Missiaen L, Parys J B, Sienaert I, Maes K, Kunzelmann K, Takahashi M, Tanzawa K, De Smedt H
Laboratorium voor Fysiologie, K. U. Leuven Campus Gasthuisberg, Herestraat 49, B-3000 Leuven, Belgium.
J Biol Chem. 1998 Apr 10;273(15):8983-6. doi: 10.1074/jbc.273.15.8983.
The type-3 inositol 1,4,5-trisphosphate (InsP3) receptor is the major isoform expressed in 16HBE14o- cells from bronchial mucosa, representing 93% at the mRNA level as determined by ratio reverse transcription-polymerase chain reaction and about 81% at the protein level as determined with isoform-specific antibodies (Sienaert, I., Huyghe, S., Parys, J. B., Malfait, M., Kunzelmann, K., De Smedt, H., Verleden, G. M., and Missiaen, L., Pflügers Arch. Eur. Y. Physiol., in press). The present 45Ca2+ efflux experiments indicate that these InsP3 receptors were 3 times less sensitive to InsP3 and 11 times less sensitive to ATP than those in A7r5 cells, where the type-1 InsP3 receptor is the main isoform. ATP did not increase the cooperativity of the InsP3-induced Ca2+ release in 16HBE14o- cells, in contrast to its effect in A7r5 cells. The sulfhydryl reagent thimerosal also did not stimulate InsP3-induced Ca2+ release in 16HBE14o- cells, again in contrast to its effect in A7r5 cells. Adenophostin A was more potent than InsP3 in stimulating the release in both cell types. The biphasic activation of the InsP3 receptor by cytosolic Ca2+ occurred in both cell types. We conclude that Ca2+ release mediated by the type-3 InsP3 receptor mainly differs from that mediated by the type-1 InsP3 receptor by its lack of stimulation by sulfhydryl oxidation and its lower ATP and InsP3 sensitivity. The predominant expression of the type-3 InsP3 receptor in the bronchial mucosa may be part of a mechanism coping with oxidative stress in that tissue.
3型肌醇1,4,5 - 三磷酸(InsP3)受体是支气管黏膜16HBE14o - 细胞中表达的主要亚型,通过逆转录 - 聚合酶链反应比值法测定,在mRNA水平占93%,用亚型特异性抗体测定,在蛋白质水平约占81%(西纳尔特,I.,于格,S.,帕里斯,J. B.,马尔法特,M.,昆策尔曼,K.,德·斯梅特,H.,韦尔勒登,G. M.,和米西亚恩,L.,《普弗吕格尔斯文献:欧洲生理学杂志》,即将发表)。目前的45Ca2+外流实验表明,与A7r5细胞(其中1型InsP3受体是主要亚型)中的InsP3受体相比,这些InsP3受体对InsP3的敏感性低3倍,对ATP的敏感性低11倍。与它在A7r5细胞中的作用相反,ATP并没有增加16HBE14o - 细胞中InsP3诱导的Ca2+释放的协同性。巯基试剂硫柳汞也没有刺激16HBE14o - 细胞中InsP3诱导的Ca2+释放,同样与它在A7r5细胞中的作用相反。腺嘌呤磷素A在刺激两种细胞类型的释放方面比InsP3更有效。两种细胞类型中均发生了胞质Ca2+对InsP3受体的双相激活。我们得出结论,3型InsP3受体介导的Ca2+释放与1型InsP3受体介导的Ca2+释放的主要区别在于它缺乏巯基氧化刺激以及对ATP和InsP3的敏感性较低。支气管黏膜中3型InsP3受体的主要表达可能是该组织应对氧化应激机制的一部分。