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The elusive role of the SPRY2 domain in RyR1

机译:SPRY2域在RyR1中的难以捉摸的作用

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摘要

The second of three SPRY domains (SPRY2, S1085 V1208) located in the skeletal muscle ryanodine receptor (RyR1) is contained within regions of RyR1 that influence EC coupling and bind to imperatoxin A, a toxin probe of RyR1 channel gating. We examined the binding of the F loop (P1107 A1121) in SPRY2 to the ASI/basic region in RyR1 (T3471-G3500, containing both alternatively spliced (ASI) residues and neighboring basic amino acids). We then investigated the possible influence of this interaction on excitation contraction (EC) coupling. A peptide with the F loop sequence and an antibody to the SPRY2 domain each enhanced RyR1 activity at low concentrations and inhibited at higher concentrations. A peptide containing the ASI/basic sequence bound to SPRY2 and binding decreased ~10-fold following mutation or structural disruption of the basic residues. Binding was abolished by mutation of three critical acidic F loop residues. Together these results suggest that the ASI/basic and SPRY2 domains interact in an F loop regulatory module. Although a region that includes the SPRY2 domain influences EC coupling, as does the ASI/basic region, Ca2+ release during ligand- and depolarization-induced RyR1 activation were not altered by mutation of the three critical F loop residues following expression of mutant RyR1 in RyR1-null myotubes. Therefore the electrostatic regulatory interaction between the SPRY2 F loop residues (that bind to imperatoxin A) and the ASI/basic residues of RyR1 does not influence bi-directional DHPR-RyR1 signaling during skeletal EC coupling, possibly because the interaction is interrupted by the influence of factors present in intact muscle cells.
机译:位于骨骼肌ryanodine受体(RyR1)中的三个SPRY域中的第二个(SPRY2,S1085 V1208)包含在RyR1区域内,该区域影响EC偶联并结合非原毒素A,即原核素A,RyR1通道门控的毒素探针。我们检查了SPRY2中的F环(P1107 A1121)与RyR1(T3471-G3500,包含交替剪接的(ASI)残基和邻近的碱性氨基酸)中的ASI /碱性区域的结合。然后,我们研究了这种相互作用对激发收缩(EC)耦合的可能影响。具有F环序列的肽和针对SPRY2域的抗体各自在低浓度时增强RyR1活性,而在较高浓度时被抑制。在碱性残基发生突变或结构破坏后,含有与SPRY2结合并结合的ASI /碱基序列的肽降低了约10倍。结合被三个关键的酸性F环残基突变取消。这些结果在一起表明,ASI /碱性和SPRY2域在F环调节模块中相互作用。尽管包括SPRY2域的区域会影响EC耦合,如ASI /碱性区域一样,但配体和去极化诱导的RyR1激活过程中的Ca2 +释放不会因在RyR1中突变RyR1表达后三个关键F环残基的突变而改变-空的肌管。因此,SPRY2 F环残基(与抗毒素A结合)和RyR1的ASI /碱性残基之间的静电调节相互作用不会影响骨骼EC偶联过程中双向DHPR-RyR1信号传导,可能是因为该相互作用中断了该相互作用完整肌肉细胞中存在的因素

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