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辅助因子残基赖氨酸165和166对于组织因子-因子VIIa蛋白酶复合物识别蛋白质底物至关重要。

Cofactor residues lysine 165 and 166 are critical for protein substrate recognition by the tissue factor-factor VIIa protease complex.

作者信息

Ruf W, Miles D J, Rehemtulla A, Edgington T S

机构信息

Department of Immunology, Scripps Research Institute, La Jolla, California 92037.

出版信息

J Biol Chem. 1992 Mar 25;267(9):6375-81.

PMID:1372908
Abstract

High affinity binding of factor VIIa (VIIa) to its cellular receptor tissue factor (TF), as well as association of factor X with phospholipid are required for optimal assembly of the extrinsic activation complex. In addition to the interactions of substrate with phospholipid and enzyme, we here provide evidence that cofactor residues Lys-165 and Lys-166 specifically contribute to the recognition of macromolecular substrate. Ala for Lys replacement in TFA165A166 was compatible with high affinity binding of VIIa when analyzed on cell surfaces as well as in the absence of phospholipid. Dissociation of TFA165A166.VIIa did not occur with a faster rate compared to TF.VIIa, further supporting unaltered VIIa binding function of TFA165A166. Cleavage of chromogenic peptidyl substrate by TFA165A166.VIIa complexes was not diminished, demonstrating that TFA165A166 supported enhancement of catalytic function of the VIIa protease domain. In contrast, factor X activation was reduced in the presence and absence of phospholipid. Further, TFA165A166 effectively competed with wild-type TF in the cleavage of factor X at limited VIIa concentrations. Selective reduction in macromolecular substrate hydrolysis combined with normal VIIa binding by TFA165A166 indicates that the cofactor TF does contribute, either directly or indirectly via specific interactions with VIIa, to factor X recognition.

摘要

因子 VIIa(VIIa)与细胞受体组织因子(TF)的高亲和力结合以及因子 X 与磷脂的结合,是外源性激活复合物最佳组装所必需的。除了底物与磷脂和酶的相互作用外,我们在此提供证据表明,辅因子中 Lys-165 和 Lys-166 残基对大分子底物的识别有特异性贡献。在细胞表面以及无磷脂条件下分析时,将 TFA165A166 中的 Lys 替换为 Ala 与 VIIa 的高亲和力结合是相容的。与 TF.VIIa 相比,TFA165A166.VIIa 的解离速率并未加快,这进一步支持了 TFA165A 的 VIIa 结合功能未改变。TFA165A166.VIIa 复合物对生色肽基底物的切割并未减弱,表明 TFA165A166 支持 VIIa 蛋白酶结构域催化功能的增强。相比之下,在有磷脂和无磷脂的情况下,因子 X 的激活均降低。此外,在有限的 VIIa 浓度下,TFA165A166 在因子 X 的切割中能有效与野生型 TF 竞争。TFA165A166 对大分子底物水解的选择性降低以及对 VIIa 的正常结合表明,辅因子 TF 确实通过与 VIIa 的特异性相互作用直接或间接对因子 X 的识别有贡献。

相似文献

1
Cofactor residues lysine 165 and 166 are critical for protein substrate recognition by the tissue factor-factor VIIa protease complex.辅助因子残基赖氨酸165和166对于组织因子-因子VIIa蛋白酶复合物识别蛋白质底物至关重要。
J Biol Chem. 1992 Mar 25;267(9):6375-81.
2
Phospholipid-independent and -dependent interactions required for tissue factor receptor and cofactor function.组织因子受体和辅因子功能所需的磷脂非依赖性和依赖性相互作用。
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Substrate recognition by tissue factor-factor VIIa. Evidence for interaction of residues Lys165 and Lys166 of tissue factor with the 4-carboxyglutamate-rich domain of factor X.组织因子-因子VIIa对底物的识别。组织因子的赖氨酸165和赖氨酸166残基与因子X富含γ-羧基谷氨酸结构域相互作用的证据。
J Biol Chem. 1996 Sep 6;271(36):21752-7. doi: 10.1074/jbc.271.36.21752.
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Characterization of factor VII association with tissue factor in solution. High and low affinity calcium binding sites in factor VII contribute to functionally distinct interactions.
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Influence of mutations in tissue factor on the fine specificity of macromolecular substrate activation.组织因子突变对大分子底物激活精细特异性的影响。
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Tissue factor residues Lys165 and Lys166 are essential for rapid formation of the quaternary complex of tissue factor.VIIa with Xa.tissue factor pathway inhibitor.组织因子残基赖氨酸165和赖氨酸166对于组织因子-VIIa与Xa、组织因子途径抑制物的四元复合物的快速形成至关重要。
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Macromolecular substrate affinity for the tissue factor-factor VIIa complex is independent of scissile bond docking.组织因子 - 因子VIIa复合物对大分子底物的亲和力与可裂解键对接无关。
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The biochemical basis for the apparent defect of soluble mutant tissue factor in enhancing the proteolytic activities of factor VIIa.可溶性突变组织因子在增强因子VIIa蛋白水解活性方面明显缺陷的生化基础。
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The interaction of human factor VIIa with tissue factor.人凝血因子VIIa与组织因子的相互作用。
J Biol Chem. 1992 Nov 25;267(33):23696-706.

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