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Structural and Kinetic Effects of PAK3 Phosphorylation Mimic of cTnI(S151E) on the cTnC-cTnI Interaction in the Cardiac Thin Filament
Authors:Yexin Ouyang  Ranganath Mamidi  Murali Chandra
Affiliation:1 Voiland School of Chemical Engineering and Bioengineering, Washington State University, Pullman, WA 99164, USA
2 Department of Veterinary and Comparative Anatomy, Pharmacology, and Physiology, Washington State University, Pullman, WA 99164, USA
Abstract:Residue Ser151 of cardiac troponin I (cTnI) is known to be phosphorylated by p21-activated kinase 3 (PAK3). It has been found that PAK3-mediated phosphorylation of cTnI induces an increase in the sensitivity of myofilament to Ca2+, but the detailed mechanism is unknown. We investigated how the structural and kinetic effects mediated by pseudo-phosphorylation of cTnI (S151E) modulates Ca2+-induced activation of cardiac thin filaments. Using steady-state, time-resolved Förster resonance energy transfer (FRET) and stopped-flow kinetic measurements, we monitored Ca2+-induced changes in cTnI-cTnC interactions. Measurements were done using reconstituted thin filaments, which contained the pseudo-phosphorylated cTnI(S151E). We hypothesized that the thin filament regulation is modulated by altered cTnC-cTnI interactions due to charge modification caused by the phosphorylation of Ser151 in cTnI. Our results showed that the pseudo-phosphorylation of cTnI (S151E) sensitizes structural changes to Ca2+ by shortening the intersite distances between cTnC and cTnI. Furthermore, kinetic rates of Ca2+ dissociation-induced structural change in the regulatory region of cTnI were reduced significantly by cTnI (S151E). The aforementioned effects of pseudo-phosphorylation of cTnI were similar to those of strong crossbridges on structural changes in cTnI. Our results provide novel information on how cardiac thin filament regulation is modulated by PAK3 phosphorylation of cTnI.
Keywords:cTnC, cTnI and cTnT, cardiac troponin C, I and T   Tm, tropomyosin   PAK, p21-activated kinase   FRET, Fö  rster resonance energy transfer   NTA, nitrilotriacetic acid   Mops, 3-(N-mopholino)propanesulfonic acid   EGTA, ethylene glycol-bis-(β-aminoethyl ether)-N,N,N&prime  ,N&prime  -tetraacetic acid   BAPTA, 1,2-bis(2-aminophenoxy)ethane-N,N,N',N'-tetracetic acid   IAEDANS, 5-(iodoacetamidoethyl)aminonaphthelene-1-sulfonic acid   DDPM, N-(4-dimethylamino-3,5-dinitrophenyl)maleimide   BES, N,N-bis(2-hydroxyethyl)-2-amino-ethanesulfonic acid
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