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An investigation of the plausibility of stochastic resonance in tubulin dimers

机译:微管蛋白二聚体中随机共振的合理性研究

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This paper considers the possibility of stochastic resonance (SR) in tubulin dimers. A formula for the signal-to-noise ratio (SNR) of tubulin as a function of temperature is derived. The effective potential experienced by a delocalized electron in such a dimer is postulated to be a symmetric bimodal well. Inter-well and intra-well motions are described by Kramers rate theory and the Langevin formalism respectively. The frequency-dependent expression for the SNR shows that the response of the electron-tubulin dimer system is enhanced by ambient dipolar oscillations in specific frequency regimes. This is a characteristic of SR. Biophysical implications of this property such as the relevance to 8.085. MHz microtubule resonance and the clocking mechanism are detailed.
机译:本文考虑了微管蛋白二聚体中随机共振(SR)的可能性。得出微管蛋白的信噪比(SNR)随温度变化的公式。假定在这样的二聚体中离域电子所经历的有效电势是对称的双峰阱。井间运动和井内运动分别由Kramers速率理论和Langevin形式主义描述。 SNR的频率相关表达式表明,电子微管蛋白二聚体系统的响应通过特定频率范围内的环境偶极振荡得到增强。这是SR的特征。此属性的生物物理影响,例如与8.085的相关性。详细介绍了MHz微管共振和时钟机制。

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