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Treatment with Recombinant Human MG53 Protein Increases Membrane Integrity in a Mouse Model of Limb Girdle Muscular Dystrophy 2B

机译:重组人MG53蛋白治疗增加下肢带状肌营养不良症2B小鼠模型的膜完整性。

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摘要

Limb girdle muscular dystrophy type 2B (LGMD2B) and other dysferlinopathies are degenerative muscle diseases that result from mutations in the dysferlin gene and have limited treatment options. The dysferlin protein has been linked to multiple cellular functions including a Ca2+-dependent membrane repair process that reseals disruptions in the sarcolemmal membrane. Recombinant human MG53 protein (rhMG53) can increase the membrane repair process in multiple cell types both in vitro and in vivo. Here, we tested whether rhMG53 protein can improve membrane repair in a dysferlin-deficient mouse model of LGMD2B (B6.129-Dysftm1Kcam/J). We found that rhMG53 can increase the integrity of the sarcolemmal membrane of isolated muscle fibers and whole muscles in a Ca2+-independent fashion when assayed by a multi-photon laser wounding assay. Intraperitoneal injection of rhMG53 into mice before acute eccentric treadmill exercise can decrease the release of intracellular enzymes from skeletal muscle and decrease the entry of immunoglobulin G and Evans blue dye into muscle fibers in vivo. These results indicate that short-term rhMG53 treatment can ameliorate one of the underlying defects in dysferlin-deficient muscle by increasing sarcolemmal membrane integrity. We also provide evidence that rhMG53 protein increases membrane integrity independently of the canonical dysferlin-mediated, Ca2+-dependent pathway known to be important for sarcolemmal membrane repair.
机译:肢带型2B型肌营养不良症(LGMD2B)和其他dysferlinopathies是由dysferlin基因突变导致的变性肌肉疾病,治疗选择有限。 dysferlin蛋白已与多种细胞功能相关,包括依赖Ca 2 + 的膜修复过程,该过程可重新密封肌膜的破坏。重组人MG53蛋白(rhMG53)可以增加体外和体内多种细胞类型的膜修复过程。在这里,我们测试了rhMG53蛋白是否可以改善LGMD2B(B6.129-Dysf tm1Kcam / J)缺乏铁蛋白的小鼠模型的膜修复。我们发现,rhMG53可以通过多光子激光损伤测定法以不依赖Ca 2 + 的方式增加离体肌纤维和整个肌肉的肌膜的完整性。在急性离心运动之前向小鼠腹膜内注射rhMG53可以减少骨骼肌细胞内酶的释放,并减少体内免疫球蛋白G和伊文思蓝染料进入肌纤维。这些结果表明,短期的rhMG53治疗可以通过增加肌膜膜的完整性来改善非铁蛋白缺陷型肌肉的潜在缺陷之一。我们还提供了证据,rhMG53蛋白独立于经典的dysferlin介导的,Ca 2 + 依赖性途径而增加膜完整性,而该途径对于肌膜膜修复很重要。

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