复合物的结合特性,以及对已吸附到纤维蛋白单体上的凝血酶的抑制作用。未发现苯甲磺酰氟、D-苯丙氨酰-脯氨酰-精氨酰-氯甲基酮和丹磺酰精氨酸NN-(3-乙基戊烷-1,5-二基)酰胺抑制的凝血酶在结合特性上有明显差异。此外,苯甲磺酰氟抑制的凝血酶从纤维蛋白原-琼脂糖上的洗脱图谱与活性凝血酶从纤维蛋白单体-琼脂糖上的洗脱图谱相同。到目前为止,唯一能阻止凝血酶与纤维蛋白单体结合的低分子量抑制剂是磷酸吡哆醛。预先形成的水蛭素-凝血酶复合物不与纤维蛋白相互作用。还研究了与纤维蛋白结合的凝血酶活性中心对底物和抑制剂仍可及的程度。与纤维蛋白结合的凝血酶水解合成底物的速度与游离酶相同。水溶性低分子量抑制剂如D-苯丙氨酰-脯氨酰-精氨酰-氯甲基酮和丹磺酰精氨酸NN-(3-乙基戊烷-1,5-二基)酰胺可以很容易地修饰与纤维蛋白结合的酶的活性中心,并且活性中心暴露的程度使得D-苯丙氨酰-脯氨酰-精氨酰-氯甲基酮能够取代丹磺酰精氨酸NN-(3-乙基戊烷-1,5-二基)酰胺而不干扰结合。水蛭素破坏凝血酶与纤维蛋白之间的亲和力。这些数据表明,通过延伸结合与纤维蛋白结合的凝血酶活性中心完全暴露且可自由接近。延伸结合可能在凝血酶激活因子XIII以及抗凝血酶III使该酶失活中起调节作用。