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1  potential M2 channel, and the intracellular ryanodine receptor calcium release channels.
2 junctional (nj-SR) types, both of which have ryanodine-receptor calcium release channels.
3                                          The ryanodine receptor-calcium release channel complex (RyR)
4        It functions via stabilization of the ryanodine receptor-calcium release channel in the heart
5 served 3' region within the three identified ryanodine receptor-calcium release channel isoforms hybr
6                Calmodulin (CaM) binds to the ryanodine receptor/calcium release channel of skeletal m
7         IL-4 did not inhibit transients with ryanodine receptor calcium release channels (RyR) blocke
8 s now show that hyper-S-nitrosylation of the ryanodine receptor calcium release channel (RyR1) in ske
9                                          The ryanodine receptor/calcium release channel (RyR1) of sar
10 st in part, from a dysfunction of the type 2 ryanodine receptor calcium-release channel (RyR2).
11 izing protein calstabin2 (FKBP12.6) from the ryanodine receptor-calcium release channel (RyR2) comple
12 mic reticulum (SR) Ca2+ leak via the cardiac ryanodine receptor/calcium release channel (RyR2) is tho
13                                  The cardiac ryanodine receptor/calcium release channel (RyR2) on the
14 ets in cardiac muscle, including the cardiac ryanodine receptor/calcium release channel (RyR2) requir
15                                   The type 2 ryanodine receptor/calcium release channel (RyR2), requi
16 ensional reconstructions of isoform 3 of the ryanodine receptor/calcium release channel (RyR3).
17                               The tetrameric ryanodine receptor calcium release channels (RyRs) are c

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