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Gc球蛋白(维生素D结合蛋白)对C5a的协同趋化作用。被中性粒细胞短暂转化为活性协同趋化因子。

Co-chemotactic effect of Gc-globulin (vitamin D binding protein) for C5a. Transient conversion into an active co-chemotaxin by neutrophils.

作者信息

Kew R R, Fisher J A, Webster R O

机构信息

Department of Pathology, State University of New York at Stony Brook 11794, USA.

出版信息

J Immunol. 1995 Dec 1;155(11):5369-74.

PMID:7594552
Abstract

Gc-globulin (vitamin D binding protein) has been shown to augment significantly the leukocyte chemotactic activity of the activated C peptides C5a and C5adesArg (i.e., the co-chemotactic effect). However, the mechanism of chemotaxis enhancement is not known. To investigate the role that the neutrophil plays in this process, cells were co-incubated with Gc-globulin for up to 45 min and washed, and their subsequent chemotactic response to a suboptimal concentration of C5a alone was measured during a 30-min assay. The generation of co-chemotactic activity during the preincubation period was time dependent, showed minimal activity for the first 10 min and a steep rise from 10 to 20 min, and was maximal and stable at 30 min. The binding of radiolabeled Gc-globulin by neutrophils at 37 degrees C mirrored this time-dependent generation of C5a co-chemotactic activity, with stable cellular levels achieved between 30 and 45 min at 36 +/- 4 fmol (2 +/- 0.1 ng)/10(6) cells. The binding of radiolabeled Gc-globulin and the generation of co-chemotactic activity were dependent upon physiologic temperatures (37 degrees C) and levels of Ca2+ (1.3 mM) and Mg2+ (0.8 mM), and were inhibited by an Ab to Gc-globulin. Finally, the C5a co-chemotactic activity of Gc-globulin would decay rapidly if neutrophils were washed and then incubated a second time at 37 degrees C before chemotaxis to C5a. These results demonstrate that neutrophils bind exogenous Gc-globulin and generate C5a co-chemotactic activity in a time-, temperature-, and divalent cation-dependent manner. Moreover, this activity is transient if neutrophils lack a continuous supply of Gc-globulin.

摘要

Gc球蛋白(维生素D结合蛋白)已被证明能显著增强活化的补体肽C5a和C5adesArg的白细胞趋化活性(即共趋化效应)。然而,趋化增强的机制尚不清楚。为了研究中性粒细胞在此过程中所起的作用,将细胞与Gc球蛋白共孵育长达45分钟,然后洗涤,在30分钟的测定过程中测量它们随后对单独的次优浓度C5a的趋化反应。预孵育期间共趋化活性的产生是时间依赖性的,在最初10分钟内活性最小,从10到20分钟急剧上升,在30分钟时达到最大且稳定。中性粒细胞在37℃对放射性标记的Gc球蛋白的结合反映了这种C5a共趋化活性的时间依赖性产生,在30至45分钟时细胞水平稳定在36±4 fmol(2±0.1 ng)/10⁶个细胞。放射性标记的Gc球蛋白的结合和共趋化活性的产生取决于生理温度(37℃)以及Ca²⁺(1.3 mM)和Mg²⁺(0.8 mM)的水平,并被抗Gc球蛋白的抗体所抑制。最后,如果在对C5a进行趋化之前将中性粒细胞洗涤,然后在37℃再次孵育,Gc球蛋白的C5a共趋化活性将迅速衰减。这些结果表明,中性粒细胞以时间、温度和二价阳离子依赖性方式结合外源性Gc球蛋白并产生C5a共趋化活性。此外,如果中性粒细胞缺乏Gc球蛋白的持续供应,这种活性是短暂的。

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