Threonine dehydrogenase regulates neutrophil homeostasis but not H3K4me3 levels in zebrafish

Author:

Li Ning‐Zhe1,Wang Zi‐Xuan1,Zhang Fan1,Feng Chang‐Zhou12,Chen Yi1,Liu Dian‐Jia1,Chen Shu‐Bei1,Jin Yi1,Zhang Yuan‐Liang1,Xie Yin‐Yin1,Huang Qiu‐Hua1,Wang Lan3,Li Bing4ORCID,Sun Xiao‐Jian1ORCID

Affiliation:

1. Shanghai Institute of Hematology, State Key Laboratory of Omics and Diseases, National Research Center for Translational Medicine at Shanghai, Ruijin Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, and School of Life Sciences & Biotechnology Shanghai Jiao Tong University China

2. Department of Clinical Laboratory, The Affiliated Lianyungang Hospital of Xuzhou Medical University The First People's Hospital of Lianyungang Jiangsu China

3. CAS Key Laboratory of Tissue Microenvironment and Tumor, Shanghai Institute of Nutrition and Health, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences University of Chinese Academy of Sciences Shanghai China

4. Department of Biochemistry and Molecular Cell Biology, Key Laboratory of Cell Differentiation and Apoptosis of Chinese Ministry of Education, Shanghai Key Laboratory for Tumor Microenvironment and Inflammation Shanghai Jiao Tong University School of Medicine China

Abstract

l‐threonine dehydrogenase (Tdh) is an enzyme that links threonine metabolism to epigenetic modifications and mitochondria biogenesis. In vitro studies show that it is critical for the regulation of trimethylation of histone H3 lysine 4 (H3K4me3) levels and cell fate determination of mouse embryonic stem cells (mESCs). However, whether Tdh regulates a developmental process in vivo and, if it does, whether it also primarily regulates H3K4me3 levels in this process as it does in mESCs, remains elusive. Here, we revealed that, in zebrafish hematopoiesis, tdh is preferentially expressed in neutrophils. Knockout of tdh causes a decrease in neutrophil number and slightly suppresses their acute injury‐induced migration, but, unlike the mESCs, the level of H3K4me3 is not evidently reduced in neutrophils sorted from the kidney marrow of adult tdh‐null zebrafish. These phenotypes are dependent on the enzymatic activity of Tdh. Importantly, a soluble supplement of nutrients that are able to fuel the acetyl‐CoA pool, such as pyruvate, glucose and branched‐chain amino acids, is sufficient to rescue the reduction in neutrophils caused by tdh deletion. In summary, our study presents evidence for the functional requirement of Tdh‐mediated threonine metabolism in a developmental process in vivo. It also provides an animal model for investigating the nutritional regulation of myelopoiesis and immune response, as well as a useful tool for high‐throughput drug/nutrition screening.

Funder

Samuel Waxman Cancer Research Foundation

National Natural Science Foundation of China

Publisher

Wiley

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