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1
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C1 inhibitor-C1s complexes are internalized and degraded by the low density lipoprotein receptor-related protein.C1抑制剂-C1s复合物通过低密度脂蛋白受体相关蛋白内化并降解。
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5
The structural basis for neutrophil inactivation of C1 inhibitor.中性粒细胞使C1抑制剂失活的结构基础。
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J Clin Invest. 1993 Mar;91(3):1035-43. doi: 10.1172/JCI116260.

本文引用的文献

1
Partial purification of a serum inhibitor of C'1-esterase.C'1酯酶血清抑制剂的部分纯化
J Biol Chem. 1961 Jun;236:1674-9.
2
The role of sialic acid in the functional activity and the hepatic clearance of C1-INH.唾液酸在C1抑制物的功能活性及肝脏清除中的作用。
J Immunol. 1981 Jan;126(1):245-9.
3
Effects of human complement component 1 inactivator on neutrophil chemotaxis and chemotactic deactivation.人补体成分1灭活剂对中性粒细胞趋化性及趋化失活的影响
Infect Immun. 1980 Jun;28(3):700-7. doi: 10.1128/iai.28.3.700-707.1980.
4
A postulated mechanism for heparin's potentiation of C1 inhibitor function.一种关于肝素增强C1抑制剂功能的假定机制。
Mol Immunol. 1982 Feb;19(2):287-95. doi: 10.1016/0161-5890(82)90342-x.
5
Effect of elevated C1-esterase inhibitor concentrations on white blood cell-endothelium interactions: a potential mechanism for steroid protection in contrast material reactions.C1酯酶抑制剂浓度升高对白细胞与内皮细胞相互作用的影响:造影剂反应中类固醇保护作用的潜在机制。
Invest Radiol. 1982 Mar-Apr;17(2):189-92. doi: 10.1097/00004424-198203000-00016.
6
Simultaneous analysis of cell surface antigens and cell morphology using monoclonal antibodies conjugated to fluorescent microspheres.使用与荧光微球偶联的单克隆抗体同时分析细胞表面抗原和细胞形态。
J Immunol Methods. 1981;47(1):39-48. doi: 10.1016/0022-1759(81)90255-6.
7
Activation and regulation of the first complement component.补体第一成分的激活与调节
Fed Proc. 1983 Jan;42(1):134-8.
8
Evaluation of the degree of desialylation of serum C1-inactivator and haemopexin.
Clin Chim Acta. 1984 Nov 30;143(3):235-41. doi: 10.1016/0009-8981(84)90073-1.
9
Human C1 inhibitor: improved isolation and preliminary structural characterization.人C1抑制剂:改进的分离方法及初步结构表征
Biochemistry. 1983 Oct 11;22(21):5001-7. doi: 10.1021/bi00290a019.
10
Ganglioside receptor of rat macrophages. Modulation by enzyme treatment and evidence for its protein nature.大鼠巨噬细胞的神经节苷脂受体。酶处理的调节作用及其蛋白质性质的证据。
Immunology. 1984 Jan;51(1):177-84.

C1 抑制剂与中性粒细胞结合的特性研究

Characterization of C1 inhibitor binding to neutrophils.

作者信息

Chang N S, Boackle R J, Leu R W

机构信息

University of Massachusetts Medical Center, Department of Biochemistry, Worcester.

出版信息

Immunology. 1991 May;73(1):95-101.

PMID:2045131
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1384524/
Abstract

In a previous study we have isolated neutrophil membrane proteins that non-covalently bind to native C1-INH (105,000 MW) and a non-functional, degraded C1-INH (88,000 MW; C1-INH-88). To further characterize the binding nature, we have designed a novel kinetic C1 titration assay which enables not only a quantification of the removal of fluid-phase C1-INH by neutrophils, but also a concomitant measure of residual C1-INH function. Native C1-INH, when adsorbed to EDTA-pretreated neutrophils, lost its function in the inhibition of fluid-phase C1. The non-functional C1-INH-88, which is probably devoid of a reactive centre, was found to block the binding of native C1-INH to neutrophils. Pretreatment of neutrophils with serine esterase inhibitors did not abrogate binding capacity of the cells for C1-INH, whereas the binding affinity for C1-INH was lost when the cells were pretreated with trypsin. An array of human peripheral blood leucocytes and several lymphoid cell lines has surface binding sites for C1-INH, but not on human erythrocytes and U937 cells. Binding was further confirmed using (i) C1-INH-microsphere beads to neutrophils, in which the binding was blocked when pretreating neutrophils with excess C1-INH or with trypsin, and (ii) radiolabelled C1-INH to neutrophils, which was competitively blocked by unlabelled non-functional C1-INH-88. Desialylation of C1-INH significantly reduced its binding affinity for neutrophils, indicating that the membrane receptor sites on neutrophils could be specific for the binding of sialic acid residues on C1-INH. Overall, our studies indicate that neutrophils or other leucocytes possess specific surface binding sites for the sialic acid-containing portion of C1-INH.

摘要

在之前的一项研究中,我们分离出了与天然C1-INH(分子量105,000)和一种无功能的降解型C1-INH(分子量88,000;C1-INH-88)非共价结合的中性粒细胞膜蛋白。为了进一步表征这种结合性质,我们设计了一种新颖的动力学C1滴定测定法,该方法不仅能够定量中性粒细胞对液相C1-INH的清除,还能同时测量残余C1-INH的功能。天然C1-INH吸附到经EDTA预处理的中性粒细胞上时,失去了抑制液相C1的功能。发现可能缺乏反应中心的无功能C1-INH-88能够阻断天然C1-INH与中性粒细胞的结合。用丝氨酸酯酶抑制剂预处理中性粒细胞并没有消除细胞对C1-INH的结合能力,而当细胞用胰蛋白酶预处理时,对C1-INH的结合亲和力丧失。一系列人类外周血白细胞和几种淋巴细胞系具有C1-INH的表面结合位点,但人类红细胞和U937细胞上没有。使用(i)C1-INH微球珠与中性粒细胞结合进一步证实了这种结合,在用过量C1-INH或胰蛋白酶预处理中性粒细胞时,这种结合被阻断,以及(ii)用放射性标记的C1-INH与中性粒细胞结合,未标记的无功能C1-INH-88可竞争性阻断这种结合。C1-INH的去唾液酸化显著降低了其对中性粒细胞的结合亲和力,表明中性粒细胞上的膜受体位点可能对C1-INH上的唾液酸残基结合具有特异性。总体而言,我们的研究表明中性粒细胞或其他白细胞对含唾液酸部分的C1-INH具有特异性表面结合位点。