肌动球蛋白atp酶活性激活剂EMD57033对豚鼠颈动脉及盲带绦虫细胞膜渗透性松弛过程的影响

Q3 Medicine
Yasuyuki Naraki, Masaru Watanabe
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引用次数: 0

摘要

平滑肌收缩后的松弛被认为反映了“锁存式”缓慢循环桥的形成和变形。然而,肌动蛋白-肌球蛋白相互作用如何促进快速循环桥向慢循环桥的转移尚不清楚。已知噻二嗪酮化合物EMD57033与肌凝蛋白运动域的变构袋结合,并增加横纹肌的基础和肌动蛋白激活的肌凝蛋白atp酶活性和收缩力。因此,我们研究了EMD57033是否通过影响β-escin皮肤(细胞膜渗透)颈动脉和盲肠带绦虫的缓慢循环桥形成和/或变形来影响Ca2+去除后的松弛过程。EMD57033在≥30µM时,无论ATP是否存在,都能降低剥皮颈动脉和盲带弛豫过程中的力衰减。本研究的动力学分析表明,无论是否存在三磷酸核苷(ATP或ITP), EMD57033都能显著延长颈动脉和盲带的慢循环桥的分离时间常数τ - slow-detach。虽然EMD57033可能会改变慢循环桥的形成,导致循环速率调节和SMM对肌动蛋白的亲和力增加,但EMD57033如何调节平滑肌肌球蛋白(SMM)的结构、活性和粗丝组织,影响慢循环桥的形成和变形,还需要进一步的研究来阐明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of EMD57033, an activator of actomyosin ATPase activity, on the relaxation process of cell membrane-permeabilized carotid artery and taenia cecum from guinea pigs.

Smooth muscle relaxation after contraction is thought to reflect "latch-like" slow cycling bridge formation and deformation. However, how actin-myosin interaction contributes to the transfer from fast-cycling cross bridges to slow-cycling bridges is still unclear. The thiadiazinone compound EMD57033 is known to bind to an allosteric pocket in the myosin motor domain and to increase basal and actin-activated myosin ATPase activity and contractile force in striated muscles. Therefore, we investigated whether EMD57033 affected the relaxation process after Ca2+ removal by affecting slow cycling bridge formation and/or deformation in β-escin skinned (cell membrane-permeabilized) carotid artery and taenia cecum from guinea pigs. EMD57033 at ≥30 µM decreased the force decay during relaxation in both the skinned carotid artery and taenia cecum, irrespective of the presence of ATP. A kinetic analysis in the present study indicated that EMD57033 significantly prolonged τslow-detach, a time constant of detachment of the slow cycling bridge, in both the skinned carotid artery and taenia cecum, irrespective of the presence of nucleoside triphosphates (ATP or ITP). Further studies are necessary to elucidate how EMD57033 modulates the smooth muscle myosin (SMM) structure, SMM activity, and thick filament organization, affecting slow cycling bridge formation and deformation, although EMD57033 might change slow cycling bridge formation, resulting in both cycling rate modulation and an increase in the affinity of SMM to actin.

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来源期刊
Journal of Smooth Muscle Research
Journal of Smooth Muscle Research Biochemistry, Genetics and Molecular Biology-Physiology
CiteScore
2.30
自引率
0.00%
发文量
7
审稿时长
10 weeks
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