Guo Kai, Wang Yue-Peng, Zhou Zhi-Wen, Jiang Yi-Bo, Li Wei, Chen Xiao-Meng, Li Yi-Gang
Department of Cardiology, Xin Hua Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai, China.
J Cell Mol Med. 2015 Mar;19(3):642-50. doi: 10.1111/jcmm.12484. Epub 2015 Feb 5.
Phospholemman (PLM) is an important phosphorylation substrate for protein kinases A and C in the heart. Until now, the association between PLM phosphorylation status and L-type calcium channels (LTCCs) gating has not been fully understood. We investigated the kinetics of LTCCs in HEK 293T cells expressing phosphomimetic or nonphosphorylatable PLM mutants.
The LTCCs gating was measured in HEK 293T cells transfected with LTCC and wild-type (WT) PLM, phosphomimetic or nonphosphorylatable PLM mutants: 6263AA, 6869AA, AAAA, 6263DD, 6869DD or DDDD.
WT PLM significantly slowed LTCCs activation and deactivation while enhanced voltage-dependent inactivation (VDI). PLM mutants 6869DD and DDDD significantly increased the peak of the currents. 6263DD accelerated channel activation, while 6263AA slowed it more than WT PLM. 6869DD significantly enhanced PLM-induced increase of VDI. AAAA slowed the channel activation more than 6263AA, and DDDD accelerated the channel VDI more than 6869DD.
Our results demonstrate that phosphomimetic PLM could stimulate LTCCs and alter their dynamics, while PLM nonphosphorylatable mutant produced the opposite effects.
磷肌酸蛋白(PLM)是心脏中蛋白激酶A和C的重要磷酸化底物。到目前为止,PLM磷酸化状态与L型钙通道(LTCCs)门控之间的关联尚未完全明确。我们研究了在表达模拟磷酸化或不可磷酸化PLM突变体的HEK 293T细胞中LTCCs的动力学。
在转染了LTCC和野生型(WT)PLM、模拟磷酸化或不可磷酸化PLM突变体(6263AA、6869AA、AAAA、6263DD、6869DD或DDDD)的HEK 293T细胞中测量LTCCs门控。
WT PLM显著减慢了LTCCs的激活和失活,同时增强了电压依赖性失活(VDI)。PLM突变体6869DD和DDDD显著增加了电流峰值。6263DD加速了通道激活,而6263AA比WT PLM更显著地减慢了通道激活。6869DD显著增强了PLM诱导的VDI增加。AAAA比6263AA更显著地减慢了通道激活,DDDD比6869DD更显著地加速了通道VDI。
我们的结果表明,模拟磷酸化的PLM可以刺激LTCCs并改变其动力学,而不可磷酸化的PLM突变体则产生相反的效果。