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成熟快肌骨骼肌中的酸性和碱性肌钙蛋白T同工型及其对收缩性的影响。

Acidic and basic troponin T isoforms in mature fast-twitch skeletal muscle and effect on contractility.

作者信息

Ogut O, Granzier H, Jin J P

机构信息

Department of Physiology and Biophysics, Case Western Reserve University School of Medicine, Cleveland, Ohio 44106-4970, USA.

出版信息

Am J Physiol. 1999 May;276(5):C1162-70. doi: 10.1152/ajpcell.1999.276.5.C1162.

Abstract

Developmentally regulated alternative RNA splicing generates distinct classes of acidic and basic troponin T (TnT) isoforms. In fast-twitch skeletal muscles, an acidic-to-basic TnT isoform switch ensures basic isoform expression in the adult. As an exception, an acidic segment in the NH2-terminal variable region of adult chicken breast muscle TnT isoforms is responsible for the unique exclusive expression of acidic TnTs in this muscle (O. Ogut and J.-P. Jin. J. Biol. Chem. 273: 27858-27866, 1998). To understand the relationship between acidic vs. basic TnT isoform expression and muscle contraction, the contractile properties of fibers from adult chicken breast muscle were compared with those of the levator coccygeus muscle, which expresses solely basic TnT isoforms. With use of Triton X-100-skinned muscle fibers, the force and stiffness responses to Ca2+ were measured. Relative to the levator coccygeus muscle, the breast muscle fibers showed significantly increased sensitivity to Ca2+ of force and stiffness with a shift of approximately 0.15 in the pCa at which force or stiffness was 50% of maximal. The expression of tropomyosin, troponin I, and troponin C isoforms was also determined to delineate their contribution to thin-filament regulation. The data indicate that TnT isoforms differing in their NH2-terminal charge are able to alter the sensitivity of the myofibrillar contractile apparatus to Ca2+. These results provide evidence linking the regulated expression of distinct acidic and basic TnT isoform classes to the contractility of striated muscle.

摘要

发育调控的可变RNA剪接产生了不同类型的酸性和碱性肌钙蛋白T(TnT)异构体。在快肌骨骼肌中,酸性到碱性的TnT异构体转换确保了成体中碱性异构体的表达。作为一个例外,成年鸡胸肌TnT异构体NH2末端可变区域中的一个酸性片段导致了该肌肉中酸性TnT的独特排他性表达(O. Ogut和J.-P. Jin。《生物化学杂志》273: 27858 - 27866,1998)。为了理解酸性与碱性TnT异构体表达与肌肉收缩之间的关系,将成年鸡胸肌纤维的收缩特性与仅表达碱性TnT异构体的尾骨提肌的收缩特性进行了比较。使用Triton X - 100透皮肌纤维,测量了对Ca2+的力和刚度响应。相对于尾骨提肌,胸肌纤维对Ca2+的力和刚度敏感性显著增加,在力或刚度为最大值的50%时,pCa的变化约为0.15。还测定了原肌球蛋白、肌钙蛋白I和肌钙蛋白C异构体的表达,以描述它们对细肌丝调节的贡献。数据表明,NH2末端电荷不同的TnT异构体能够改变肌原纤维收缩装置对Ca2+的敏感性。这些结果提供了证据,将不同酸性和碱性TnT异构体类别的调控表达与横纹肌的收缩性联系起来。

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