Miller Bradley, Kostrominova Tatiana Y, Geurts Aron M, Sorokin Andrey
Department of Medicine, Medical College of Wisconsin, Milwaukee, WI 53266, USA.
Department of Anatomy, Cell Biology and Physiology, Indiana University School of Medicine-Northwest, Gary, IN 46408, USA.
Int J Mol Sci. 2021 May 15;22(10):5237. doi: 10.3390/ijms22105237.
The ubiquitously expressed adaptor protein Shc exists in three isoforms p46Shc, p52Shc, and p66Shc, which execute distinctly different actions in cells. The role of p46Shc is insufficiently studied, and the purpose of this study was to further investigate its functional significance. We developed unique rat mutants lacking p52Shc and p46Shc isoforms (p52Shc/46Shc-KO) and carried out histological analysis of skeletal and cardiac muscle of parental and genetically modified rats with impaired gait. p52Shc/46Shc-KO rats demonstrate severe functional abnormalities associated with impaired gait. Our analysis of p52Shc/46Shc-KO rat axons and myelin sheets in cross-sections of the sciatic nerve revealed the presence of significant anomalies. Based on the lack of skeletal muscle fiber atrophy and the presence of sciatic nerve abnormalities, we suggest that the impaired gait in p52Shc/46Shc-KO rats might be due to the sensory feedback from active muscle to the brain locomotor centers. The lack of dystrophin in some heart muscle fibers reflects damage due to dilated cardiomyopathy. Since rats with only p52Shc knockout do not display the phenotype of p52Shc/p46Shc-KO, abnormal locomotion is likely to be caused by p46Shc deletion. Our data suggest a previously unknown role of 46Shc actions and signaling in regulation of gait.
普遍表达的衔接蛋白Shc存在三种异构体p46Shc、p52Shc和p66Shc,它们在细胞中执行截然不同的功能。对p46Shc的作用研究尚不充分,本研究旨在进一步探究其功能意义。我们培育出了缺乏p52Shc和p46Shc异构体的独特大鼠突变体(p52Shc/46Shc-KO),并对步态受损的亲代大鼠和基因改造大鼠的骨骼肌和心肌进行了组织学分析。p52Shc/46Shc-KO大鼠表现出与步态受损相关的严重功能异常。我们对坐骨神经横切面中的p52Shc/46Shc-KO大鼠轴突和髓鞘的分析显示存在明显异常。基于骨骼肌纤维未出现萎缩以及坐骨神经存在异常,我们推测p52Shc/46Shc-KO大鼠的步态受损可能是由于活跃肌肉向大脑运动中枢的感觉反馈所致。部分心肌纤维中缺乏肌营养不良蛋白反映了扩张型心肌病造成的损伤。由于仅敲除p52Shc的大鼠未表现出p52Shc/p46Shc-KO的表型,异常运动很可能是由p46Shc缺失引起的。我们的数据表明46Shc的作用和信号传导在步态调节中具有此前未知的作用。