TY - JOUR
T1 - Troponin I inhibitory peptide suppresses the force generation in smooth muscle by directly interfering with cross-bridge formation
AU - Watanabe, Masaru
AU - Yoshino, Yasumasa
AU - Morimoto, Sachio
PY - 2003/7/25
Y1 - 2003/7/25
N2 - To explore possible mechanisms involving the thin filament-linked regulation of contraction in living smooth muscles, we studied the effects of a synthetic peptide of rabbit cardiac troponin I [residues 136-147] (TnIp), which is a minimal sequence required to inhibit striated muscle acto-tropomyosin-myosin ATPase activity, on the mechanical properties of β-escin skinned preparations of taenia caeci from guinea pig. TnIp reversibly suppressed the Ca2+-activated force without significant effects on the Ca2+ sensitivity and on the phosphorylation level of myosin regulatory light chain (MLC20). TnIp also reversibly suppressed the Ca2+/calmodulin-independent contraction induced by 30mM Mg2+. An analogue of TnIp, which lost inhibiting action on acto-tropomyosin-myosin ATPase activity, affected neither Ca2+-activated nor 30mM Mg2+-induced contraction. These results indicate that TnIp suppresses the force generation in smooth muscle by directly interfering with cross-bridge formation rather than inhibiting the Ca2+/calmodulin-dependent thick and thin filament activating processes.
AB - To explore possible mechanisms involving the thin filament-linked regulation of contraction in living smooth muscles, we studied the effects of a synthetic peptide of rabbit cardiac troponin I [residues 136-147] (TnIp), which is a minimal sequence required to inhibit striated muscle acto-tropomyosin-myosin ATPase activity, on the mechanical properties of β-escin skinned preparations of taenia caeci from guinea pig. TnIp reversibly suppressed the Ca2+-activated force without significant effects on the Ca2+ sensitivity and on the phosphorylation level of myosin regulatory light chain (MLC20). TnIp also reversibly suppressed the Ca2+/calmodulin-independent contraction induced by 30mM Mg2+. An analogue of TnIp, which lost inhibiting action on acto-tropomyosin-myosin ATPase activity, affected neither Ca2+-activated nor 30mM Mg2+-induced contraction. These results indicate that TnIp suppresses the force generation in smooth muscle by directly interfering with cross-bridge formation rather than inhibiting the Ca2+/calmodulin-dependent thick and thin filament activating processes.
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U2 - 10.1016/S0006-291X(03)01170-7
DO - 10.1016/S0006-291X(03)01170-7
M3 - Article
C2 - 12859945
AN - SCOPUS:0038352067
SN - 0006-291X
VL - 307
SP - 236
EP - 240
JO - Biochemical and Biophysical Research Communications
JF - Biochemical and Biophysical Research Communications
IS - 2
ER -