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血链球菌血小板聚集相关蛋白。最小血小板相互作用结构域的鉴定与表征。

The Streptococcus sanguis platelet aggregation-associated protein. Identification and characterization of the minimal platelet-interactive domain.

作者信息

Erickson P R, Herzberg M C

机构信息

Department of Preventive Sciences, School of Dentistry, University of Minnesota, Minneapolis 55455.

出版信息

J Biol Chem. 1993 Jan 25;268(3):1646-9.

PMID:8420939
Abstract

Streptococcus sanguis expresses a cell wall-bound protein that induces the activation and aggregation of platelets. This platelet aggregation-associated protein (PAAP) contains a collagen-like, platelet-interactive domain within a 23-kDa protein fragment. To isolate the minimal platelet-interactive domain, p23 PAAP was digested with collagenase, and the digest chromatographed to isolate fractions with activity inhibitory to S. sanguis-induced platelet aggregation. The active fraction was then digested with cyanogen bromide, the product chromatographed, and a smaller inhibitory peptide isolated. Finally, this fraction was digested with endoproteinase Lys-C, and the digest fractionated. After each step, inhibitory activity resolved into single chromatographic peaks of 13 kDa (p13 PAAP), 2.7 kDa (p2.7 PAAP), and a minimal 7-mer peptide, respectively. These PAAP fragments showed similar ID50 (19-28 nM), suggesting that each contained a single copy of the platelet-interactive domain. The minimal 7-mer peptide was purified by immunoaffinity chromatography and reverse phase high pressure liquid chromatography. The primary structure was determined to be Pro-Gly-Glu-Gln-Gly-Pro-Lys. This sequence conforms to the predicted structural motif of the platelet-interactive domains of types I and III collagen. This 7-mer peptide is therefore the platelet-interactive domain of the PAAP from S. sanguis. Its structure explains the molecular basis for immunological cross-reactivity and functional similarity to the platelet-interactive domains of collagens.

摘要

血链球菌表达一种与细胞壁结合的蛋白质,可诱导血小板活化和聚集。这种血小板聚集相关蛋白(PAAP)在一个23 kDa的蛋白质片段中包含一个类似胶原蛋白的血小板相互作用结构域。为了分离出最小的血小板相互作用结构域,用胶原酶消化p23 PAAP,然后对消化产物进行色谱分离,以分离出对血链球菌诱导的血小板聚集具有抑制活性的组分。然后用溴化氰消化活性组分,对产物进行色谱分离,并分离出一个较小的抑制性肽段。最后,用内肽酶Lys-C消化该组分,并对消化产物进行分级分离。在每一步之后,抑制活性分别解析为13 kDa(p13 PAAP)、2.7 kDa(p2.7 PAAP)的单色谱峰和一个最小的7聚体肽段。这些PAAP片段显示出相似的半数抑制浓度(ID50)(19 - 28 nM),表明每个片段都包含一个单一拷贝的血小板相互作用结构域。通过免疫亲和色谱和反相高压液相色谱纯化了最小的7聚体肽段。确定其一级结构为Pro-Gly-Glu-Gln-Gly-Pro-Lys。该序列符合I型和III型胶原蛋白血小板相互作用结构域的预测结构基序。因此,这个7聚体肽段是血链球菌PAAP的血小板相互作用结构域。其结构解释了与胶原蛋白血小板相互作用结构域免疫交叉反应性和功能相似性的分子基础。

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