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TITINS - GIANT PROTEINS IN CHARGE OF MUSCLE ULTRASTRUCTURE AND ELASTICITY

机译:肌腱超弹性和弹性的大蛋白

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In addition to thick and thin filaments, vertebrate striated muscle contains a third filament system formed by the giant protein titin. Single titin molecules extend from Z discs to M lines and are longer than 1 micrometer. The titin filament contributes to muscle assembly and resting tension, but more details are not known because of the large size of the protein. The complete complementary DNA sequence of human cardiac titin was determined. The 82-kilobase complementary DNA predicts a 3-megadalton protein composed of 244 copies of immunoglobulin and fibronectin type III (FN3) domains. The architecture of sequences in the A band region of titin suggests why thick filament structure is conserved among vertebrates. In the I band region, comparison of titin sequences from muscles of different passive tension identifies two elements that correlate with tissue stiffness. This suggests that titin may act as two springs in series. The differential expression of the springs provides a molecular explanation for the diversity of sarcomere length and resting tension in vertebrate striated muscles.
机译:除了细丝和细丝外,脊椎动物的横纹肌还包含由巨大蛋白滴定蛋白形成的第三个细丝系统。单面体分子从Z盘延伸到M线,长度超过1微米。肌动蛋白丝有助于肌肉的聚集和静息张力,但由于该蛋白的尺寸较大,因此尚不清楚更多细节。确定了人心脏titin的完整互补DNA序列。 82碱基对的互补DNA可以预测一个3兆道尔顿的蛋白质,该蛋白质由244个免疫球蛋白和III型纤连蛋白(FN3)域组成。 titin的A带区域中的序列结构表明,为什么脊椎动物中粗丝结构得以保留。在I带区域,比较来自不同被动张力的肌肉的肌动蛋白序列可确定与组织刚度相关的两个元素。这表明,titin可能充当两个串联的弹簧。弹簧的差异表达为脊椎动物横纹肌中肌节长度和静息张力的多样性提供了分子解释。

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