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首页> 外文期刊>Molecular Immunology >Cofactor regulation of C5a chemotactic activity in physiological fluids. Requirement for the vitamin D binding protein, thrombospondin-1 and its receptors.
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Cofactor regulation of C5a chemotactic activity in physiological fluids. Requirement for the vitamin D binding protein, thrombospondin-1 and its receptors.

机译:生理液中C5a趋化活性的辅助因子调节。需要维生素D结合蛋白,血小板反应蛋白1及其受体。

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Factors in physiological fluids that regulate the chemotactic activity of complement activation peptides C5a and C5a des Arg are not well understood. The vitamin D binding protein (DBP) has been shown to significantly enhance chemotaxis to C5a/C5a des Arg. More recently, platelet-derived thrombospondin-1 (TSP-1) has been shown to facilitate the augmentation of C5a-induced chemotaxis by DBP. The objective of this study was to better characterize these chemotactic cofactors and investigate the role that cell surface TSP-1 receptors CD36 and CD47 may play in this process. The chemotactic activity in C-activated normal serum, citrated plasma, DBP-depleted serum or C5 depleted serum was determined for both normal human neutrophils and U937 cell line transfected with the C5a receptor (U937-C5aR). In addition, levels of C5a des Arg, DBP and TSP-1 in these fluids were measured by RIA or ELISA. Results show that there is a clear hierarchy with C5a being the essential primary signal (DBP or TSP-1 will not function in the absence of C5a), DBP the necessary cofactor and TSP-1 a dependent tertiary factor, since it cannot function to enhance chemotaxis to C5a without DBP. Measurement of the C5a-induced intracellular calcium flux confirmed the same hierarchy observed with chemotaxis. Moreover, analysis of bronchoalveolar lavage fluid (BALF) from patients with the adult respiratory distress syndrome (ARDS) demonstrated that C5a-dependent chemotactic activity is significantly decreased after anti-DBP treatment. Finally, results show that TSP-1 utilizes cell surface receptors CD36 and CD47 to augment chemotaxis, but DBP does not bind to TSP-1, CD36 or CD47. The results clearly demonstrate that C5a/C5a des Arg needs both DBP and TSP-1 for maximal chemotactic activity and suggest that the regulation of C5a chemotactic activity in physiological fluids is more complex than previously thought.
机译:调节补体激活肽C5a和C5a des Arg的趋化活性的生理液中的因素尚不完全清楚。维生素D结合蛋白(DBP)已显示可显着增强对C5a / C5a des Arg的趋化性。最近,已显示血小板衍生的血小板反应蛋白-1(TSP-1)可以促进DBP增强C5a诱导的趋化性。这项研究的目的是更好地表征这些趋化性辅助因子,并研究细胞表面TSP-1受体CD36和CD47在此过程中可能发挥的作用。测定正常人中性粒细胞和转染了C5a受体(U937-C5aR)的U937细胞系在C活化的正常血清,柠檬酸盐血浆,DBP耗尽的血清或C5耗尽的血清中的趋化活性。另外,通过RIA或ELISA测量这些流体中C5a des Arg,DBP和TSP-1的水平。结果表明存在清晰的层次结构,其中C5a是必需的主要信号(在没有C5a的情况下,DBP或TSP-1将不起作用),DBP是必需的辅因子,而TSP-1是依赖的三级因子,因为它不能起到增强作用无DBP时趋向C5a。 C5a诱导的细胞内钙通量的测量证实了趋化性观察到的相同层次。此外,对来自成人呼吸窘迫综合征(ARDS)患者的支气管肺泡灌洗液(BALF)的分析表明,抗DBP治疗后,C5a依赖性的趋化活性明显降低。最后,结果表明TSP-1利用细胞表面受体CD36和CD47增强趋化性,但DBP不与TSP-1,CD36或CD47结合。结果清楚地表明,C5a / C5a des Arg既需要DBP又需要TSP-1才能发挥最大的趋化活性,并且表明生理液中C5a趋化活性的调控比以前认为的要复杂。

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