TRIAD FORMATION - ORGANIZATION AND FUNCTION OF THE SARCOPLASMIC-RETICULUM CALCIUM-RELEASE CHANNEL AND TRIADIN IN NORMAL AND DYSGENIC MUSCLE IN-VITRO

被引:101
作者
FLUCHER, BE
ANDREWS, SB
FLEISCHER, S
MARKS, AR
CASWELL, A
POWELL, JA
机构
[1] VANDERBILT UNIV, DEPT MOLEC BIOL, NASHVILLE, TN 37235 USA
[2] CUNY MT SINAI SCH MED, MOLEC MED PROGRAM, NEW YORK, NY 10029 USA
[3] CUNY MT SINAI SCH MED, BROOKDALE CTR MOLEC BIOL, NEW YORK, NY 10029 USA
[4] UNIV MIAMI, DEPT MOLEC & CELLULAR PHARMACOL, MIAMI, FL 33101 USA
[5] SMITH COLL, DEPT BIOL SCI, NORTHAMPTON, MA 01063 USA
关键词
D O I
10.1083/jcb.123.5.1161
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Excitation-contraction (E-C) coupling is thought to involve close interactions between the calcium release channel (ryanodine receptor; RyR) of the sarcoplasmic reticulum (SR) and the dihydrophyridine receptor (DHPR) alpha1 subunit in the T-tubule membrane. Triadin, a 95-kD protein isolated from heavy SR, binds both the RyR and DHPR and may thus participate in E-C coupling or in interactions responsible for the formation of SR/T-tubule junctions. Immunofluorescence labeling of normal mouse myotubes shows that the RyR and triadin co-aggregate with the DHPR in punctate clusters upon formation of functional junctions. Dysgenic myotubes with a deficiency in the alpha1 subunit of the DHPR show reduced expression and clustering of RyR and triadin; however, both proteins are still capable of forming clusters and attaining mature cross-striated distributions. Thus, the molecular organization of the RyR and triadin in the terminal cisternae of SR as well as its association with the T-tubules are independent of interactions with the DHPR alpha1 subunit. Analysis of calcium transients in dysgenic myotubes with fluorescent calcium indicators reveals spontaneous and caffeine-induced calcium release from intracellular stores similar to those of normal muscle; however, depolarization-induced calcium release is absent. Thus, characteristic calcium release properties of the RyR do not require interactions with the DHPR; neither do they require the normal organization of the RyR in the terminal SR cisternae. In hybrids of dysgenic myotubes fused with normal cells, both action potential-induced calcium transients and the normal clustered organization of the RyR are restored in regions expressing the DHPR alpha1 subunit.
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页码:1161 / 1174
页数:14
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