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C3与荚膜型和非荚膜型新生隐球菌结合及激活过程中扩增阶段的动力学分析

Kinetic analysis of the amplification phase for activation and binding of C3 to encapsulated and nonencapsulated Cryptococcus neoformans.

作者信息

Kozel T R, Wilson M A, Welch W H

机构信息

Department of Microbiology, University of Nevada, Reno 89557.

出版信息

Infect Immun. 1992 Aug;60(8):3122-7. doi: 10.1128/iai.60.8.3122-3127.1992.

Abstract

Encapsulated and nonencapsulated cryptococci exhibit quantitative and qualitative differences in their activation of the complement system. We examined the kinetics for the rapid amplification phase in which C3 was activated and bound to encapsulated cryptococci, nonencapsulated cryptococci, and zymosan particles. Yeast cells were incubated in normal human serum containing 125I-labeled C3, and bound C3 fragments were measured after 1 to 64 min of incubation. A kinetic analysis showed that the apparent first-order rate constant (k') for binding of C3 to nonencapsulated cryptococci did not differ significantly from k' for binding of C3 to zymosan particles (P greater than 0.05). However, the rate constant for binding of C3 to encapsulated cryptococci was significantly (P less than 0.001) greater than k' for binding of C3 to nonencapsulated cryptococci and zymosan particles. A plot of C3 molecules bound to encapsulated cryptococci versus time cubed was nearly linear, suggesting that accumulation of C3 in the cryptococcal capsule follows the kinetics predicted by an expanding sphere. In contrast, the plot of C3 molecules bound to nonencapsulated cryptococci or zymosan particles against time was nearly linear, but those plots against time squared or time cubed were not. This result indicates that the rate-limiting step for the addition of C3 fragments to these latter yeast cells follows the kinetics of neither the perimeter of an expanding circle nor the surface of an expanding sphere. Taken together, the results indicate that the high rate of accumulation of C3 in the cryptococcal capsule is consistent with the expected geometry of an expanding sphere of bound C3 within the three-dimensional matrix of the capsule.

摘要

荚膜型和非荚膜型隐球菌在补体系统激活方面表现出数量和质量上的差异。我们研究了C3被激活并结合到荚膜型隐球菌、非荚膜型隐球菌和酵母聚糖颗粒上的快速扩增阶段的动力学。将酵母细胞在含有125I标记C3的正常人血清中孵育,并在孵育1至64分钟后测量结合的C3片段。动力学分析表明,C3与非荚膜型隐球菌结合的表观一级速率常数(k')与C3与酵母聚糖颗粒结合的k'没有显著差异(P大于0.05)。然而,C3与荚膜型隐球菌结合的速率常数显著(P小于0.001)大于C3与非荚膜型隐球菌和酵母聚糖颗粒结合的k'。结合到荚膜型隐球菌上的C3分子与时间立方的关系图几乎是线性的,这表明C3在隐球菌荚膜中的积累遵循由扩展球体预测的动力学。相比之下,结合到非荚膜型隐球菌或酵母聚糖颗粒上的C3分子与时间的关系图几乎是线性的,但与时间平方或时间立方的关系图则不是。这一结果表明,向这些后一种酵母细胞添加C3片段的限速步骤既不遵循扩展圆周长的动力学,也不遵循扩展球体表面的动力学。综上所述,结果表明C3在隐球菌荚膜中的高积累速率与荚膜三维基质内结合的C3扩展球体的预期几何形状一致。

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