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首页> 外文期刊>Chemico-biological interactions >Reciprocal neural regulation of extrajunctional acetylcholinesterase and collagen Q in rat muscles--the role of calcineurin signaling.
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Reciprocal neural regulation of extrajunctional acetylcholinesterase and collagen Q in rat muscles--the role of calcineurin signaling.

机译:大鼠肌肉中结外乙酰胆碱酯酶和胶原蛋白Q的相互神经调节-钙调神经磷酸酶信号传导的作用。

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There are two main differences regarding acetylcholinesterase (AChE) expression in the extrajunctional regions of fast and slow rat muscles: (1) the activity of AChE catalytic subunits (G1 form) is much higher in fast than in slow muscles, and (2) the activity of the asymmetric forms of AChE (A(8) and A(12)) is quite high extrajunctionally in slow muscles but virtually absent in fast muscles. The latter is due to the absence of the expression of AChE-associated collagen Q (ColQ) in the extrajunctional regions of fast muscle fibers, in contrast to its ample expression in slow muscles. We showed that both differences are caused by different neural activation patterns of fast vs. slow muscle fibers, which determine the respective levels of mRNA of both proteins. Whereas the changes in AChE mRNA levels in fast and slow muscles, as well as the levels of ColQ mRNA levels in slow muscles, observed in response to exposing either slow or fast muscles to different muscle activation patterns, are completely reversible, the extrajunctional suppression of ColQ expression in fast muscle fibers seems to be irreversible. Calcineurin signaling pathway in muscles is activated by high-average sarcoplasmic calcium concentration resulting from tonic low-frequency muscle fiber activation pattern, typical for slow muscle fibers, but is inactive in fast muscle fibers, which are activated by infrequent high-frequency bursts of neural impulses. Application to rats of two inhibitors of calcineurin (tacrolimus-FK506 and cyclosporin A) demonstrated that the mRNA levels of both the AChE catalytic subunit and ColQ in the extrajunctional regions of the soleus muscle are regulated by the calcineurin signaling pathway, but in a reciprocal way. Under the conditions of low calcineurin activity, AChE expression is enhanced and that of ColQ is suppressed, and vice versa. Our results also indicated that different, calcineurin-independent regulatory pathways are responsible for the reduction of AChE expression during muscle denervation, andfor maintaining high ColQ expression in the neuromuscular junctions of fast muscle fibers.
机译:在快速和慢速大鼠肌肉的结外区域,乙酰胆碱酯酶(AChE)的表达有两个主要差异:(1)快速时AChE催化亚基(G1形式)的活性比慢速肌肉中的高得多,(2) AChE(A(8)和A(12))的不对称形式的活性在结缔组织中在缓慢的肌肉中相当高,但在快速的肌肉中实际上不存在。后者是由于在快肌纤维的结外区域不存在与AChE相关的胶原蛋白Q(ColQ)的表达,而在慢肌中却没有足够的表达。我们表明这两种差异是由快肌纤维和慢肌纤维的不同神经激活模式引起的,后者确定了两种蛋白质各自的mRNA水平。尽管快慢肌或快肌暴露于不同的肌肉激活模式后观察到快慢肌中AChE mRNA水平的变化以及慢肌ColQ mRNA水平的变化是完全可逆的,但结外抑制快肌纤维中的ColQ表达似乎是不可逆的。肌肉中的钙调神经磷酸信号传导途径被高平均的肌浆钙浓度所激活,该浓度来自于补品低频肌肉纤维的激活模式,这对于慢肌纤维而言是典型的,但在快肌纤维中则没有,而高频的神经突波则可以激活冲动。在大鼠中使用两种钙调神经磷酸酶抑制剂(他克莫司-FK506和环孢菌素A)表明,比目鱼肌结外区域中AChE催化亚基和ColQ的mRNA水平受钙调神经磷酸酶信号传导途径的调控,但是双向的。在钙调神经磷酸酶活性低的条件下,AChE表达增强,而ColQ的表达受​​到抑制,反之亦然。我们的结果还表明,不同的,钙调神经磷酸酶非依赖性调节途径负责肌肉去神经过程中AChE表达的减少,并维持快速肌肉纤维神经肌肉接头中的高ColQ表达。

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