Mukhina A M, Altaeva E G, Nemirovskaia T L, Shenkman B S
Institute for Bio-Medical Problems, Khoroshevskoye shosse, 76-a, Moscow, Russia.
Ross Fiziol Zh Im I M Sechenova. 2006 Nov;92(11):1285-95.
It is known that hindlimb unloading brings about the intracellular Ca2+ accumulation and MyHC slow-to-fast shift in m.soleus. SERCA (sarcoendoplasmatic reticulum Ca ATPase) function as a Ca pump to uptake to sarcoendoplasmatic reticulum after skeletal muscle contraction, and can modulate intracellular resting Ca level. The study was aimed at investigation of the role of intracellular Ca2+ level for MyHC and SERCA isoforms transformation in m.soleus under hindlimb unloading. To determine role of intracellular Ca we administrated nifedipin--specific blocker of L-type calcium channel in myofibers. We hypothesized that decrease of intracellular calcium level prevented-NFATc1 nuclear translocation and MyHC slow-to-fast transformation. 42 male Wistar rats (180-200 g) were divided in 3 groups: cage control (C, n = 14), 14 days HU (HU, n = 14), 14 days HU with 7 mg/kg/day of nifedipin administration with water (HUN, n = 14). The study has shown that increase of intracellular Ca2+ level under HU leads to MHC slow-to-fast shift via activation of calcineurin-NFATc1 signaling pathway. Percentage of muscle fibers with SERCA I increased under hindlimb unloading, being dependent of intracellular calcium level, percentage of muscle fibers with SERCA II decreased under hindlimb unloading but did not depend on calcium. We suppose that nifedipin administration decreases intracellular Ca level, prevents MHC slow-to-fast shift via prevention of NFATcl accumulation in nuclear extract of m.soleus, and prevent increase of SERCAI expression. The work was supported by grants RFBR N05-04-49255a, 04-04-49044, 05-04-08200-ofi-a, contract with Federal Agency for Science and Iinnovation N02.467.11.3005, and Presidium of RAS program "Basic sciences for medicine".
已知后肢卸载会导致比目鱼肌细胞内Ca2+积累以及肌球蛋白重链(MyHC)从慢肌型向快肌型转变。肌浆网Ca2+ -ATP酶(SERCA)在骨骼肌收缩后作为一种Ca泵,将Ca摄取到肌浆网中,并可调节细胞内静息Ca水平。本研究旨在探讨后肢卸载情况下细胞内Ca2+水平对比目鱼肌中MyHC和SERCA亚型转化的作用。为了确定细胞内Ca的作用,我们给予硝苯地平——肌纤维中L型钙通道的特异性阻滞剂。我们假设细胞内钙水平的降低可阻止活化T细胞核因子c1(NFATc1)的核转位以及MyHC从慢肌型向快肌型的转变。42只雄性Wistar大鼠(180 - 200克)被分为3组:笼养对照(C组,n = 14)、14天悬吊(HU组,n = 14)、14天悬吊并以7毫克/千克/天的剂量经水给予硝苯地平(HUN组,n = 14)。研究表明,后肢卸载情况下细胞内Ca2+水平的升高通过激活钙调磷酸酶 - NFATc1信号通路导致MHC从慢肌型向快肌型转变。后肢卸载时,含有SERCA I的肌纤维百分比增加,且依赖于细胞内钙水平;后肢卸载时,含有SERCA II的肌纤维百分比降低,但不依赖于钙。我们认为,给予硝苯地平可降低细胞内Ca水平,通过阻止NFATc1在比目鱼肌核提取物中的积累来防止MHC从慢肌型向快肌型转变,并阻止SERCAI表达增加。本研究得到了俄罗斯基础研究基金会(RFBR)编号为N05 - 04 - 49255a、04 - 04 - 49044、05 - 04 - 08200 - ofi - a的资助,与俄罗斯联邦科学与创新署签订的编号为N02.467.11.3005的合同资助,以及俄罗斯科学院主席团“医学基础科学”项目的资助。