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Negatively charged amino acids within the intraluminal loop of ryanodine receptor are involved in the interaction with triadin

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Abstract
In mammalian striated muscles, ryanodine receptor (RyR), triadin, junctin, and calsequestrin form a quaternary complex in the lumen of sarcoplasmic reticulum. Such intermolecular interactions contribute not only to the passive buffering of sarcoplasmic reticulum luminal Ca2+, but also to the active Ca2+ release process during excitation-contraction coupling. Here we tested the hypothesis that specific charged amino acids within the luminal portion of RyR mediate its direct interaction with triadin. Using in vitro binding assay and site-directed mutagenesis, we found that the second intraluminal loop of the skeletal muscle RyR1 (amino acids 4860-4917), but not the first intraluminal loop of RyR1 (amino acids 4581-4640) could bind triadin. Specifically, three negatively charged residues Asp(4878), Asp(4907), and Glu(4908) appear to be critical for the association with triadin. Using deletional approaches, we showed that a KEKE motif of triadin (amino acids 200-232) is essential for the binding to RyR1. Because the second intraluminal loop of RyR has been previously shown to contain the ion-conducting pore as well as the selectivity filter of the Ca2+ release channel, and Asp(4878) Asp(4907), and Glu(4908) residues are predicted to locate at the periphery of the pore assembly of the channel, our data suggest that a physical interaction between RyR1 and triadin could play an active role in the overall Ca2+ release process of excitation-contraction coupling in muscle cells.
Author(s)
Lee, JMRho, SHShin, DWCho, Chung HeePark, Woo JinEom, Soo HyunMa, JJKim, Do Han
Issued Date
2004-02
Type
Article
DOI
10.1074/jbc.M312446200
URI
https://scholar.gist.ac.kr/handle/local/18281
Publisher
American Society for Biochemistry and Molecular Biology Inc.
Citation
Journal of Biological Chemistry, v.279, no.8, pp.6994 - 7000
ISSN
0021-9258
Appears in Collections:
Department of Life Sciences > 1. Journal Articles
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