Department of Internal Medicine-Gerontology, Wake Forest University School of Medicine, 1 Medical Center Boulvard, Winston Salem, NC 27157, USA.
Aging Cell. 2009 Sep;8(5):584-94. doi: 10.1111/j.1474-9726.2009.00507.x. Epub 2009 Aug 5.
Ca2+ release from the sarcoplasmic reticulum (SR) into the cytosol is a crucial part of excitation-contraction (E-C) coupling. Excitation-contraction uncoupling, a deficit in Ca2+ release from the SR, is thought to be responsible for at least some of the loss in specific force observed in aging skeletal muscle. Excitation-contraction uncoupling may be caused by alterations in expression of the voltage-dependent calcium channel alpha1s (CaV1.1) and beta1a (CaVbeta1a) subunits, both of which are necessary for E-C coupling to occur. While previous studies have found CaV1.1 expression declines in old rodents, CaVbeta1a expression has not been previously examined in aging models. Western blot analysis shows a substantial increase of CaVbeta1a expression over the full lifespan of Friend Virus B (FVB) mice. To examine the specific effects of CaVbeta1a overexpression, a CaVbeta1a-YFP plasmid was electroporated in vivo into young animals. The resulting increase in expression of CaVbeta1a corresponded to decline of CaV1.1 over the same time period. YFP fluorescence, used as a measure of CaVbeta1a-YFP expression in individual fibers, also showed an inverse relationship with charge movement, measured using the whole-cell patch-clamp technique. Specific force was significantly reduced in young CaVbeta1a-YFP electroporated muscle fibers compared with sham-electroporated, age-matched controls. siRNA interference of CaVbeta1a in young muscles reduced charge movement, while charge movement in old was restored to young control levels. These studies imply CaVbeta1a serves as both a positive and negative regulator CaV1.1 expression, and that endogenous overexpression of CaVbeta1a during old age may play a role in the loss of specific force.
肌浆网(SR)内钙离子的释放进入细胞质是兴奋-收缩(E-C)偶联的关键部分。兴奋-收缩偶联解偶联,即 SR 内钙离子释放减少,被认为是衰老骨骼肌中特定力损失的至少部分原因。兴奋-收缩偶联解偶联可能是由于电压依赖性钙通道 alpha1s(CaV1.1)和 beta1a(CaVbeta1a)亚基表达的改变引起的,这两个亚基对于 E-C 偶联的发生都是必需的。虽然之前的研究发现老年啮齿动物的 CaV1.1 表达下降,但 CaVbeta1a 在衰老模型中的表达尚未被检测到。Western blot 分析显示,Friend 病毒 B(FVB)小鼠的整个生命周期中 CaVbeta1a 的表达显著增加。为了研究 CaVbeta1a 过表达的具体影响,将 CaVbeta1a-YFP 质粒在体内电转染到年轻动物中。在同一时期,CaVbeta1a 的表达增加与 CaV1.1 的表达减少相对应。YFP 荧光,用作个体纤维中 CaVbeta1a-YFP 表达的测量,也显示出与使用全细胞膜片钳技术测量的电荷移动呈反比关系。与假电转染、年龄匹配的对照相比,年轻的 CaVbeta1a-YFP 电转染肌肉纤维的特定力显著降低。年轻肌肉中的 CaVbeta1a siRNA 干扰降低了电荷移动,而老年肌肉中的电荷移动则恢复到年轻对照水平。这些研究表明 CaVbeta1a 既是 CaV1.1 表达的正向和负向调节剂,并且内源性 CaVbeta1a 在老年时的过表达可能在特定力损失中起作用。