Coordinate activation of lysosomal, Ca2+-activated and ATP-ubiquitin-dependent proteinases in the unweighted rat soleus muscle

被引:221
作者
Taillandier, D
Aurousseau, E
MeynialDenis, D
Bechet, D
Ferrara, M
Cottin, P
Ducastaing, A
Bigard, X
Guezennec, CY
Schmid, HP
Attaix, D
机构
[1] INRA,UNITE NUTR CELLULAIRE & MOL,F-63122 CEYRAT,FRANCE
[2] CTR RECH NUTR HUMAINE,F-63122 CEYRAT,FRANCE
[3] UNIV BORDEAUX 1,F-33405 TALENCE,FRANCE
[4] CTR ETUD & RECH MED AEROSP,LAB PHYSIOL METAB,F-91228 BRETIGNY SUR ORGE,FRANCE
[5] UNIV CLERMONT FERRAND,F-63177 CLERMONT FERRAN,FRANCE
[6] ISTAB,F-33405 TALENCE,FRANCE
关键词
D O I
10.1042/bj3160065
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Nine days of hindlimb suspension resulted in atrophy (55%) and loss of protein (53%) in rat soleus muscle due to a marked elevation in protein breakdown (66%, P < 0.005). To define which proteolytic system(s) contributed to this increase, soleus muscles from unweighted rats were incubated in the presence of proteolytic inhibitors. An increase in lysosomal and Ca2+-activated proteolysis (254%, P < 0.05) occurred in the atrophying incubated muscles. In agreement with the measurements in vitro, cathepsin B, cathepsins B+L and m-calpain enzyme activities increased by 111%, 92% and 180% (P < 0.005) respectively in the atrophying muscles. Enhanced mRNA levels for these proteinases (P < 0.05 to P < 0.001) paralleled the increased enzyme activities, suggesting a transcriptional regulation of these enzymes. However, the lysosomal and Ca2+-dependent proteolytic pathways accounted for a minor part of total proteolysis in both control (9%) and unweighted rats (18%). Furthermore the inhibition of these pathways failed to suppress increased protein breakdown in unweighted muscle. Thus a non-lysosomal Ca2+-independent proteolytic process essentially accounted for the increased proteolysis and subsequent muscle wasting. Increased mRNA levels for ubiquitin, the 14 kDa ubiquitin-conjugating enzyme E2 (involved in the ubiquitylation of protein substrates) and the C2 and C9 subunits of the 20 S proteasome (i.e. the proteolytic core of the 26 S proteasome that degrades ubiquitin conjugates) were observed in the atrophying muscles (P < 0.02 to P < 0.001). Analysis of C9 mRNA in polyribosomes showed equal distribution into both translationally active and inactive mRNA pools, in either unweighted or control rats. These results suggest that increased ATP-ubiquitin-dependent proteolysis is most probably responsible for muscle wasting in the unweighted soleus muscle.
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页码:65 / 72
页数:8
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