Two Mathematical Approaches to Inferring the Internal Structure of Proteins from their Shape

Naoto Morikawa
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Abstract

sing a simple mathematical model, we propose two approaches to externally infer how the amino-acid sequence is folded in a protein. One is the previously proposed differential geometric approach. The other is a new category theoretical approach proposed in this paper. As an example, we consider detecting the presence of internal singularities from the outside. Knowledge of Category theory is not required. Proteins are represented as a loop of triangles. In both approaches, the outer contour of the loop is examined to detect the presence of singular triangles (such as isolated triangles) inside. By considering the interaction between loops, the new approach allows us to detect more singular triangles than the previous approach. We hope that this research will provide a new perspective on protein structure analysis and promote further collaboration between mathematics and biology.
从形状推断蛋白质内部结构的两种数学方法
通过一个简单的数学模型,我们提出了两种从外部推断氨基酸序列如何在蛋白质中折叠的方法。一种是先前提出的微分几何方法。另一种是本文提出的新的范畴理论方法。作为一个例子,我们考虑从外部检测内部奇点的存在。不需要范畴论的知识。蛋白质被表示为一个三角形的环。在这两种方法中,检查环路的外轮廓以检测内部是否存在奇异三角形(如孤立三角形)。通过考虑循环之间的相互作用,新方法使我们能够比以前的方法检测到更多的奇异三角形。我们希望这项研究能为蛋白质结构分析提供一个新的视角,并促进数学与生物学的进一步合作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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