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PSGL-1的N端肽可在体内通过P-选择素介导与创伤激活的内皮细胞的黏附。

The N-terminal peptide of PSGL-1 can mediate adhesion to trauma-activated endothelium via P-selectin in vivo.

作者信息

Burch Erin E, Shinde Patil Vivek R, Camphausen Raymond T, Kiani Mohammad F, Goetz Douglas J

机构信息

Department of Chemical Engineering, Ohio University, Athens, OH 45701, USA.

出版信息

Blood. 2002 Jul 15;100(2):531-8. doi: 10.1182/blood.v100.2.531.

Abstract

P-selectin glycoprotein ligand-1 (PSGL-1) is present on leukocytes and is the major ligand for endothelial expressed P-selectin. A variety of studies strongly suggests that the N-terminal region of PSGL-1 contains the binding site for P-selectin. We hypothesized that this relatively small N-terminal peptide of PSGL-1 is sufficient to support adhesion to P-selectin in vivo. To test this hypothesis, we coated 2 microm-diameter microspheres with a recombinant PSGL-1 construct, termed 19.ek.Fc. The 19.ek.Fc construct consists of the first 19 N-terminal amino acids of mature PSGL-1 linked to an enterokinase cleavage site that, in turn, is linked to human immunoglobulin G Fc. The 19.ek.Fc-coated microspheres were injected into the jugular vein of mice. Intravital microscopy of postcapillary venules within the cremaster muscle of mice revealed that a significantly greater number of 19.ek.Fc microspheres rolled compared with control microspheres. The number of rolling 19.ek.Fc microspheres was significantly diminished by pretreatment of the mice with a monoclonal antibody to P-selectin or by pretreatment of the 19.ek.Fc microspheres with a monoclonal antibody to PSGL-1. Combined, the results indicate that the N-terminal peptide of PSGL-1 can mediate adhesion to trauma-activated microvascular endothelium via P-selectin in vivo.

摘要

P-选择素糖蛋白配体-1(PSGL-1)存在于白细胞上,是内皮细胞表达的P-选择素的主要配体。大量研究强烈表明,PSGL-1的N端区域包含P-选择素的结合位点。我们推测,PSGL-1这种相对较小的N端肽足以在体内支持与P-选择素的黏附。为了验证这一假设,我们用一种称为19.ek.Fc的重组PSGL-1构建体包被2微米直径的微球。19.ek.Fc构建体由成熟PSGL-1的前19个N端氨基酸组成,与一个肠激酶切割位点相连,该切割位点又与人免疫球蛋白G Fc相连。将包被有19.ek.Fc的微球注入小鼠颈静脉。对小鼠提睾肌内毛细血管后微静脉进行活体显微镜观察发现,与对照微球相比,滚动的19.ek.Fc微球数量明显更多。用抗P-选择素单克隆抗体预处理小鼠或用抗PSGL-1单克隆抗体预处理19.ek.Fc微球后,滚动的19.ek.Fc微球数量显著减少。综合来看,结果表明PSGL-1的N端肽可在体内通过P-选择素介导与创伤激活的微血管内皮细胞的黏附。

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