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Stochastic cargo transport by molecular motors in molecular communication

机译:分子通信中分子电动机的随机货物运输

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This paper investigates, through computer simulations, statistical behavior of molecular motors transporting cargos on a network of protein filaments in an engineered environment. This paper also examines how molecular motors' statistical behavior is applied to building. a molecular communication system. A molecular motor, such as kinesin, is a protein complex. It exists in eukaryotic cells and functions as a nano-scale autonomous nanomachine that carries nano-scale to micro-scale signaling molecules on a network of protein filaments (i.e., cytoskeletal network) in eukaryotic cells. At an intersection of protein filaments on a cytoskeletal network, a molecular motor shows stochastic movement and may stay on the current protein filament or may switch onto an intersecting protein filament, resulting in stochastic delivery of signaling molecules from the nucleus to organelles over a cytoskeletal network. Molecular communication is an engineered system to transmit information by modulating information on molecules and by transporting modulated molecules from senders to receivers. One of promising approaches to building a molecular communication system is to use molecular motors to transport information-modulated molecules on an engineered protein filament network connecting senders and receivers. In order to examine the feasibility of this approach, this paper simulated statistical behavior of molecular motors carrying cargo molecules through multiple protein filament intersections on a protein filament network. Simulations model stochastic movement of a molecular motor at a single intersection of protein filaments using the measurement data obtained through in vitro experiments (using kinesins and microtubules) conducted by the authors of this paper and evaluates the stochastic delivery of molecules from the senders to the receivers over multiple intersections of protein filaments arranged in an array topology. Simulation results show that molecular motors stochastic- lly deliver cargo molecules to a specific receiver (or to a specific set of receivers) with a given probability over an array of protein filament intersections.
机译:本文通过计算机模拟研究了在工程环境中在蛋白质丝网络上运输货物的分子电动机的统计行为。本文还研究了分子电动机的统计行为如何应用于建筑。分子通讯系统。分子动力,例如驱动蛋白,是一种蛋白质复合物。它存在于真核细胞中,并充当纳米级自主纳米机器,其在真核细胞中的蛋白丝网络(即细胞骨架网络)上携带纳米级至微米级的信号分子。在细胞骨架网络上的蛋白丝相交处,分子运动显示出随机运动,并可能停留在当前的蛋白丝上或可能切换到相交的蛋白丝上,从而导致信号分子通过细胞骨架网络从细胞核到细胞器的随机传递。分子通信是一种经过工程设计的系统,可通过对分子上的信息进行调制并将调制后的分子从发送者传输到接收者来传输信息。建立分子通信系统的一种有前途的方法是使用分子马达在连接发送者和接收者的工程蛋白丝网络上运输信息调制的分子。为了检验此方法的可行性,本文模拟了通过蛋白质丝网络上多个蛋白质丝交叉点承载货物分子的分子马达的统计行为。使用本文作者通过体外实验(使用驱动蛋白和微管)获得的测量数据,模拟对蛋白质丝单交点处分子电动机的随机运动进行建模,并评估了分子从发送者到接收者的随机传递在排列成阵列拓扑结构的蛋白丝的多个交叉点上。仿真结果表明,分子马达将蛋白质分子以一定的概率随机性地将货物分子传递到特定的接收器(或特定的接收器集)上。

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