首页> 美国卫生研究院文献>Biophysical Journal >Protein diffusion in living skeletal muscle fibers: dependence on protein size fiber type and contraction.
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Protein diffusion in living skeletal muscle fibers: dependence on protein size fiber type and contraction.

机译:蛋白质在骨骼肌纤维中的扩散:取决于蛋白质大小纤维类型和收缩。

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摘要

Sarcoplasmic protein diffusion was studied under different conditions, using microinjection in combination with microspectrophotometry. Six globular proteins with molecular masses between 12 and 3700 kDa, with diameters from 3 to 30 nm, were used for the experiments. Proteins were injected into single, intact skeletal muscle fibers taken from either soleus or extensor digitorum longus (edl) muscle of adult rats. No correlation was found between sarcomere spacing and the sarcoplasmic diffusion coefficient (D) for all proteins studied. D of the smaller proteins cytochrome c (diameter 3.1 nm), myoglobin (diameter 3.5 nm), and hemoglobin (diameter 5.5 nm) amounted to only approximately 1/10 of their value in water and was not increased by auxotonic fiber contractions. D for cytochrome c and myoglobin was significantly higher in fibers from edl (mainly type II fibers) compared to fibers from soleus (mainly type I fibers). Measurements of D for myoglobin at 37 degrees C in addition to 22 degrees C led to a Q(10) of 1.46 for this temperature range. For the larger proteins catalase (diameter 10.5 nm) and ferritin (diameter 12.2 nm), a decrease in D to approximately 1/20 and approximately 1/50 of that in water was observed, whereas no diffusive flux at all of earthworm hemoglobin (diameter 30 nm) along the fiber axis could be detected. We conclude that 1) sarcoplasmic protein diffusion is strongly impaired by the presence of the myofilamental lattice, which also gives rise to differences in diffusivity between different fiber types; 2) contractions do not cause significant convection in sarcoplasm and do not lead to increased diffusional transport; and 3) in addition to the steric hindrance that slows down the diffusion of smaller proteins, diffusion of large proteins is further hindered when their dimensions approach the interfilament distances. This molecular sieve property progressively reduces intracellular diffusion of proteins when the molecular diameter increases to more than approximately 10 nm.
机译:显微注射结合显微分光光度法研究了在不同条件下肌浆蛋白的扩散。实验使用了六个分子量为12至3700 kDa,直径为3至30 nm的球状蛋白。将蛋白质注射到成年大鼠的比目鱼肌或趾长伸肌(edl)的单个完整骨骼肌纤维中。在所有研究的蛋白中,肌节间距与肌浆扩散系数(D)之间均未发现相关性。较小蛋白的细胞色素C(直径3.1 nm),肌红蛋白(直径3.5 nm)和血红蛋白(直径5.5 nm)中的D仅占其在水中的值的1/10,并且不会因声压纤维收缩而增加。与来自比目鱼的纤维(主要是I型纤维)相比,来自edl的纤维(主要为II型纤维)中细胞色素c和肌红蛋白的D显着更高。除22摄氏度外,在37摄氏度下对肌红蛋白的D测量结果得出该温度范围的Q(10)为1.46。对于较大的蛋白质过氧化氢酶(直径10.5 nm)和铁蛋白(直径12.2 nm),观察到D降低到大约1/20,大约是水中的D / 1/50,而at血红蛋白(直径)没有扩散通量可以检测到沿着光纤轴的30 nm)。我们得出的结论是:1)肌丝晶格的存在严重损害了肌浆蛋白的扩散,这也导致了不同纤维类型之间扩散系数的差异; 2)收缩不会在肌浆中引起明显的对流,也不会导致扩散运输的增加; 3)除了阻碍小蛋白质扩散的空间位阻外,当大蛋白质的尺寸接近丝间距离时,大蛋白质的扩散进一步受到阻碍。当分子直径增加到大约10 nm以上时,这种分子筛特性逐渐减少蛋白质在细胞内的扩散。

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