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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, S-1085-V-1208) 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 (P-1107-A(1121)) in SPRY2 to the ASI/basic region in RyR1 (T-3471-G(3500), 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 similar to 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,S-1085-V-1208)包含在RyR1区域内,该区域影响EC偶联并结合抗黑素毒素A,即RyR1通道门控的毒素探针imperatoxin A 。我们检查了SPRY2中的F环(P-1107-A(1121))与RyR1(T-3471-G(3500))中的ASI /碱性区域的结合,其中既包含可变剪接的(ASI)残基,又包含相邻的碱性氨基酸)。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。含有与SPRY2结合并结合的ASI /碱性序列的肽在碱性残基突变或结构破坏后下降了10倍。结合被三个关键的酸性F环残基突变取消。这些结果共同表明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表达而导致的三个关键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)与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,可能是因为相互作用被这种影响打断了完整肌细胞中存在的因素

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