| Literature DB >> 31096686 |
Chuncheng Liu1,2,3, Lei Li4,5, Mengxu Ge6,7, Lijie Gu8,9, Meng Wang10,11, Kuo Zhang12,13, Yang Su14,15, Yuying Zhang16,17, Chang Liu1,2, Miaomiao Lan18,19, Yingying Yu20,21, Tongtong Wang22,23, Qiuyan Li24, Yaofeng Zhao25, Zhengquan Yu26,27, Ning Li28, Qingyong Meng29,30.
Abstract
Ullrich congenital muscular dystrophy (UCMD) bring heavy burden to patients' families and society. Because the incidence of this disease is very low, studies in patients are extremely limited. Animal models of this disease are indispensable. UCMD belongs to extracellular matrix-related diseases. However, the disease models constructed by knocking out some pathogenic genes of human, such as the Col6a1, Col6a2, or Col6a3 gene, of mice could not mimic UCMD. The purpose of this study is to construct a mouse model which can resemble the pathology of UCMD. miR-29 is closely related to extracellular matrix deposition of tissues and organs. To address this issue, we developed a mouse model for overexpression miR-29 using Tet-on system. In the muscle-specific miR-29ab1 cluster transgenic mice model, we found that mice exhibited dyskinesia, dyspnea, and spinal anomaly. The skeletal muscle was damaged and regenerated. At the same time, we clarify the molecular mechanism of the role of miR-29 in this process. Different from human, Col4a1 and Col4a2, target genes of miR-29, are the key pathogenic genes associating with these phenotypes. This mouse model simulates the human clinical and pathological characteristics of UCMD patients and is helpful for the subsequent research and treatment of UCMD.Entities:
Keywords: UCMD; collagen; disease model; dysplasia; miR-29
Mesh:
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Year: 2019 PMID: 31096686 PMCID: PMC6562860 DOI: 10.3390/cells8050459
Source DB: PubMed Journal: Cells ISSN: 2073-4409 Impact factor: 6.600
Figure 1Overexpression of the miR-29a,b1 cluster leads to skeletal muscle dysplasia in juvenile mice. (A) Q-PCR analysis of miR-29a, b showing that miR-29a and miR-29b were induced in the tibialis anterior. The dual transgenic (dTG) mice were treated with Dox at P28 (28 day of postnatal development). The tibialis anterior were collected at P35. **, p < 0.01. The values represent the mean ± SEM (n = 3). (B,C) Measurement of miR-29a, b in the tibialis anterior muscles in mice at different ages. d, day(s); m, month(s). (D) Size comparison of 30-day-old control and dTG mice. (E) Body weight quantification over time; n = 10 for 7 days, n = 6 for other timepoints. **, p < 0.01. (F,G) Representative photograph of the dTG mice crawling and turning over. (H) Comparison of tibialis anterior muscles and gastrocnemius muscles between control and dTG mice. (I) Number of surviving control and dTG mice over time. n = 20 for control mice, n = 17 for dTG mice.
Figure 2Diaphragm and skeleton of dTG mice display anomalies. (A) H&E staining of diaphragm muscles. Scale bars: 50 μm. (B) Immunofluorescence detection of Laminin expression in diaphragm muscles (green represents Laminin), scale bars: 50 μm. (C) X-ray photograph of the control and dTG mice.
Figure 3High miR-29 expression in juvenile mice induces skeletal muscle injury. (A) Quantification of tibialis anterior (TA) and gastrocnemius (GA) muscles weight at 30 days (n = 5). *, p < 0.05; **, p < 0.01. (B) Detection of myofibers damage in individual whole-body muscle following i.p. injection of 1% EBD 24 h prior to sampling. Comparison of tibialis anterior muscles between control and moderate dTG mice. And immunofluorescence analyses of EBD in the tibialis anterior muscles squash slide between the control and moderate mice. (C) H&E staining of tibialis anterior muscles. (D) Quantification of the rate for central nuclear myofibers. **, p < 0.01. (E) Immunofluorescence analyses of Pax7 (red) and collagen IV (green) in tibialis anterior muscles of control and dTG mice. Scale bars: 50 μm. (F) Expression analysis of Pax7. GAPDH was used as an internal normalized reference. The values represent the mean ± SEM (n = 3). *, p < 0.05; **, p < 0.01. (G) Immunofluorescence analyses of eMyHC (red) and collagen IV (green) in tibialis anterior muscles of control and dTG mice. Scale bars: 50 μm. (H) Expression analysis of MYH8. (I) Masson staining of the tibialis anterior muscles. Scale bars: 50 μm. (J) Immunofluorescence analyses of Laminin in tibialis anterior muscles of control and dTG mice. Scale bars: 50 μm. Con.: control mice, moderate: moderately damaged dTG, severe: severely damaged dTG.
Figure 4Multiple muscles of dTG mice display injuries. Scale bars: 50 μm. (A) H&E staining of Triceps and gastrocnemius (GA) muscles. (B) H&E staining of tibialis anterior (TA) muscles. (C) Immunofluorescence analyses of eMyHC (green) in tibialis anterior muscles of control and dTG mice.
Figure 5Col4a1 and Col4a2 are the direct target genes of miR-29. (A) Expression analysis of miR-29 target genes related to collagen in the tibialis anterior muscles. The values represent the mean ± SEM (n = 3). *, p < 0.05. (B) Western blot showing the decrease in Col4 protein level in the dTG mice. GAPDH was used as an internal normalized reference. (C) The relative expression levels of Col4a1 and Col4a2 in the tibialis anterior muscles of mice at different ages were analyzed by Q-PCR. The values represent the mean ± SEM (n = 3). d, day(s); m, month(s). (D) Expression analysis of Col4a1 and Col4a2 in the tibialis anterior muscles. *, p < 0.05. (E) The binding sites in the Col4a1 3′UTR are indicated in bold, and all nucleotides in the binding sites are conserved across several species. Hsa, Homo sapiens; Ptr, Pan troglodytes; Rhesus, Macaca mulatta; Mmu, Mus musculus; Rno, Rattus norvegicus; Cfa, Canis lupus familiaris; Bta, Bos Taurus. (F) Expression analysis of genes related to protein degradation in the tibialis anterior muscles. *, p < 0.05; **, p < 0.01. (F) Expression analysis of Col4a1 and Col4a2 in C2C12 cells transfected with miR-29 mimics or negative control (NC). The values represent the mean ± SEM (n = 3). **, p < 0.01. (G) Expression analysis of Col4a1 and Col4a2 in C2C12 cells transfected with miR-29 inhibitor or INC (n = 3). *, p < 0.05. (H) miR-29 mimics influenced the relative luciferases activity of the Col4a1, mutant (Mut) Col4a1, Col4a2, and mutant Col4a2 vectors. **, p < 0.01.