Myofibrillar Proteins’ Intermolecular Interaction Weakening and Degradation: Are They Mainly Responsible for the Tenderization of Meat Containing L-Arginine, L-Lysine, Or/And Nacl?

28 Pages Posted: 11 Oct 2023

See all articles by Xiaokang Fan

Xiaokang Fan

Hefei University of Technology

Xun Gao

Hefei University of Technology

Rui Li

Hefei University of Technology

Dongmei Pan

Hefei University of Technology

Cunliu Zhou

Hefei University of Technology

Abstract

This study explored the effects of l-arginine, l-lysine, and NaCl alone and in combination on the tenderness of porcine meat. Arg, Lys, and NaCl alone improved the tenderness, decreased the cooking loss, and increased the myofibrillar fragmentation index (MFI) of porcine meat; Both Arg and Lys cooperated with NaCl to better achieve this effect. Furthermore, Arg/Lys collaborated with NaCl to increase muscle fiber swelling and moisture content of the meat and promoted the extraction of main myofibrillar proteins. FT-IR revealed that Arg, Lys, or NaCl alone or in combination caused changes in protein–water interactions. Western blotting revealed varying degrees of meat protein degradation in all cases, but the results did not well coincide with those of shear force and the MFI. Therefore, the weakening of intermolecular forces between myofibrillar proteins was considered the main reason for meat tenderization under the present study conditions.

Keywords: Keywords: Tenderness, intermolecular interaction, Protein degradation, myofibrillar proteins

Suggested Citation

Fan, Xiaokang and Gao, Xun and Li, Rui and Pan, Dongmei and Zhou, Cunliu, Myofibrillar Proteins’ Intermolecular Interaction Weakening and Degradation: Are They Mainly Responsible for the Tenderization of Meat Containing L-Arginine, L-Lysine, Or/And Nacl?. Available at SSRN: https://ssrn.com/abstract=4599461 or http://dx.doi.org/10.2139/ssrn.4599461

Xiaokang Fan

Hefei University of Technology ( email )

193 Tunxi Rd
Baohe
Hefei
China

Xun Gao

Hefei University of Technology ( email )

193 Tunxi Rd
Baohe
Hefei
China

Rui Li

Hefei University of Technology ( email )

193 Tunxi Rd
Baohe
Hefei
China

Dongmei Pan

Hefei University of Technology ( email )

193 Tunxi Rd
Baohe
Hefei
China

Cunliu Zhou (Contact Author)

Hefei University of Technology ( email )

193 Tunxi Rd
Baohe
Hefei
China

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