Department of Physiology, Yong Loo Lin School of Medicine, National University of Singapore, Singapore.
Circ Res. 2011 Nov 11;109(11):1250-8. doi: 10.1161/CIRCRESAHA.111.248849. Epub 2011 Oct 13.
Ca(V)1.2 channels are essential for excitation-contraction coupling in the cardiovascular system, and alternative splicing optimizes its role. Galectin-1 (Gal-1) has been reported to regulate vascular smooth muscle cell (VSMC) function and play a role in pulmonary hypertension. We have identified Gal-1 multiple times in yeast 2-hybrid assays using the Ca(V)1.2 I-II loop as bait.
Our hypothesis is that Gal-1 interacts directly with Ca(V)1.2 channel at the I-II loop to affect arterial constriction.
Unexpectedly, Gal-1 was found to selectively bind to the I-II loop only in the absence of alternatively spliced exon 9*. We found that the current densities of Ca(V)1.2(Δ9*) channels were significantly inhibited as a result of decreased functional surface expression due to the binding of Gal-1 at the export signal located on the C-terminus of exon 9. Moreover, the suppression of Gal-1 expression by siRNA in rat A7r5 and isolated VSMCs produced the opposite effect of increased I(Ca,L). The physiological significance of Gal-1 mediated splice variant-specific inhibition of Ca(V)1.2 channels was demonstrated in organ bath culture where rat MAs were reversibly permeabilized with Gal-1 siRNA and the arterial wall exhibited increased K(+)-induced constriction.
The above data indicated that Gal-1 regulates I(Ca,L) via decreasing the functional surface expression of Ca(V)1.2 channels in a splice variant selective manner and such a mechanism may play a role in modulating vascular constriction.
Ca(V)1.2 通道对于心血管系统的兴奋-收缩偶联至关重要,而选择性剪接则优化了其作用。半乳糖凝集素-1(Gal-1)已被报道可调节血管平滑肌细胞(VSMC)功能,并在肺动脉高压中发挥作用。我们已经使用 Ca(V)1.2 I-II 环作为诱饵,在酵母 2 杂交测定中多次鉴定出 Gal-1。
我们的假设是 Gal-1 直接与 Ca(V)1.2 通道在 I-II 环相互作用,从而影响动脉收缩。
出乎意料的是,发现 Gal-1 仅在不存在选择性剪接外显子 9的情况下选择性地结合到 I-II 环。我们发现,由于 Gal-1 结合位于外显子 9 末端的出口信号,导致功能表面表达减少,Ca(V)1.2(Δ9)通道的电流密度显着受到抑制。此外,在大鼠 A7r5 和分离的 VSMC 中用 siRNA 抑制 Gal-1 表达会产生相反的效果,即增加 I(Ca,L)。Gal-1 介导的剪接变体特异性抑制 Ca(V)1.2 通道的生理意义在器官浴培养中得到了证明,其中大鼠 MAs 可逆地用 Gal-1 siRNA 通透,并且动脉壁表现出增加的 K+诱导收缩。
上述数据表明,Gal-1 通过以剪接变体选择性的方式降低 Ca(V)1.2 通道的功能表面表达来调节 I(Ca,L),并且这种机制可能在调节血管收缩中发挥作用。