High glycine content in TDP-43: a potential culprit in limbic-predominant age-related TDP-43 encephalopathy

Author:

An Shanshan1,Zhang Xiaoxiao2,Shi Yunfan1,Zhang Jiaming3,Wan Yulin1,Wang Yuchuan4,Zhang Ying5,Liu Qiuyun1ORCID

Affiliation:

1. State Key Laboratory of Biocontrol, Biomedical Center, School of Life Sciences, Sun Yat-sen University, Guangzhou, China

2. Yunnan Key Laboratory of Stem Cell and Regenerative Medicine, Biomedical Engineering Research Center, Kunming Medical University, Kunming, China

3. School of Chemistry, Sun Yat-sen University, Guangzhou, China

4. Center for Synthetic Biology Engineering Research, Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences, Shenzhen, Guangdong, China

5. Guangzhou Center for Disease Control and Prevention, Guangzhou, China

Abstract

Numerous risk factors for heart disease or dementia harbor over 10% valine plus glycine content. Interestingly, TDP-43 contains 6.0% valine and 13.3% glycine, and the buildup of this protein in the brains of patients with limbic-predominant age-related TDP-43 encephalopathy has dire consequences. The two γ-methyl groups in valine enable hyperconjugation, which enhances the van der Waals interaction between its side group and the carbonyl carbon. This extends the C=O bond length, and this weakened C=O bond augments the secondary chemical bonding of the carbonyl oxygen atom to cations. This, in turn, promotes the formation and buildup of insoluble and rigid salts such as calcium oxalate, which is postulated to be a major cause of heart disease. Similarly, the long C=O bond length in glycine results in a weakened C=O bond with an enhanced affinity toward cations and the formation of insoluble salts. Further, several prion proteins possess a high glycine content of approximately 20%. The insoluble calcium salts produced may promote aggregate formation via secondary chemical bonding between calcium and glycine, as well as between calcium and valine. Chemical and biochemical insights will help us to better understand the etiology of disorders linked to protein aggregates.

Funder

Science and Technology Transformation Program of Sun Yat-sen University of China

Guangzhou Science and Technology Program key projects

Publisher

SAGE Publications

Subject

Biochemistry, medical,Cell Biology,Biochemistry,General Medicine

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