Noguchi Hiroshi, Takemori Shigeru, Kajiwara Junpei, Kimura Masako, Maruyama Koscak, Kimura Sumiko
Department of Biology, Faculty of Science, Chiba University, Chiba 263-8522, Japan.
J Mol Biol. 2007 Jul 6;370(2):213-9. doi: 10.1016/j.jmb.2007.04.054. Epub 2007 May 4.
We performed cDNA cloning of chicken breast muscle connectin. Together with previous results, our analysis elucidated a 24.2 kb sequence encoding the amino terminus of the protein. This corresponded to the I-band region of the skeletal muscle sarcomere, which is involved in extension and contraction between the Z-line and the A-I junction. There were fewer middle immunoglobulin domains and amino acid residues in the PEVK segment of chicken breast muscle connectin than in human skeletal muscle connectin, but more than in human cardiac muscle connectin. We measured passive tension generation by stretching mechanically skinned myofibril bundles. This revealed that appreciable tension development in chicken breast muscle began at longer sarcomere spacings than in rabbit cardiac muscle, but at shorter spacings than in rabbit psoas and soleus muscles. We suggest that the chicken breast muscle sarcomere remains in a relatively extended state even in unstrained sarcomeres. This would explain why chicken breast muscle does not extend under force to the same degree as rabbit psoas and soleus muscles.
我们进行了鸡胸肌连接蛋白的cDNA克隆。结合先前的研究结果,我们的分析阐明了一段24.2 kb的序列,该序列编码该蛋白的氨基末端。这对应于骨骼肌肌节的I带区域,该区域参与Z线与A-I连接处之间的伸展和收缩。鸡胸肌连接蛋白的PEVK片段中的中间免疫球蛋白结构域和氨基酸残基比人类骨骼肌连接蛋白中的少,但比人类心肌连接蛋白中的多。我们通过拉伸机械去表皮的肌原纤维束来测量被动张力的产生。结果表明,鸡胸肌中明显的张力发展始于比兔心肌更长的肌节间距,但比兔腰大肌和比目鱼肌的间距短。我们认为,即使在未受拉伸的肌节中,鸡胸肌肌节也保持在相对伸展的状态。这可以解释为什么鸡胸肌在受力时不会像兔腰大肌和比目鱼肌那样伸展到相同程度。