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与盘基网柄菌质膜相关的钙离子转运系统可被不同的趋化因子受体激活。

A Ca2+ transport system associated with the plasma membrane of Dictyostelium discoideum is activated by different chemoattractant receptors.

作者信息

Milne J L, Coukell M B

机构信息

Department of Biology, York University, Canada.

出版信息

J Cell Biol. 1991 Jan;112(1):103-10. doi: 10.1083/jcb.112.1.103.

Abstract

Amebae of Dictyostelium exhibit a transient uptake of extracellular Ca2+ approximately 5 s after activation of surface folate or cAMP receptors (Bumann, J., B. Wurster, and D. Malchow. 1984. J. Cell Biol. 98:173-178). To further characterize these Ca2+ entry systems, we analyzed 45Ca2+ uptake by resting and activated amebae. Like the surface chemoreceptors, folate- and cAMP-induced Ca2+ uptake responses were developmentally regulated; the former response was evident in vegetative but not aggregation-competent cells, whereas the latter response displayed the opposite pattern of expression. In contrast, other characteristics of these Ca2(+)-uptake pathways were remarkably similar. Both systems (a) exhibited comparable kinetic properties, (b) displayed a high specificity for Ca2+, and (c) were inhibited effectively by Ruthenium Red, sodium azide, and carbonylcyanide m-chlorophenyl-hydrazone. These results, together with the finding that vegetative cells transformed with a plasmid expressing the surface cAMP receptor exhibit a cAMP-induced Ca2+ uptake, suggest that different chemoreceptors activate a single Ca2+ entry pathway. Additional pharmacological and ion competition studies indicated that receptor-mediated Ca2+ entry probably does not involve a Na+/Ca2+ exchanger or voltage-activated channels. Chemoattractant binding appears to generate intracellular signals that induce activation and adaption of the Ca2(+)-uptake response. Analysis of putative signaling mutants suggests that Ca2+ entry is not regulated by the guanine nucleotide-binding (G) protein subunits G alpha 1 or G alpha 2, or by G protein-mediated changes in intracellular cAMP or guanosine 3,'5'-cyclic monophosphate (cGMP).

摘要

盘基网柄菌的变形虫在表面叶酸或环磷酸腺苷(cAMP)受体激活后约5秒会短暂摄取细胞外Ca2+(布曼,J.,B. 武斯特,和D. 马尔乔。1984年。《细胞生物学杂志》98:173 - 178)。为了进一步表征这些Ca2+进入系统,我们分析了静息和激活的变形虫对45Ca2+的摄取情况。与表面化学感受器一样,叶酸和cAMP诱导的Ca2+摄取反应受发育调控;前者反应在营养细胞中明显,但在具备聚集能力的细胞中不明显,而后者反应呈现相反的表达模式。相比之下,这些Ca2+摄取途径的其他特征非常相似。两个系统(a)表现出可比的动力学特性,(b)对Ca2+具有高度特异性,并且(c)被钌红、叠氮化钠和羰基氰化物间氯苯腙有效抑制。这些结果,连同用表达表面cAMP受体的质粒转化的营养细胞表现出cAMP诱导的Ca2+摄取这一发现,表明不同的化学感受器激活单一的Ca2+进入途径。额外的药理学和离子竞争研究表明,受体介导的Ca2+进入可能不涉及Na+/Ca2+交换器或电压激活通道。化学引诱剂结合似乎产生细胞内信号,诱导Ca2+摄取反应的激活和适应。对假定的信号突变体的分析表明,Ca2+进入不受鸟嘌呤核苷酸结合(G)蛋白亚基Gα1或Gα2调控,也不受G蛋白介导的细胞内cAMP或鸟苷3',5'-环一磷酸(cGMP)变化的调控。

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