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在生物过程中竞争分子机制的选择中需要与物理定律和逻辑保持一致:以 ATP 合成为例建模。

The Need for Consistency with Physical Laws and Logic in Choosing Between Competing Molecular Mechanisms in Biological Processes: A Case Study in Modeling ATP Synthesis.

机构信息

Department of Biochemical Engineering and Biotechnology, Indian Institute of Technology Delhi, New Delhi 110016, India.

出版信息

Function (Oxf). 2022 Oct 14;3(6):zqac054. doi: 10.1093/function/zqac054. eCollection 2022.

DOI:10.1093/function/zqac054
PMID:36340246
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9629475/
Abstract

Traditionally, proposed molecular mechanisms of fundamental biological processes have been tested against experiment. However, owing to a plethora of reasons-difficulty in designing, carrying out, and interpreting key experiments, use of different experimental models and systems, conduct of studies under widely varying experimental conditions, fineness in distinctions between competing mechanisms, complexity of the scientific issues, and the resistance of some scientists to discoveries that are contrary to popularly held beliefs-this has not solved the problem despite decades of work in the field/s. The author would like to prescribe an alternative way: that of testing competing models/mechanisms for their adherence to scientific laws and principles, and checking for errors in logic. Such tests are fairly commonly carried out in the mathematics, physics, and engineering literature. Further, reported experimental measurements should not be smaller than minimum detectable values for the measurement technique employed and should truly reflect function of the actual system without inapplicable extrapolation. Progress in the biological fields would be greatly accelerated, and considerable scientific acrimony avoided by adopting this approach. Some examples from the fundamental field of ATP synthesis in oxidative phosphorylation (OXPHOS) have been reviewed that also serve to illustrate the approach. The approach has never let the author down in his 35-yr-long experience on biological mechanisms. This change in thinking should lead to a considerable saving of both time and resources, help channel research efforts toward solution of the right problems, and hopefully provide new vistas to a younger generation of open-minded biological scientists.

摘要

传统上,基本生物过程的提出的分子机制已经通过实验进行了检验。然而,由于诸多原因——设计、进行和解释关键实验的难度、使用不同的实验模型和系统、在广泛变化的实验条件下进行研究、在竞争机制之间进行精细区分、科学问题的复杂性以及一些科学家对与普遍持有的信念相矛盾的发现的抵制——尽管该领域已经进行了几十年的工作,但这并没有解决问题。作者想规定一种替代方法:检验竞争模型/机制是否符合科学定律和原则,并检查逻辑错误。这种测试在数学、物理和工程文献中相当常见。此外,报告的实验测量值不应小于所使用测量技术的最小可检测值,并且应该真实反映实际系统的功能,而不会进行不适用的外推。通过采用这种方法,生物学领域的进展将大大加快,并且可以避免大量的科学争议。从氧化磷酸化(OXPHOS)的基本 ATP 合成领域回顾了一些示例,这些示例也说明了这种方法。这种方法在作者 35 年的生物学机制研究经验中从未让他失望过。这种思维方式的转变应该会节省大量的时间和资源,帮助研究工作集中在解决正确的问题上,并为年轻一代思想开放的生物科学家提供新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35d1/9629475/fbfc9e404ed2/zqac054fig3.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35d1/9629475/d3ca29ffb4f6/zqac054fig1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35d1/9629475/ed4f1c27d6a6/zqac054fig2.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35d1/9629475/fbfc9e404ed2/zqac054fig3.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35d1/9629475/d3ca29ffb4f6/zqac054fig1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35d1/9629475/ed4f1c27d6a6/zqac054fig2.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35d1/9629475/fbfc9e404ed2/zqac054fig3.jpg

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