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首页> 外文期刊>American Journal of Physiology >Developmental changes in passive stiffness and myofilament Ca2+ sensitivity due to titin and troponin-I isoform switching are not critically triggered by birth.
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Developmental changes in passive stiffness and myofilament Ca2+ sensitivity due to titin and troponin-I isoform switching are not critically triggered by birth.

机译:出生并不是决定性地触发由肌动蛋白和肌钙蛋白-I同工型转换引起的被动刚度和肌丝Ca 2+敏感性的发育变化。

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摘要

The giant protein titin, a major contributor to myocardial mechanics, is expressed in two main cardiac isoforms: stiff N2B (3.0 MDa) and more compliant N2BA (>3.2 MDa). Fetal hearts of mice, rats, and pigs express a unique N2BA isoform ( approximately 3.7 MDa) but no N2B. Around birth the fetal N2BA titin is replaced by smaller-size N2BA isoforms and N2B, which predominates in adult hearts, stiffening their sarcomeres. Here we show that perinatal titin-isoform switching and corresponding passive stiffness (STp) changes do not occur in the hearts of guinea pig and sheep. In these species the shift toward "adult" proportions of N2B isoform is almost completed by midgestation. The relative contributions of titin and collagen to STp were estimated in force measurements on skinned cardiac muscle strips by selective titin proteolysis, leaving the collagen matrix unaffected. Titin-based STp contributed between 42% and 58% to total STp in late-fetal and adult sheep/guinea pigs and adult rats. However, only approximately 20% of total STp was titin based in late-fetal rat. Titin-borne passive tension and the proportion of titin-based STp generally scaled with the N2B isoform percentage. The titin isoform transitions were correlated to a switch in troponin-I (TnI) isoform expression. In rats, fetal slow skeletal TnI (ssTnI) was replaced by adult carciac TnI (cTnI) shortly after birth, thereby reducing the Ca2+ sensitivity of force development. In contrast, guinea pig and sheep coexpressed ssTnI and cTnI in fetal hearts, and skinned fibers from guinea pig showed almost no perinatal shift in Ca2+ sensitivity. We conclude that TnI-isoform and titin-isoform switching and corresponding functional changes during heart development are not initiated by birth but are genetically programmed, species-specific regulated events.
机译:巨大的蛋白滴定蛋白是心肌力学的主要贡献者,它以两种主要的心脏同工型表达:僵硬的N2B(3.0 MDa)和更顺应的N2BA(> 3.2 MDa)。小鼠,大鼠和猪的胎心表达独特的N2BA亚型(约3.7 MDa),但不表达N2B。胎儿出生时,胎儿的N2BA滴定蛋白被较小的N2BA亚型和N2B取代,后者在成年心脏中占主导地位,使肉瘤变硬。在这里,我们显示在豚鼠和绵羊的心脏中不会发生围产期钛异构体转换和相应的被动刚度(STp)变化。在这些物种中,N2B同工型向“成年”比例的转变几乎是在妊娠中期完成的。肌钙蛋白和胶原蛋白对STp的相对贡献是通过选择性的肌钙蛋白蛋白水解作用在皮肤上的心肌条上进行力测量来估算的,而胶原蛋白基质则不受影响。在晚期胎儿和成年绵羊/豚鼠和成年大鼠中,基于Titin的STp占总STp的42%至58%。然而,在晚期胎儿大鼠中,仅约20%的总STp是基于肌酐的。 Titin产生的被动张力和基于Titin的STp的比例通常随N2B亚型百分比而定。 titin亚型转变与肌钙蛋白-I(TnI)亚型表达的转换相关。在大鼠中,胎儿慢速骨骼肌TnI(ssTnI)在出生后不久就被成年的龋齿TnI(cTnI)取代,从而降低了Ca2 +对力量发展的敏感性。相反,豚鼠和绵羊在胎儿心脏中共表达ssTnI和cTnI,而豚鼠的皮肤纤维在围产期对Ca2 +的敏感性几乎没有变化。我们得出的结论是,心脏发育过程中TnI异构体和TITIN异构体的转换以及相应的功能变化不是由出生引起的,而是基因编程的,物种特异性的调控事件。

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