McAuliffe J J, Gao L Z, Solaro R J
Department of Anesthesiology, University of Cincinnati, College of Medicine, Ohio 45267-0531.
Circ Res. 1990 May;66(5):1204-16. doi: 10.1161/01.res.66.5.1204.
Postnatal development of the mammalian heart is associated with changes in the population of isoforms of the thin filament proteins. We correlated the change in thin filament proteins, which occur in rabbit hearts between 5 days and 22 days of age, with changes in Ca2+ dependence of myofibrillar ATPase activity, force generation, and troponin C Ca2+ binding. The preparations derived from the 5-day-old animals exhibited a high molecular weight isoform of troponin T not found in the hearts of the 22-day-old animals. Other troponin T isoforms were also found to be present in different relative amounts. No other major differences in thin filament protein composition could be identified. Compared with the 5-day-old rabbit heart preparations, the ATPase activity of myofibrils from 22-day-old rabbit hearts exhibited a reduced Ca2+ sensitivity. The pCa50 (negative log of the half-maximal-activity free Ca2+) of the MgATPase activity was shifted by 0.15 pCa units with maturation. Maturation of the myofibrils was also associated with an increased effect of Mg2+ on pCa50. On increasing the Mg2+ from 2 to 10 mM at constant MgATP2-, the pCa50 of 5-day myofibrils was increased (shifted to the right) by 0.39 pCa units for 5-day-old rabbit hearts and 0.45 pCa units for 22-day-old rabbit hearts. Although similar changes in pCa50 of force developed by myofibrils were marginally significant, fibers from hearts of 5-day-old rabbits exhibited a greater Hill coefficient than hearts from 22-day-old rabbits (3.0 vs. 2.1). Despite the increased sensitivity of 5-day-old rabbit hearts to Ca2+, these hearts exhibited significantly less Ca2+ bound to myofibrillar troponin C than did the 22-day-old rabbit hearts. Moreover, the models that best described the Ca2+ binding data are different for the two age groups. Our data indicate that the Ca2+ activation and Ca2+ binding properties of myofibrillar troponin C are altered in developing cardiac myofibrils and that the changes in these properties may be influenced by changes in the troponin T isoforms present in the myofibril.
哺乳动物心脏的出生后发育与细肌丝蛋白同工型群体的变化相关。我们将家兔心脏在5日龄至22日龄之间发生的细肌丝蛋白变化,与肌原纤维ATP酶活性、力产生以及肌钙蛋白C钙结合的钙依赖性变化进行了关联。来自5日龄动物的标本显示出一种在22日龄动物心脏中未发现的高分子量肌钙蛋白T同工型。还发现其他肌钙蛋白T同工型以不同的相对量存在。未发现细肌丝蛋白组成的其他主要差异。与5日龄家兔心脏标本相比,22日龄家兔心脏肌原纤维的ATP酶活性表现出对钙的敏感性降低。随着成熟,MgATP酶活性的pCa50(半最大活性游离钙的负对数)移动了0.15个pCa单位。肌原纤维的成熟还与镁对pCa50的影响增加有关。在MgATP2-恒定的情况下,将镁从2 mM增加到10 mM时,5日龄家兔心脏的5日龄肌原纤维的pCa50增加(向右移动)0.39个pCa单位,22日龄家兔心脏的增加0.45个pCa单位。尽管肌原纤维产生的力的pCa50有类似变化,但差异不显著,5日龄家兔心脏的纤维比22日龄家兔心脏的纤维表现出更大的希尔系数(3.0对2.1)。尽管5日龄家兔心脏对钙的敏感性增加,但这些心脏与22日龄家兔心脏相比,与肌原纤维肌钙蛋白C结合的钙明显更少。此外,最能描述钙结合数据的模型在两个年龄组中是不同的。我们的数据表明,在发育中的心肌原纤维中,肌原纤维肌钙蛋白C的钙激活和钙结合特性发生了改变,并且这些特性的变化可能受到肌原纤维中存在的肌钙蛋白T同工型变化的影响。