New K50R mutant mouse models reveal impaired hypusination of eif5a2 with alterations in cell metabolite landscape

Author:

Schultz Chad R.1,Sheldon Ryan D.2,Xie Huirong3,Demireva Elena Y.3,Uhl Katie L.1,Agnew Dalen W.4,Geerts Dirk5ORCID,Bachmann André S.1ORCID

Affiliation:

1. College of Human Medicine, Michigan State University 1 Department of Pediatrics and Human Development , , Grand Rapids, MI 49503 , USA

2. Core Technologies and Services, Mass Spectrometry Core, Van Andel Institute 2 , Grand Rapids, MI 49503 , USA

3. Transgenic and Genome Editing Facility, Institute for Quantitative Health Science and Engineering, Research Technology Support Facility, Michigan State University 3 , East Lansing, MI 48824 , USA

4. College of Veterinary Medicine, Michigan State University 4 Department of Pathobiology & Diagnostic Investigation , , East Lansing, MI 48824 , USA

5. Amsterdam University Medical Center, Location VUMC 5 Department of Hematology , , 1081 HV Amsterdam , The Netherlands

Abstract

ABSTRACT The eukaryotic translation initiation factor 5A1 (eIF5A1) and 5A2 (eIF5A2) are important proteins in a variety of physiological and pathophysiological processes and their function has been linked to neurodevelopmental disorders, cancer, and viral infections. Here, we report two new genome-edited mouse models, generated using a CRISPR-Cas9 approach, in which the amino acid residue lysine 50 is replaced with arginine 50 (K50R) in eIF5A1 or in the closely related eIF5A2 protein. This mutation prevents the spermidine-dependent post-translational formation of hypusine, a unique lysine derivative that is necessary for activation of eIF5A1 and eIF5A2. Mouse brain lysates from homozygous eif5a2-K50R mutant mice (eif5a2K50R/K50R) confirmed the absence of hypusine formation of eIF5A2, and metabolomic analysis of primary mouse dermal fibroblasts revealed significant alterations in the metabolite landscape compared to controls including increased levels of tryptophan, kyrunenine, pyridoxine, nicotinamide adenine dinucleotide, riboflavin, flavin adenine dinucleotide, pantothenate, and coenzyme A. Further supported by new publicly available bioinformatics data, these new mouse models represent excellent in vivo models to study hypusine-dependent biological processes, hypusination-related disorders caused by eIF5A1 and eIF5A2 gene aberrations or mRNA expression dysregulation, as well as several major human cancer types and potential therapies.

Funder

Spectrum Health-Michigan State University Alliance Corporation

Michigan State University

Publisher

The Company of Biologists

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology

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