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β-肌球蛋白重链转基因在转基因小鼠悬浮及机械过载/悬浮比目鱼肌中的表达

beta-MHC transgene expression in suspended and mechanically overloaded/suspended soleus muscle of transgenic mice.

作者信息

McCarthy J J, Fox A M, Tsika G L, Gao L, Tsika R W

机构信息

University of Illinois, Urbana-Champaign 61801, USA.

出版信息

Am J Physiol. 1997 May;272(5 Pt 2):R1552-61. doi: 10.1152/ajpregu.1997.272.5.R1552.

Abstract

Non-weight-bearing (NWB) activity [space flight and hindlimb suspension (HS)] results in the loss of soleus muscle mass, a slow-to-fast fiber-type conversion, and decreased beta-myosin heavy chain (beta-MHC) protein and mRNA expression. To identify beta-MHC promoter sequences required for decreased beta-MHC expression in response to HS, we have modified an existing noninvasive hindlimb unweighting model to accommodate the use of (transgenic) mice. After 2 wk of HS, body and muscle (soleus > gastrocnemius > plantaris) weights were decreased as was the proportion of histochemically classified type I fibers in HS soleus muscle. Northern blot analysis revealed decreases in endogenous mRNA representing beta-MHC, slow myosin light chain 1 and 2, and cardiac/slow troponin C, whereas those representing skeletal troponin C, muscle creatine kinase, and glyceraldehyde-3-phosphate dehydrogenase increased. Protein extracts prepared from HS soleus (SS) muscle of mice harboring transgenes comprised of 5.6 or 0.6 kilobase of wild type (wt) mouse beta-MHC promoter (beta 5.6 wt, beta 0.6wt) and those carrying the simultaneous mutation (mut) of the MCAT, C-rich, and beta e3 subregions (beta 5.6mut3, beta 0.6mut3) revealed decreases in chloramphenicol acetyltransferase (CAT) specific activity relative to respective controls. Decreased CAT mRNA was observed for transgene beta 5.6mut3, line 85. Two weeks of the simultaneous imposition of mechanical overload (synergist ablation) and HS (MOV/HS) countermanded the loss in absolute and normalized SS weight but did not decrease beta 0.6wt transgene expression. These transgenic results demonstrate that regulatory sequences within a 600-base pair beta-MHC promoter are sufficient to direct decreased transcription of beta-MHC transgenes after 2 wk of HS.

摘要

非负重(NWB)活动[太空飞行和后肢悬吊(HS)]会导致比目鱼肌质量减少、纤维类型从慢肌向快肌转变,以及β-肌球蛋白重链(β-MHC)蛋白和mRNA表达降低。为了确定响应HS时β-MHC表达降低所需的β-MHC启动子序列,我们改进了现有的非侵入性后肢去负荷模型,以适应(转基因)小鼠的使用。HS处理2周后,体重和肌肉(比目鱼肌>腓肠肌>跖肌)重量下降,HS比目鱼肌中组织化学分类的I型纤维比例也下降。Northern印迹分析显示,代表β-MHC、慢肌肌球蛋白轻链1和2以及心脏/慢肌肌钙蛋白C的内源性mRNA减少,而代表骨骼肌肌钙蛋白C、肌肉肌酸激酶和甘油醛-3-磷酸脱氢酶的mRNA增加。从小鼠HS比目鱼肌(SS)中提取的蛋白质提取物,这些小鼠携带由5.6或0.6千碱基野生型(wt)小鼠β-MHC启动子组成的转基因(β5.6wt、β0.6wt),以及那些携带MCAT、富含C和βe3亚区域同时突变(mut)的转基因(β5.6mut3、β0.6mut3),相对于各自的对照,氯霉素乙酰转移酶(CAT)比活性降低。在转基因β5.6mut3第85行中观察到CAT mRNA减少。同时施加机械过载(协同肌切除)和HS(MOV/HS)两周抵消了SS绝对重量和标准化重量的损失,但没有降低β0.6wt转基因的表达。这些转基因结果表明,600碱基对β-MHC启动子内的调控序列足以在HS处理2周后指导β-MHC转基因转录降低。

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