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中性粒细胞表达一种与CR1、CR2和CR3不同的iC3b、C3dg和C3d受体。

Neutrophils express a receptor for iC3b, C3dg, and C3d that is distinct from CR1, CR2, and CR3.

作者信息

Vik D P, Fearon D T

出版信息

J Immunol. 1985 Apr;134(4):2571-9.

PMID:3156185
Abstract

In the present study we examined human neutrophils for the expression of a receptor capable of binding C3dg and defined the relationship of this receptor to those that have been previously described, namely CR1, CR2, and CR3. C3dg was isolated from serum depleted of plasminogen, supplemented with 20 mM Mg++, and incubated at 37 degrees C for 6 to 8 days. The purified protein was homogeneous when analyzed by polyacrylamide gel electrophoresis and exhibited an apparent m.w. of 41,000. C3dg was polymerized by treatment with dimethyl suberimidate, and the dimer was isolated by gel filtration. Binding of both monomeric and dimeric 125I-labeled C3dg to neutrophils was saturable, and the latter ligand bound to an average of 12,400 sites/cell among nine normal individuals. At 4 degrees C, bound monomeric C3dg dissociated from neutrophils with an average t1/2 of 30 min, whereas dimeric C3dg dissociated with a t1/2 in excess of 120 min. Specific binding of multimeric C3dg was cation independent and was competitively inhibited by molar concentrations of iC3b and C3d that were equivalent to the inhibitory concentrations of unlabeled C3dg; C3b was less able to compete with C3dg for binding to these sites. The capacity of this neutrophil receptor to bind iC3b, C3dg, and C3d suggested its possible identity as CR2 or CR3. However, no specific binding to neutrophils of 125I-labeled HB-5 monoclonal anti-CR2 was detected. Furthermore, uptake of 125I-labeled C3dg was not inhibited by saturating concentrations of rabbit anti-CR1, anti-Mac-1, or OKM10. Thus, a receptor resides on neutrophils that binds the C3d region of iC3b and C3dg and is distinct from CR1, CR2, and CR3.

摘要

在本研究中,我们检测了人类中性粒细胞上能够结合C3dg的受体的表达情况,并确定了该受体与先前描述的受体(即CR1、CR2和CR3)之间的关系。C3dg是从不含纤溶酶原的血清中分离出来的,添加20 mM Mg++,并在37℃下孵育6至8天。通过聚丙烯酰胺凝胶电泳分析时,纯化的蛋白质是均一的,表观分子量为41,000。用亚胺二甲酯处理使C3dg聚合,通过凝胶过滤分离出二聚体。单体和二聚体125I标记的C3dg与中性粒细胞的结合是可饱和的,在9名正常个体中,后一种配体平均每个细胞结合12,400个位点。在4℃时,结合的单体C3dg从中性粒细胞上解离,平均半衰期为30分钟,而二聚体C3dg解离的半衰期超过120分钟。多聚体C3dg的特异性结合不依赖阳离子,并且被摩尔浓度的iC3b和C3d竞争性抑制,其抑制浓度与未标记的C3dg的抑制浓度相当;C3b与C3dg竞争结合这些位点的能力较弱。这种中性粒细胞受体结合iC3b、C3dg和C3d的能力表明它可能与CR2或CR3相同。然而,未检测到125I标记的HB-5单克隆抗CR2与中性粒细胞的特异性结合。此外,饱和浓度的兔抗CR1、抗Mac-1或OKM10不能抑制125I标记的C3dg的摄取。因此,中性粒细胞上存在一种受体,它结合iC3b和C3dg的C3d区域,并且与CR1、CR2和CR3不同。

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