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At the physical limit - chemosensation in sperm

机译:在生理极限-精子中的化学传感

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摘要

Many cells probe their environment for chemical cues. Some cells respond to picomolar concentrations of neuropeptides, hormones, pheromones, or chemoattractants. At such low concentrations, cells encounter only a few molecules. The mechanistic underpinnings of single-molecule sensitivity are not known for any eukaryotic cell. Sea urchin sperm offer a unique model to unveil in quantitative terms the principles underlying chemosensation at the physical limit. Here, we discuss the mechanisms of such exquisite sensitivity and the computational operations performed by sperm during chemotactic steering. Moreover, we highlight commonalities and differences between signalling in sperm and photoreceptors and among sperm from different species.
机译:许多细胞会在环境中探测化学线索。一些细胞对皮摩尔浓度的神经肽,激素,信息素或趋化因子有反应。在如此低的浓度下,细胞仅会遇到几个分子。对于任何真核细胞,单分子敏感性的机制基础是未知的。海胆精子提供了一个独特的模型,可以定量揭示化学极限物理极限下的原理。在这里,我们讨论了这种精妙的敏感性机制和趋化操纵过程中精子执行的计算操作。此外,我们强调了精子和感光细胞之间以及不同物种的精子之间信号传递的共性和差异。

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