Unravelling the Interaction between Α-Soh and Myofibrillar Protein Based on Spectroscopy and Molecular Dynamics Simulation

30 Pages Posted: 7 Jul 2023

See all articles by Jie Zhao

Jie Zhao

Xihua University

Shuaiqian Wang

Xihua University

Diandian Jiang

Xihua University

Yan Lu

Xihua University

Yu Chen

Xihua University

Yong Tang

Xihua University

Jie Tang

Xihua University

Zhenju Jiang

Xihua University

Hongbin Lin

Xihua University

Wei Dong

Beijing Technology and Business University

Abstract

This work systematically investigated the dose–response interaction between hydroxy-α-sanshool (α-SOH) and pork myofibrillar proteins (MPs) via spectroscopy, molecular docking, and molecular dynamics simulation methods. Results showed that MPs bound with low α-SOH can enhance the surface hydrophobicity and particle size of MPs, whereas high concentrations were exactly the opposite. The main interaction force in α-SOH/MPs complex changed from hydrophobic to hydrogen bonding with increased α-SOH. α-SOH causes tryptophan quenching and bring about a red shift at low concentration, as well as to promote α-helix conversion into β-sheet in MPs. Simultaneously, molecular docking and dynamics simulations verified that hydrogen bonding and hydrophobic forces were the main contributors to α-SOH/MPs complex, indicating that the binding of α-SOH with MPs proceeded spontaneously with high intensity, in which TYR286 contributed the most significant energy. Therefore, revealing the binding mechanism of α-SOH and MPs can contribute to the deep processing of numbing meat products.

Keywords: myofibrillar proteins, Hydroxy-α-sanshool, Interaction mechanism, Spectroscopy, Molecular dynamics simulation

Suggested Citation

Zhao, Jie and Wang, Shuaiqian and Jiang, Diandian and Lu, Yan and Chen, Yu and Tang, Yong and Tang, Jie and Jiang, Zhenju and Lin, Hongbin and Dong, Wei, Unravelling the Interaction between Α-Soh and Myofibrillar Protein Based on Spectroscopy and Molecular Dynamics Simulation. Available at SSRN: https://ssrn.com/abstract=4503392 or http://dx.doi.org/10.2139/ssrn.4503392

Jie Zhao (Contact Author)

Xihua University ( email )

Chengdu, 610039
China

Shuaiqian Wang

Xihua University ( email )

Chengdu, 610039
China

Diandian Jiang

Xihua University ( email )

Chengdu, 610039
China

Yan Lu

Xihua University ( email )

Chengdu, 610039
China

Yu Chen

Xihua University ( email )

Chengdu, 610039
China

Yong Tang

Xihua University ( email )

Chengdu, 610039
China

Jie Tang

Xihua University ( email )

Chengdu, 610039
China

Zhenju Jiang

Xihua University ( email )

Chengdu, 610039
China

Hongbin Lin

Xihua University ( email )

Chengdu, 610039
China

Wei Dong

Beijing Technology and Business University ( email )

No. 11/33, Fucheng Road, Haidian District
Liangxiang
Beijing, 102488
China

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