The MRL Mitochondrial Genome Decreases Murine Muscular Dystrophy Severity

IF 0.5 Q4 ORTHOPEDICS MLTJ-Muscles Ligaments and Tendons Journal Pub Date : 2023-01-16 DOI:10.3390/muscles2010005
Jenan Holley-Cuthrell, Aqsa Iqbal, A. Heydemann
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引用次数: 1

Abstract

It is well known that muscular dystrophy disease severity is controlled by genetic modifiers. The expectation is that by identifying these modifiers, we can illuminate additional therapeutic targets with which to combat the disease. To this end we have been investigating the MRL mouse strain, which is highly resistant to muscular dystrophy-mediated fibrosis. The MRL mouse strain contains two mitochondrial-encoded, naturally occurring heteroplasmies: T3900C in tRNA-Met, and variable adenine insertions at 9821 in tRNA-Arg. Heteroplasmies are mitochondrial mutations that are variably present in a cell’s mitochondria. Therefore, MRL cells can contain 0 to 100% of each mitochondrial mutation. We have chosen the severely affected ϒ-sarcoglycan (Sgcg–/–) deficient mice on the DBA2/J background as our muscular dystrophy model to demonstrate the effects of these mitochondrial heteroplasmies on disease severity. Mice from the (Sgcg–/–) DBA2/J (D) and wildtype MRL (M) strains were crossed for more than 10 generations to establish two separate, pure breeding mouse lines: Sgcg+/–NucDMito%M and Sgcg+/–NucMMito%M. The Sgcg–/– mice from these separate lines were analyzed at 8 weeks old for membrane permeability, hydroxyproline content, pAMPK content, fibronectin content, and percentage of each heteroplasmy. We have identified that the MRL mitochondrial mutation T3900C confers a portion of the fibrosis resistance identified in the MRL mouse strain. These results have been extended to significantly correlate increased MRL mitochondria with increased pAMPK and decreased muscular dystrophy fibrosis. The beneficial mechanisms controlled by the MRL mitochondria will be discussed. We are establishing metabolic aspects of muscular dystrophy pathogenesis. These metabolic pathways will now be investigated for therapeutic targets.
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MRL线粒体基因组降低小鼠肌肉萎缩症的严重程度
众所周知,肌肉萎缩症的严重程度是由基因修饰因子控制的。我们的期望是,通过识别这些修饰剂,我们可以阐明对抗这种疾病的其他治疗靶点。为此,我们一直在研究MRL小鼠菌株,它对肌肉营养不良介导的纤维化具有高度抗性。MRL小鼠菌株含有两个线粒体编码的天然异质:tRNA-Met中的T3900C和tRNA-Arg中的9821可变腺嘌呤插入。异质是存在于细胞线粒体中的线粒体突变。因此,MRL细胞可以包含0到100%的每种线粒体突变。我们选择DBA2/J背景下严重受影响的ϒ-sarcoglycan (Sgcg - / -)缺陷小鼠作为我们的肌营养不良模型,以证明这些线粒体异质对疾病严重程度的影响。将(Sgcg - / -) DBA2/J (D)和野生型MRL (M)小鼠杂交10代以上,建立两个独立的纯种小鼠系:Sgcg+/ - nucdmto %M和Sgcg+/ - nucmmito %M。在8周龄时,分析来自这些单独品系的Sgcg - / -小鼠的膜通透性、羟脯氨酸含量、pAMPK含量、纤维连接蛋白含量和每种异质性的百分比。我们已经确定MRL线粒体突变T3900C赋予MRL小鼠品系中鉴定的部分纤维化抗性。这些结果已经扩展到MRL线粒体增加与pAMPK增加和肌营养不良纤维化减少显著相关。本文将讨论由MRL线粒体控制的有益机制。我们正在建立肌肉萎缩症发病机制的代谢方面。现在将研究这些代谢途径的治疗靶点。
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来源期刊
CiteScore
1.30
自引率
0.00%
发文量
51
期刊介绍: MLTJ (Muscle, Ligaments and Tendons Journal) is an open access, peer-reviewed online journal that encompasses all aspects of clinical and basic research studies related to musculoskeletal, ligament, tendon, public health, exercise physiology and kinesiology issues. Muscle, Ligaments and Tendons Journal (MLTJ) provides the platform for exchange of new clinical and scientific information in the most precise and expeditious way to achieve timely dissemination of information and cross-fertilization of ideas. It is the official journal of the Italian Society of Muscles, Ligaments and Tendons (I.S.Mu.L.T.), Società Italiana Terapia con Onde D’urto (S.I.T.O.D.) and Società Italiana Studio Piede e Caviglia (S.I.S.P.E.C)
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