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组织因子中关键的配体界面残基对因子VIIa的结合有独立贡献。

Key ligand interface residues in tissue factor contribute independently to factor VIIa binding.

作者信息

Schullek J R, Ruf W, Edgington T S

机构信息

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

出版信息

J Biol Chem. 1994 Jul 29;269(30):19399-403.

PMID:8034706
Abstract

Scanning alanine mutagenesis of the cell surface protease receptor tissue factor suggested importance of residues Lys20, Ile22, Asp58, Arg135, and Phe140 for binding of ligand, the serine protease coagulation factor VIIa. Ligand binding by single alanine replacement mutants was characterized by functional assays which concordantly demonstrated a calculated 1-2.5 kcal/mol reduction in free energy of binding as a result of each of the mutations. Catalytic and proteolytic function appeared to be not impaired by the residue replacements, indicating that these residues are not specifically required for the catalytic enhancement of VIIa produced by the assembly with tissue factor. Multiple mutations were further combined in one mutant protein to assess whether these residues provide independent contacts with the ligand VIIa. The Lys20/Asp58 and the Arg135/Phe140 residue pairs did not independently contribute to the binding of ligand. In contrast, the combination with Ile22 consistently produced a further decrease in affinity for VIIa, demonstrating that this residue acts as an independent contact site for the ligand VIIa. The total contribution of the five residues to the free energy of binding of VIIa at 37 degrees C was calculated to be 5.4 kcal/mol representing approximately one-third of the total binding energy.

摘要

对细胞表面蛋白酶受体组织因子进行扫描丙氨酸诱变,结果表明赖氨酸20、异亮氨酸22、天冬氨酸58、精氨酸135和苯丙氨酸140这些残基对于配体丝氨酸蛋白酶凝血因子VIIa的结合具有重要性。通过功能测定对单丙氨酸替代突变体的配体结合进行了表征,这些测定一致表明,由于每个突变,结合自由能计算得出降低了1 - 2.5千卡/摩尔。残基替代似乎并未损害催化和蛋白水解功能,这表明这些残基并非组织因子与VIIa组装产生的VIIa催化增强所特别必需的。在一个突变蛋白中进一步组合多个突变,以评估这些残基是否与配体VIIa提供独立的接触。赖氨酸20/天冬氨酸58和精氨酸135/苯丙氨酸140残基对并未独立地对配体结合做出贡献。相反,与异亮氨酸22的组合始终导致对VIIa的亲和力进一步降低,这表明该残基作为配体VIIa的一个独立接触位点。计算得出这五个残基在摄氏37度时对VIIa结合自由能的总贡献为5.4千卡/摩尔,约占总结合能的三分之一。

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