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Creatine kinase-dependent energy transport in sea urchin spermatozoa. Flagellar wave attenuation and theoretical analysis of high energy phosphate diffusion.

机译:海胆精子中肌酸激酶依赖的能量转运。鞭毛波衰减和高能磷酸盐扩散的理论分析。

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摘要

The significance of a phosphocreatine (PCr) shuttle in the energy transport of motile spermatozoa (Tombes, R. M., and B. M. Shapiro, 1985, Cell, 41:325-334) has been tested by a quantitative analysis of motility. Computer-assisted analysis of stroboscopic photomicrographs of live sea urchin spermatozoa whose creatine kinase has been specifically inhibited by fluorodinitrobenzene reveals that motility is impaired due to a progressive damping of bending waves as they propagate along the flagellum. This lesion, which has been defined as attenuation and can be quantified, is repaired when these spermatozoa are demembranated and reactivated to swim with ATP. The implication that attenuation is due to the inhibition of energy transport via a PCr shuttle resulting in the decrease of ATP and accumulation of inhibitory levels of ADP distally has been supported by calculating sperm PCr and ATP levels resulting from diffusion along the flagellum. The specific alterations of motility seen with creatine kinase inhibition and their reversal with ATP are as expected from the model and provide strong support for the PCr shuttle in high energy phosphate transport.
机译:磷酸肌酸(PCr)穿梭在运动精子的能量传递中的重要性(Tombes,R. M.和B. M. Shapiro,1985,Cell,41:325-334)已通过对运动性的定量分析进行了测试。计算机辅助分析活海胆精子的频闪显微镜照片,活海胆精子的肌酸激酶已被氟二硝基苯特异性抑制,这表明运动性由于弯曲波沿鞭毛的逐渐衰减而受到削弱。当这些精子去膜并重新激活以与ATP一起游泳时,可修复此病变(已定义为衰减且可以量化)。通过计算沿鞭毛扩散产生的精子PCr和ATP水平,可以证明这种衰减是由于抑制了通过PCr穿梭传输的能量导致ATP的减少和ADP抑制水平的累积所致。如模型所预期的,肌酸激酶抑制所见的运动性的特定变化及其被ATP所逆转,这为PCr穿梭在高能磷酸盐转运中提供了有力的支持。

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