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赖氨酸尿蛋白不耐受症小鼠模型中的骨骼发育迟缓及 IGF-1 缺乏

Delayed skeletal development and IGF-1 deficiency in a mouse model of lysinuric protein intolerance.

机构信息

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

Texas Children's Hospital, Houston, TX 77030, USA.

出版信息

Dis Model Mech. 2023 Aug 1;16(8). doi: 10.1242/dmm.050118. Epub 2023 Aug 17.

Abstract

SLC7A7 deficiency, or lysinuric protein intolerance (LPI), causes loss of function of the y+LAT1 transporter critical for efflux of arginine, lysine and ornithine in certain cells. LPI is characterized by urea cycle dysfunction, renal disease, immune dysregulation, growth failure, delayed bone age and osteoporosis. We previously reported that Slc7a7 knockout mice (C57BL/6×129/SvEv F2) recapitulate LPI phenotypes, including growth failure. Our main objective in this study was to characterize the skeletal phenotype in these mice. Compared to wild-type littermates, juvenile Slc7a7 knockout mice demonstrated 70% lower body weights, 87% lower plasma IGF-1 concentrations and delayed skeletal development. Because poor survival prevents evaluation of mature knockout mice, we generated a conditional Slc7a7 deletion in mature osteoblasts or mesenchymal cells of the osteo-chondroprogenitor lineage, but no differences in bone architecture were observed. Overall, global Slc7a7 deficiency caused growth failure with low plasma IGF-1 concentrations and delayed skeletal development, but Slc7a7 deficiency in the osteoblastic lineage was not a major contributor to these phenotypes. Future studies utilizing additional tissue-specific Slc7a7 knockout models may help dissect cell-autonomous and non-cell-autonomous mechanisms underlying phenotypes in LPI.

摘要

SLC7A7 缺乏症,或赖氨酸尿蛋白不耐受症(LPI),导致某些细胞中精氨酸、赖氨酸和鸟氨酸排出的 y+LAT1 转运体功能丧失。LPI 的特征是尿素循环功能障碍、肾脏疾病、免疫失调、生长发育迟缓、骨龄延迟和骨质疏松症。我们之前报道过 Slc7a7 基因敲除小鼠(C57BL/6×129/SvEv F2)重现了 LPI 表型,包括生长发育迟缓。我们在这项研究中的主要目标是描述这些小鼠的骨骼表型。与野生型同窝仔相比,幼年期 Slc7a7 基因敲除小鼠的体重降低了 70%,IGF-1 浓度降低了 87%,骨骼发育延迟。由于生存状况不佳,无法评估成熟型基因敲除小鼠,因此我们在成熟成骨细胞或间充质细胞中生成了条件性 Slc7a7 缺失,但未观察到骨结构的差异。总的来说,全身性 Slc7a7 缺乏导致生长发育迟缓,IGF-1 浓度降低,骨骼发育延迟,但成骨细胞谱系中的 Slc7a7 缺乏并不是这些表型的主要原因。未来利用其他组织特异性 Slc7a7 基因敲除模型的研究可能有助于解析 LPI 表型的细胞自主性和非细胞自主性机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c482/10445726/47ad47a9a4df/dmm-16-050118-g1.jpg

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