A global Slc7a7 knockout mouse model demonstrates characteristic phenotypes of human lysinuric protein intolerance

Author:

Stroup Bridget M1ORCID,Marom Ronit12,Li Xiaohui1,Hsu Chih-Wei3,Chang Cheng-Yen4,Truong Luan D5,Dawson Brian1,Grafe Ingo16,Chen Yuqing1,Jiang Ming-Ming1,Lanza Denise1,Green Jennie Rose1,Sun Qin17,Barrish J P8,Ani Safa1,Christiansen Audrey E3,Seavitt John R1,Dickinson Mary E3,Kheradmand Farrah4,Heaney Jason D1,Lee Brendan1,Burrage Lindsay C12

Affiliation:

1. Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, TX 77030, USA

2. Texas Children’s Hospital, Houston, TX 77030, USA

3. Department of Molecular Physiology and Biophysics, Baylor College of Medicine, Houston, TX 77030, USA

4. Department of Medicine-Pulmonary, Baylor College of Medicine, Houston, TX 77030, USA

5. Department of Pathology and Genomic Medicine, Houston Methodist Hospital, Houston, TX 77030, USA

6. Division of Endocrinology, Diabetes, and Bone Diseases, Department of Medicine III, Center for Healthy Aging, University Clinic, Dresden D-01307, Germany

7. Baylor Genetics, Houston, TX 77021, USA

8. Department of Pathology, Texas Children’s Hospital, Baylor College of Medicine, Houston, TX 77030, USA

Abstract

AbstractLysinuric protein intolerance (LPI) is an inborn error of cationic amino acid (arginine, lysine, ornithine) transport caused by biallelic pathogenic variants in SLC7A7, which encodes the light subunit of the y+LAT1 transporter. Treatments for the complications of LPI, including growth failure, renal disease, pulmonary alveolar proteinosis, autoimmune disorders and osteoporosis, are limited. Given the early lethality of the only published global Slc7a7 knockout mouse model, a viable animal model to investigate global SLC7A7 deficiency is needed. Hence, we generated two mouse models with global Slc7a7 deficiency (Slc7a7em1Lbu/em1Lbu; Slc7a7Lbu/Lbu and Slc7a7em1(IMPC)Bay/em1(IMPC)Bay; Slc7a7Bay/Bay) using CRISPR/Cas9 technology by introducing a deletion of exons 3 and 4. Perinatal lethality was observed in Slc7a7Lbu/Lbu and Slc7a7Bay/Bay mice on the C57BL/6 and C57BL/6NJ inbred genetic backgrounds, respectively. We noted improved survival of Slc7a7Lbu/Lbu mice on the 129 Sv/Ev × C57BL/6 F2 background, but postnatal growth failure occurred. Consistent with human LPI, these Slc7a7Lbu/Lbu mice exhibited reduced plasma and increased urinary concentrations of the cationic amino acids. Histopathological assessment revealed loss of brush border and lipid vacuolation in the renal cortex of Slc7a7Lbu/Lbu mice, which combined with aminoaciduria suggests proximal tubular dysfunction. Micro-computed tomography of L4 vertebrae and skeletal radiographs showed delayed skeletal development and suggested decreased mineralization in Slc7a7Lbu/Lbu mice, respectively. In addition to delayed skeletal development and delayed development in the kidneys, the lungs and liver were observed based on histopathological assessment. Overall, our Slc7a7Lbu/Lbu mouse model on the F2 mixed background recapitulates multiple human LPI phenotypes and may be useful for future studies of LPI pathology.

Funder

National Institutes of Health

U.S. Public Health Service

Texas Medical Center for Digestive Disease Center

Rolanette and Berdon Lawrence Award of the Bone Disease Program of Texas

BCM Comprehensive Cancer Training Program

Developmental Disabilities Research Center

Eunice Kennedy Shriver National Institute of Child Health and Human Development

CPRIT

Publisher

Oxford University Press (OUP)

Subject

Genetics(clinical),Genetics,Molecular Biology,General Medicine

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