CHRONIC EXERCISE INCREASES SNAP-25 ABUNDANCE IN FAST-TRANSPORTED PROTEINS OF RAT MOTONEURONS

被引:26
作者
KANG, CM
LAVOIE, PA
GARDINER, PF
机构
[1] UNIV MONTREAL,DEPT EDUC PHYS,MONTREAL,PQ H3C 3J7,CANADA
[2] UNIV MONTREAL,DEPT PHARMACOL,MONTREAL,PQ H3C 3J7,CANADA
关键词
S-35] METHIONINE-LABELED PROTEINS; FAST AXOPLASMIC FLOW; MOTONEURONS; POLYACRYLAMIDE GEL ELECTROPHORESIS; FLUOROGRAPHY; IMMUNOPRECIPITATION; NEURONAL PLASTICITY; ENDURANCE TRAINING;
D O I
10.1097/00001756-199502000-00035
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
THE aim of the present study was to determine whether endurance exercise training selectively modifies the relative abundance of some of the proteins that are subjected to fast axonal transport. Rats were trained on treadmill for 11-13 weeks. [S-35]methionine was injected into the ventral horn of L(4)-L(3) spinal cord segments, and transported [S-35]methionine-labelled proteins were analysed on fluorograms of sodium dodecyl sulphate polyacrylamide gels. The proportion of a 28 kDa protein increased significantly after training, from 4.9% in controls to 7.7% in trained animals. Two-dimensional electrophoresis and immunoprecipitation identified it as SNAP-25/SuP. The increased availability of SNAP-25, a synaptic protein, may constitute part of the molecular basis of exercise-induced changes in nerve terminal morphology and physiology.
引用
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页码:549 / 553
页数:5
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