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表面活性蛋白A的碳水化合物识别结构域介导与卡氏肺孢子虫主要表面糖蛋白的结合。

The carbohydrate recognition domain of surfactant protein A mediates binding to the major surface glycoprotein of Pneumocystis carinii.

作者信息

McCormack F X, Festa A L, Andrews R P, Linke M, Walzer P D

机构信息

Department of Internal Medicine, University of Cincinnati College of Medicine, Cincinnati, Ohio 45267, USA.

出版信息

Biochemistry. 1997 Jul 1;36(26):8092-9. doi: 10.1021/bi970313f.

Abstract

Pneumocystis carinii is a common cause of life-threatening pneumonia in immunodeficient patients. Pulmonary surfactant protein A (SP-A), an alveolar glycoprotein containing collagen-like and carbohydrate recognition domains (CRD), binds P. carinii and enhances adherence to alveolar macrophages. In this study, we examined the structural basis of the interaction between SP-A and the major surface glycoprotein of P. carinii (MSG). Rat SP-A bound to purified rat P. carinii-derived MSG in a saturable and calcium-dependent manner, which was partially reversible by coincubation with excess monosaccharides, or pretreatment of MSG with N-glycanase. Mutant recombinant SP-As with neutral amino acid substitutions for the predicted calcium- and carbohydrate-coordinating residues of the CRD were synthesized in insect cells using baculovirus vectors and tested for binding to MSG. Substitutions of negatively charged (Glu195, Glu202, and Asp215) and polar residues (Asn214) of the CRD with alanine but not substitution of the Arg197 with glycine reduced the binding of SP-A to mannose-Sepharose beads and to MSG. Deletion of the N-linked oligosaccharides from SP-A by mutagenesis of the consensus sequences for glycosylation had no effect on binding. We conclude that the CRD mediates the binding of SP-A to oligosaccharides attached to MSG.

摘要

卡氏肺孢子菌是免疫缺陷患者危及生命的肺炎的常见病因。肺表面活性蛋白A(SP-A)是一种含有胶原样和碳水化合物识别结构域(CRD)的肺泡糖蛋白,它能结合卡氏肺孢子菌并增强其对肺泡巨噬细胞的黏附。在本研究中,我们检测了SP-A与卡氏肺孢子菌主要表面糖蛋白(MSG)相互作用的结构基础。大鼠SP-A以饱和且依赖钙的方式与纯化的源自大鼠卡氏肺孢子菌的MSG结合,与过量单糖共同孵育或用N-聚糖酶预处理MSG可使其部分逆转。使用杆状病毒载体在昆虫细胞中合成了对CRD中预测的钙和碳水化合物配位残基进行中性氨基酸取代的突变重组SP-A,并检测其与MSG的结合。用丙氨酸取代CRD中带负电荷的残基(Glu195、Glu202和Asp215)和极性残基(Asn214),但用甘氨酸取代Arg197则不会降低SP-A与甘露糖-琼脂糖珠及MSG的结合。通过对糖基化共有序列进行诱变从SP-A中缺失N-连接寡糖对结合没有影响。我们得出结论,CRD介导了SP-A与附着在MSG上的寡糖的结合。

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