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营养不良的129/ReJ小鼠支配快肌的运动神经中G4(10S)乙酰胆碱酯酶含量降低:神经乙酰胆碱酯酶是否缺乏特定的区室?

Decreased G4 (10S) acetylcholinesterase content in motor nerves to fast muscles of dystrophic 129/ReJ mice: lack of a specific compartment of nerve acetylcholinesterase?

作者信息

Gisiger V, Stephens H R

出版信息

J Neurochem. 1984 Jul;43(1):174-83. doi: 10.1111/j.1471-4159.1984.tb06694.x.

DOI:10.1111/j.1471-4159.1984.tb06694.x
PMID:6726245
Abstract

Acetylcholinesterase (AChE; EC 3.1.1.7) activity and the distribution of its molecular forms were studied in the nervous system of normal and dystrophic 129/ReJ mice, including the sciatic-tibial nerve trunk and motor nerves to slow- and fast-twitch muscles. In normal mice, motor nerves to the slow-twitch soleus exhibited a low AChE activity together with a low level of G4 (10S form) as compared with nerves of the predominantly fast-twitch plantaris and extensor digitorum longus. In contrast, in dystrophic mice, the AChE activity as well as the G4 content of nerves to the fast-twitch muscles were low, displaying an AChE content similar to that of the nerve of the soleus muscle. In the sciatic-tibial nerve trunk, the AChE activity decreased along the nerve in an exponential mode, at rates that were similar in both conditions. However, in dystrophic mice, the AChE activity was reduced throughout the nerve length by a constant value of approximately 180 nmol/h/mg protein. Further analyses indicated that AChE in this nerve trunk was distributed among two compartments, a decaying and a constant one. The decay involved exclusively the globular forms. The activity of A12 (16S form) remained constant along the nerve and was similar in both normal and dystrophic mice. In addition, according to the equation describing the decay of AChE, the reduction in enzymatic activity observed in the dystrophic mice affected mainly G4 in the constant compartment. Brain, spinal cord, sympathetic ganglia, and serum, which were also examined, showed no remarkable differences between the two conditions in their G4 content. The AChE abnormalities that we found in nervous tissues of 129/ReJ dystrophic mice were confined to the motor system.

摘要

在正常和营养不良的129/ReJ小鼠的神经系统中,研究了乙酰胆碱酯酶(AChE;EC 3.1.1.7)的活性及其分子形式的分布,包括坐骨-胫神经干以及支配慢肌和快肌的运动神经。在正常小鼠中,与主要为快肌的跖肌和趾长伸肌的神经相比,支配慢肌比目鱼肌的运动神经AChE活性较低,G4(10S形式)水平也较低。相反,在营养不良的小鼠中,支配快肌的神经的AChE活性以及G4含量较低,其AChE含量与比目鱼肌神经的相似。在坐骨-胫神经干中,AChE活性沿神经呈指数模式下降,两种情况下的下降速率相似。然而,在营养不良的小鼠中,整个神经长度的AChE活性以约180 nmol/h/mg蛋白质的恒定值降低。进一步分析表明,该神经干中的AChE分布在两个部分,一个是衰减部分,一个是恒定部分。衰减仅涉及球状形式。A12(16S形式)的活性沿神经保持恒定,在正常和营养不良的小鼠中相似。此外,根据描述AChE衰减的方程,在营养不良的小鼠中观察到的酶活性降低主要影响恒定部分中的G4。还检测的脑、脊髓、交感神经节和血清在两种情况下的G4含量没有显著差异。我们在129/ReJ营养不良小鼠神经组织中发现的AChE异常仅限于运动系统。

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Decreased G4 (10S) acetylcholinesterase content in motor nerves to fast muscles of dystrophic 129/ReJ mice: lack of a specific compartment of nerve acetylcholinesterase?营养不良的129/ReJ小鼠支配快肌的运动神经中G4(10S)乙酰胆碱酯酶含量降低:神经乙酰胆碱酯酶是否缺乏特定的区室?
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