首页> 美国卫生研究院文献>The Journal of Physiology >Factors influencing the ascending limb of the sarcomere length-tension relationship in rabbit skinned muscle fibres.
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Factors influencing the ascending limb of the sarcomere length-tension relationship in rabbit skinned muscle fibres.

机译:影响兔皮肤肌纤维中肌节长度-张力关系的上升肢的因素。

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摘要

1. The length dependence of Ca2+-activated tension within the ascending limb of the length-tension relationship, corresponding to sarcomere lengths below about 2.25 micron, was investigated in skinned fibres from rabbit psoas muscle. At high [Ca2+] a shallow phase and then a steep phase of tension decline were observed as sarcomere length was reduced, while at low [Ca2+] tension decreased monotonically with decreases in sarcomere length. The sarcomere length at which the ascending limb intersected zero tension was greater for lower concentrations of Ca2+. 2. The length tension relationship from maximally activated fibres changed when filament lattice spacing was reduced by osmotic compression. Relationships obtained in the presence of 5% (w/v) dextran T500 more distinctly demonstrated both the shallow and steep portions of the ascending limb than did relationships from untreated fibres. 3. As striation spacing was decreased a progressive decline in the Ca2+ sensitivity of tension development was observed. Tension-pCa relationships from both control and dextran-treated fibres underwent a rightward shift (i.e. to a higher [Ca2+]) by 0.23 pCa units as sarcomere length was reduced between 2.46 and 1.54 microns. 4. Fibre stiffness was studied by applying a 3.3 kHz sinusoidal length change at one end of the fibre and measuring the resultant tension change. At submaximal activation (pCa 5.8), stiffness increased relative to tension as sarcomere length was decreased below approximately 2.4 microns, suggesting that there is an activation-related internal load at low [Ca2+]. At maximal activation, a significant increase in this ratio occurred only at sarcomere lengths less than approximately 1.8 microns, and presumably involved collision of the thick filaments with the Z-lines. 5. Length-dependent changes in the Ca2+ sensitivity of tension development do not appear to be the result of shortening-induced dissociation of Ca2+ from troponin-C, the Ca2+ binding subunit of troponin. Fibres activated in the absence of Ca2+, by the partial removal of whole troponin complexes, produced length-tension relationships similar to those observed in the same fibres before troponin removal at a submaximal [Ca2+] yielding similar active tensions.
机译:1.在兔腰大肌的皮肤纤维中,研究了长度-张力关系的上升肢中Ca2 +激活张力的长度依赖性,该长度对应于低于约2.25微米的肌节长度。在高[Ca2 +]时,随着肌节长度的减少,观察到一个浅阶段,然后是陡峭的张力下降;而在低[Ca2 +]时,张力随着肌节长度的减少而单调降低。对于较低浓度的Ca2 +,上升肢与零张力相交的肌节长度较大。 2.当渗透压降低细丝晶格间距时,最大活化纤维的长度张力关系发生变化。在5%(w / v)葡聚糖T500的存在下获得的关系比未处理纤维的关系更清楚地证明了上升肢体的浅部和陡峭部分。 3.随着条纹间距的减小,观察到张力发展的Ca2 +敏感性逐渐下降。由于肌节长度在2.46和1.54微米之间减小,对照纤维和右旋糖酐处理纤维的张力-pCa关系都发生了右移(即向较高的[Ca2 +]转移)0.23 pCa单位。 4.通过在纤维的一端施加3.3 kHz正弦长度变化并测量所得的张力变化,研究了纤维的刚度。在最小激活(pCa 5.8)时,刚度相对于张力增加,因为肌节长度减少到大约2.4微米以下,这表明在[Ca2 +]低时存在与激活相关的内部负荷。在最大活化下,仅当肌节长度小于约1.8微米时,该比率才会显着增加,并且可能涉及粗丝与Z线的碰撞。 5.张力发展的Ca2 +敏感性的长度依赖性变化似乎不是缩短诱导的Ca2 +从肌钙蛋白C(肌钙蛋白的Ca2 +结合亚基)解离的结果。在不存在Ca2 +的情况下,通过部分去除整个肌钙蛋白复合物而活化的纤维产生的长度-张力关系与在肌钙蛋白去除前以次最大[Ca2 +]产生相同活性张力的肌纤维相似。

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