Ruiz Carlos A, Rotundo Richard L
Department of Cell Biology and Anatomy, University of Miami Miller School of Medicine, Miami, Florida 33136, USA.
J Biol Chem. 2009 Aug 7;284(32):21488-95. doi: 10.1074/jbc.M109.030049. Epub 2009 Jun 9.
The synaptic form of acetylcholinesterase (AChE) in skeletal muscle ColQ-AChE derives from two separate genes encoding the catalytic and the non-catalytic collagenic tail (ColQ) subunits, respectively. ColQ-AChE expression is regulated by muscle activity; however, how this regulation takes place in skeletal muscle remains poorly understood. In this study, we overexpressed or knocked down ColQ expression in skeletal muscle and found that the level of this non-catalytic component by itself was sufficient to change the levels of total AChE activity by promoting assembly of higher order oligomeric forms including the collagen-tailed forms. These results initially suggested that ColQ could be limiting in the assembly of synaptic ColQ-AChE during development and differentiation. We then determined the levels of ColQ protein and ColQ mRNA during primary quail muscle cell development and differentiation in culture (QMCs) and as a function of muscle activity. Surprisingly, we found dissociation between transcription and translation of the non-catalytic subunit from its assembly into ColQ-AChE. Furthermore, we found that the vast majority of the steady state ColQ molecules in mature quail muscle cultures are not assembled into ColQ-AChE, suggesting that they are either rapidly degraded or have alternative function(s).
骨骼肌中的乙酰胆碱酯酶(AChE)的突触形式ColQ - AChE分别源自两个独立的基因,它们分别编码催化亚基和非催化性胶原尾(ColQ)亚基。ColQ - AChE的表达受肌肉活动调节;然而,这种调节在骨骼肌中是如何发生的仍知之甚少。在本研究中,我们在骨骼肌中过表达或敲低ColQ的表达,发现这种非催化成分自身的水平足以通过促进包括胶原尾形式在内的高阶寡聚体形式的组装来改变总AChE活性水平。这些结果初步表明,在发育和分化过程中,ColQ可能是突触ColQ - AChE组装的限制因素。然后,我们测定了原代鹌鹑肌肉细胞(QMCs)发育和分化过程中以及作为肌肉活动函数的ColQ蛋白和ColQ mRNA水平。令人惊讶的是,我们发现非催化亚基从转录和翻译到组装成ColQ - AChE之间存在解离。此外,我们发现在成熟鹌鹑肌肉培养物中,绝大多数稳态ColQ分子并未组装成ColQ - AChE,这表明它们要么迅速降解,要么具有其他功能。