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12千道尔顿的FK506结合蛋白FKBP12可调节3型兰尼碱受体的Ca(2+)通量特性。

The 12 kDa FK506-binding protein, FKBP12, modulates the Ca(2+)-flux properties of the type-3 ryanodine receptor.

作者信息

Van Acker Kristel, Bultynck Geert, Rossi Daniela, Sorrentino Vincenzo, Boens Noel, Missiaen Ludwig, De Smedt Humbert, Parys Jan B, Callewaert Geert

机构信息

Laboratorium voor Fysiologie, Campus Gasthuisberg O/N, KU Leuven, Herestraat 49, B-3000 Leuven, Belgium.

出版信息

J Cell Sci. 2004 Mar 1;117(Pt 7):1129-37. doi: 10.1242/jcs.00948. Epub 2004 Feb 17.

Abstract

We have characterised the functional regulation of the type-3 ryanodine receptor by the 12 kDa FK506-binding protein. Wild-type type-3 ryanodine receptor and mutant type-3 ryanodine receptor in which the critical valine at position 2322 in the central 12 kDa FK506-binding protein binding site was substituted by aspartate, were stably expressed in human embryonic kidney cells. In contrast to the wild-type receptor, the mutant receptor was strongly impaired in binding to immobilised glutathione S-transferase 12 kDa FK506-binding protein. Caffeine-induced 45Ca(2+)-efflux was markedly increased in cells expressing mutant type-3 ryanodine receptor whereas the maximal-releasable Ca2+ was not affected. Confocal Ca2+ imaging provided clear evidence for a much higher sensitivity of the mutant receptor, which showed global Ca2+ release at about 20-fold lower caffeine concentrations than the wild-type receptor. Spontaneous Ca2+ sparks were observed in both wild-type- and mutant-expressing cells but the number of sparking cells was about 1.5-fold higher in the mutant group, suggesting that the degree of FK506 binding controls the stability of the closed state of ryanodine receptor channels. Furthermore, overexpression of 12 kDa FK506-binding protein decreased the number of sparking cells in the wild-type-expressing cells whereas it did not affect the number of sparking cells in cells expressing the mutant receptor. Concerning spark properties, the amplitude and duration of Ca2+ sparks mediated by mutant channels were significantly reduced in comparison to wild-type channels. This suggests that functional coupling between different mutant type-3 ryanodine receptor channels in a cluster is impaired. Our findings show for the first time that the central binding site for the 12 kDa FK506-binding protein of type-3 ryanodine receptor, encompassing the critical valine proline motif, plays a crucial role in the modulation of the Ca2+ release properties of the type-3 ryanodine receptor channel, including the regulation of both global Ca2+ responses and spontaneous Ca2+ sparks.

摘要

我们已经对12 kDa FK506结合蛋白对3型兰尼碱受体的功能调节进行了表征。野生型3型兰尼碱受体以及其中央12 kDa FK506结合蛋白结合位点第2322位的关键缬氨酸被天冬氨酸取代的突变型3型兰尼碱受体,在人胚肾细胞中稳定表达。与野生型受体相比,突变型受体与固定化谷胱甘肽S-转移酶12 kDa FK506结合蛋白的结合能力严重受损。在表达突变型3型兰尼碱受体的细胞中,咖啡因诱导的45Ca(2+)外流显著增加,而最大可释放Ca2+不受影响。共聚焦Ca2+成像提供了明确的证据,表明突变型受体的敏感性要高得多,其在比野生型受体低约20倍的咖啡因浓度下就出现了整体Ca2+释放。在表达野生型和突变型的细胞中均观察到了自发Ca2+闪烁,但突变组中闪烁细胞的数量高出约1.5倍,这表明FK506结合程度控制着兰尼碱受体通道关闭状态的稳定性。此外,12 kDa FK506结合蛋白的过表达减少了表达野生型的细胞中闪烁细胞的数量,而对表达突变型受体的细胞中闪烁细胞的数量没有影响。关于闪烁特性,与野生型通道相比,突变型通道介导的Ca2+闪烁的幅度和持续时间显著降低。这表明簇中不同的突变型3型兰尼碱受体通道之间的功能偶联受损。我们的研究结果首次表明,3型兰尼碱受体的12 kDa FK506结合蛋白的中央结合位点,包括关键的缬氨酸-脯氨酸基序,在调节3型兰尼碱受体通道的Ca2+释放特性中起着关键作用,包括对整体Ca2+反应和自发Ca2+闪烁的调节。

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