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从蝰蛇毒液中纯化的elegantin和albolabrin肽:与纤维蛋白原和血管性血友病因子的RGDS结构域的同源性。

Elegantin and albolabrin purified peptides from viper venoms: homologies with the RGDS domain of fibrinogen and von Willebrand factor.

作者信息

Williams J, Rucinski B, Holt J, Niewiarowski S

机构信息

Department of Physiology, Temple University Medical School, Philadelphia, PA.

出版信息

Biochim Biophys Acta. 1990 May 31;1039(1):81-9. doi: 10.1016/0167-4838(90)90229-9.

Abstract

The RGD-containing peptides isolated from the venoms of the Viperidae constitute a new class of small cysteine-rich peptides of variable amino acid composition and biological activity (Huang, T.-F., et al. (1987) J. Biol. Chem. 262, 16157-16163; Gan, Z.R., et al. (1988) J. Biol. Chem 263, 19827-19832; Huang, T.-F., et al. (1989) Biochemistry 28, 661-668), which it is proposed by Gould et al. (unpublished data) that we call 'disintegrins'. These peptides bind to the glycoprotein IIb-IIIa receptor on the platelet surface and inhibit aggregation induced by ADP, thrombin, platelet-activating factor and collagen. These peptides are also potent inhibitors of cell adhesion to fibrinogen (Knudsen, K.M., et al. (1988) Exp. Cell Res. 179, 42-49). We report the isolation of two further RGD-peptides from the venoms of Trimeserusus elegans and Trimeserusus albolabris, purified to homogeneity with high yield by a novel, rapid reverse-phase HPLC method. The primary structures of these two peptides were determined to be single polypeptide chains of 73 amino acids. Albolabrin differed from trigramin by eight residues whilst elegantin differed by 22 residues. The molecular mass of albolabrin calculated on the basis of amino acid sequence was 7574 Da and the pI similarly calculated was 4.27. The molecular mass of elegantin was calculated to be 7806 Da and the theoretical pI to be 4.69. RGD is maintained in the same position (51-53 AA) and all 12 cysteines are identical. Our data suggest that the presence of RGD, the conserved secondary and tertiary structure, are essential for the expression of biological activity by these peptides. Both peptides inhibited ADP-induced platelet aggregation. Extended homologies around the RGDS sequences in human von Willebrand Factor and bovine fibrinogen were found with both peptides.

摘要

从蝰蛇科蛇毒中分离出的含RGD的肽构成了一类新的富含半胱氨酸的小肽,其氨基酸组成和生物活性各异(黄,T.-F.等人(1987年)《生物化学杂志》262卷,16157 - 16163页;甘,Z.R.等人(1988年)《生物化学杂志》263卷,19827 - 19832页;黄,T.-F.等人(1989年)《生物化学》28卷,661 - 668页),古尔德等人(未发表数据)提议将其称为“去整合素”。这些肽与血小板表面的糖蛋白IIb - IIIa受体结合,并抑制由ADP、凝血酶、血小板活化因子和胶原诱导的聚集。这些肽也是细胞黏附于纤维蛋白原的有效抑制剂(克努森,K.M.等人(1988年)《细胞实验研究》179卷,42 - 49页)。我们报告了从秀丽竹叶青和白唇竹叶青蛇毒中进一步分离出两种RGD肽,通过一种新颖、快速的反相高效液相色谱法以高产率纯化至同质。这两种肽的一级结构被确定为73个氨基酸的单条多肽链。白唇竹叶青毒素与竹叶青毒素相差8个残基,而秀丽竹叶青毒素相差22个残基。根据氨基酸序列计算,白唇竹叶青毒素的分子量为7574道尔顿,类似计算得出的pI为4.27。秀丽竹叶青毒素的分子量计算为7806道尔顿,理论pI为4.69。RGD保持在相同位置(第51 - 53位氨基酸),所有12个半胱氨酸都相同。我们的数据表明,RGD的存在、保守的二级和三级结构对于这些肽表达生物活性至关重要。两种肽都抑制ADP诱导的血小板聚集。在人血管性血友病因子和牛纤维蛋白原的RGDS序列周围发现了与这两种肽的广泛同源性。

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