Functional KCa1.1 channels are crucial for regulating the proliferation, migration and differentiation of human primary skeletal myoblasts

التفاصيل البيبلوغرافية
العنوان: Functional KCa1.1 channels are crucial for regulating the proliferation, migration and differentiation of human primary skeletal myoblasts
المؤلفون: Christine Beeton, Rajeev B. Tajhya, Joel R. Neilson, George G. Rodney, Natee Kongchan, Lubov Timchenko, Frank T. Horrigan, Redwan Huq, Mark R. Tanner, Xueyou Hu
المصدر: Cell Death & Disease
بيانات النشر: Nature Publishing Group, 2016.
سنة النشر: 2016
مصطلحات موضوعية: 0301 basic medicine, Mef2, Cancer Research, medicine.medical_specialty, Myoblast proliferation, BK channel, Cellular differentiation, Myoblasts, Skeletal, Immunology, Muscle Fibers, Skeletal, Intracellular Space, Cell Fusion, 03 medical and health sciences, Cellular and Molecular Neuroscience, Cell Movement, Internal medicine, medicine, Myocyte, Humans, Myotonic Dystrophy, Large-Conductance Calcium-Activated Potassium Channel alpha Subunits, Cells, Cultured, Cell Proliferation, Cell fusion, biology, Cell growth, Myogenesis, Cell Membrane, NF-kappa B, Cell Differentiation, Cell Biology, musculoskeletal system, Cell biology, 030104 developmental biology, Endocrinology, biology.protein, Matrix Metalloproteinase 2, Original Article, Calcium
الوصف: Myoblasts are mononucleated precursors of myofibers; they persist in mature skeletal muscles for growth and regeneration post injury. During myotonic dystrophy type 1 (DM1), a complex autosomal-dominant neuromuscular disease, the differentiation of skeletal myoblasts into functional myotubes is impaired, resulting in muscle wasting and weakness. The mechanisms leading to this altered differentiation are not fully understood. Here, we demonstrate that the calcium- and voltage-dependent potassium channel, KCa1.1 (BK, Slo1, KCNMA1), regulates myoblast proliferation, migration, and fusion. We also show a loss of plasma membrane expression of the pore-forming α subunit of KCa1.1 in DM1 myoblasts. Inhibiting the function of KCa1.1 in healthy myoblasts induced an increase in cytosolic calcium levels and altered nuclear factor kappa B (NFκB) levels without affecting cell survival. In these normal cells, KCa1.1 block resulted in enhanced proliferation and decreased matrix metalloproteinase secretion, migration, and myotube fusion, phenotypes all observed in DM1 myoblasts and associated with disease pathogenesis. In contrast, introducing functional KCa1.1 α-subunits into DM1 myoblasts normalized their proliferation and rescued expression of the late myogenic marker Mef2. Our results identify KCa1.1 channels as crucial regulators of skeletal myogenesis and suggest these channels as novel therapeutic targets in DM1.
اللغة: English
تدمد: 2041-4889
الوصول الحر: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::e3985863bcd103ac1533876ccc5518ddTest
http://europepmc.org/articles/PMC5133989Test
حقوق: OPEN
رقم الانضمام: edsair.doi.dedup.....e3985863bcd103ac1533876ccc5518dd
قاعدة البيانات: OpenAIRE