scholarly journals Protein degradation in skin fibroblasts from patients with Duchenne muscular dystrophy

1980 ◽  
Vol 192 (1) ◽  
pp. 257-262 ◽  
Author(s):  
H E Statham ◽  
J A Witkowski ◽  
V Dubowitz

The rates of degradation of [3H]leucine-labelled proteins have been measured in cultures of skin fibroblasts obtained from normal controls (five subjects) and patients with Duchenne muscular dystrophy (six subjects). Cultures were incubated with [3H]leucine (10 microCi/ml) for 60 min to label “short-lived” proteins, and with [3H]leucine (5 microCi/ml) for 60 h to label “long-lived” proteins. Optimal wash procedures were devised for removal of [3H]leucine from the extracellular space and from cell pools before beginning degradation measurements. Re-utilization of [3H]leucine released from degraded labelled proteins was prevented by supplementing the medium with 4mM-leucine. Rates of degradation did not depend on the growth state of the cells or on cell age over the range used (passages eight-20). Degradation of long-lived proteins was approximately linear over a 24h period, at a rate of 1.0% per h. 30% of short-lived protein was degraded within 6h. No differences were observed between protein degradation in normal fibroblasts and in those from patients with Duchenne muscular dystrophy.

Author(s):  
M. Boulé ◽  
M. Vanasse ◽  
L. Brakier-Gingras

SUMMARY:Polysomes extracted from cultured fibroblast cells isolated from patients with Duchenne muscular dystrophy (DMD), carriers of the disease, and normal controls were used for in vitro measurement of protein synthesis in a wheat germ extract system. It was observed that polysomes from patients and carriers (seven of each aged 17 years or older) exhibited a 3-fold and a 1.5-fold decrease in the rate of protein synthesis, respectively, as compared with controls. These results are discussed with a view to developing a sensitive and easily available assay for the detection of DMD carriers.


1994 ◽  
Vol 87 (2) ◽  
pp. 129-134 ◽  
Author(s):  
Makoto Uchino ◽  
Hitoo Teramoto ◽  
Hiroaki Naoe ◽  
Teruhisa Miike ◽  
Kowashi Yoshioka ◽  
...  

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