SLC38A2 provides proline to fulfill unique synthetic demands arising during osteoblast differentiation and bone formation

Author:

Shen Leyao12ORCID,Yu Yilin2,Zhou Yunji3,Pruett-Miller Shondra M4ORCID,Zhang Guo-Fang56,Karner Courtney M127ORCID

Affiliation:

1. Department of Orthopaedic Surgery, Duke University School of Medicine

2. Department of Internal Medicine, University of Texas Southwestern Medical Center

3. Department of Biostatistics and Bioinformatics, Duke University School of Medicine

4. Department of Cell and Molecular Biology, St. Jude Children’s Research Hospital

5. Sarah W. Stedman Nutrition and Metabolism Center & Duke Molecular Physiology Institute, Duke University Medical Center

6. Department of Medicine, Duke University School of Medicine

7. Charles and Jane Pak Center for Mineral Metabolism and Clinical Research, University of Texas Southwestern Medical Center at Dallas

Abstract

Cellular differentiation is associated with the acquisition of a unique protein signature that is essential to attain the ultimate cellular function and activity of the differentiated cell. This is predicted to result in unique biosynthetic demands that arise during differentiation. Using a bioinformatic approach, we discovered that osteoblast differentiation is associated with increased demand for the amino acid proline. When compared to other differentiated cells, osteoblast-associated proteins, including RUNX2, OSX, OCN, and COL1A1, are significantly enriched in proline. Using a genetic and metabolomic approach, we demonstrate that the neutral amino acid transporter SLC38A2 acts cell-autonomously to provide proline to facilitate the efficient synthesis of proline-rich osteoblast proteins. Genetic ablation of SLC38A2 in osteoblasts limits both osteoblast differentiation and bone formation in mice. Mechanistically, proline is primarily incorporated into nascent protein with little metabolism observed. Collectively, these data highlight a requirement for proline in fulfilling the unique biosynthetic requirements that arise during osteoblast differentiation and bone formation.

Funder

National Institute of Arthritis and Musculoskeletal and Skin Diseases

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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