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使用自动采样装置加速对生物钟系统的研究。

Accelerating studies on circadian clock systems using an automated sampling device.

作者信息

Furuike Yoshihiko, Abe Jun, Mukaiyama Atsushi, Akiyama Shuji

机构信息

Research Center of Integrative Molecular Systems, Institute for Molecular Science, NINS, Aichi 444-8585, Japan; Department of Functional Molecular Science, SOKENDAI (The Graduate University for Advanced Studies), Aichi 444-8585, Japan.

Research Center of Integrative Molecular Systems, Institute for Molecular Science, NINS, Aichi 444-8585, Japan.

出版信息

Biophys Physicobiol. 2016 Oct 26;13:235-241. doi: 10.2142/biophysico.13.0_235. eCollection 2016.

Abstract

KaiC, a core protein of the cyanobacterial circadian clock, is rhythmically autophosphorylated and autodephosphorylated with a period of approximately 24 h in the presence of two other Kai proteins, KaiA and KaiB. experiments to investigate the KaiC phosphorylation cycle consume considerable time and effort. To automate the fractionation, quantification, and evaluation steps, we developed a suite consisting of an automated sampling device equipped with an 8-channel temperature controller and accompanying analysis software. Eight sample tables can be controlled independently at different temperatures within a fluctuation of ±0.01°C, enabling investigation of the temperature dependency of clock activities simultaneously in a single experiment. The suite includes an independent software that helps users intuitively conduct a densitometric analysis of gel images in a short time with improved reliability. Multiple lanes on a gel can be detected quasi-automatically through an auto-detection procedure implemented in the software, with or without correction for lane 'smiling.' To demonstrate the performance of the suite, robustness of the period against temperature variations was evaluated using 32 datasets of the KaiC phosphorylation cycle. By using the software, the time required for the analysis was reduced by approximately 65% relative to the conventional method, with reasonable reproducibility and quality. The suite is potentially applicable to other clock or clock-related systems in higher organisms, relieving users from having to repeat multiple manual sampling and analytical steps.

摘要

KaiC是蓝藻生物钟的核心蛋白,在另外两种Kai蛋白KaiA和KaiB存在的情况下,它会以大约24小时的周期进行有节律的自磷酸化和自去磷酸化。研究KaiC磷酸化循环的实验需要耗费大量的时间和精力。为了实现分级分离、定量和评估步骤的自动化,我们开发了一套设备,包括一个配备8通道温度控制器的自动采样装置以及配套的分析软件。八个样品台可以在±0.01°C的波动范围内独立控制在不同温度下,从而能够在单个实验中同时研究生物钟活动的温度依赖性。该套件包括一个独立的软件,可帮助用户在短时间内直观地对凝胶图像进行光密度分析,且可靠性更高。软件中实施的自动检测程序可以半自动检测凝胶上的多个泳道,无论是否对泳道“微笑”进行校正。为了展示该套件的性能,我们使用32个KaiC磷酸化循环数据集评估了周期对温度变化的稳健性。通过使用该软件,分析所需的时间相对于传统方法减少了约65%,具有合理的重现性和质量。该套件可能适用于高等生物中的其他生物钟或与生物钟相关的系统,使用户无需重复多个手动采样和分析步骤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/662c/5113610/be142aa98d10/13_235f1.jpg

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