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1,359 results on '"myoblast fusion"'

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1. The Innovative Role of Nuclear Receptor Interaction Protein in Orchestrating Invadosome Formation for Myoblast Fusion

2. A change in cis-regulatory logic underlying obligate versus facultative muscle multinucleation in chordates.

3. The Regulatory Role of Myomaker in the Muscle Growth of the Chinese Perch (Siniperca chuatsi).

4. The IRE1α/XBP1 signaling axis drives myoblast fusion in adult skeletal muscle.

5. mir-276a Is Required for Muscle Development in Drosophila and Regulates the FGF Receptor Heartless During the Migration of Nascent Myotubes in the Testis

6. MTM1-mediated production of phosphatidylinositol 5-phosphate fuels the formation of podosome-like protrusions regulating myoblast fusion.

7. Machine learning inference of continuous single-cell state transitions during myoblast differentiation and fusion

8. Machine learning inference of continuous single-cell state transitions during myoblast differentiation and fusion.

10. IL-4 Signaling Promotes Myoblast Differentiation and Fusion by Enhancing the Expression of MyoD, Myogenin, and Myomerger.

11. miR-205 Regulates the Fusion of Porcine Myoblast by Targeting the Myomaker Gene.

12. Involvement of phosphatidylserine receptors in the skeletal muscle regeneration: therapeutic implications

13. The serine/threonine kinase Back seat driver prevents cell fusion to maintain cell identity.

14. Ryanodine receptor RyR1-mediated elevation of Ca2+ concentration is required for the late stage of myogenic differentiation and fusion

15. Caveolin 3 suppresses phosphorylation-dependent activation of sarcolemmal nNOS.

16. Ca2+ as a coordinator of skeletal muscle differentiation, fusion and contraction.

17. Early tension regulation coupled to surface myomerger is necessary for the primary fusion of C2C12 myoblasts.

18. Loss of Myomixer Results in Defective Myoblast Fusion, Impaired Muscle Growth, and Severe Myopathy in Zebrafish.

19. Early tension regulation coupled to surface myomerger is necessary for the primary fusion of C2C12 myoblasts

20. Phosphatidylserine orchestrates Myomerger membrane insertions to drive myoblast fusion.

21. Temporal Expression of Myogenic Regulatory Genes in Different Chicken Breeds during Embryonic Development.

22. Transcription factor signal transducer and activator of transcription 6 (STAT6) is an inhibitory factor for adult myogenesis

23. Effect of Different Basal Culture Media and Sera Type Combinations on Primary Broiler Chicken Muscle Satellite Cell Heterogeneity during Proliferation and Differentiation.

24. Ryanodine receptor RyR1-mediated elevation of Ca2+ concentration is required for the late stage of myogenic differentiation and fusion.

25. Syndecan-4 affects myogenesis via Rac1-mediated actin remodeling and exhibits copy-number amplification and increased expression in human rhabdomyosarcoma tumors.

26. TMEM8C-mediated fusion is regionalized and regulated by NOTCH signalling during foetal myogenesis.

27. Pannexin 1 Regulates Skeletal Muscle Regeneration by Promoting Bleb-Based Myoblast Migration and Fusion Through a Novel Lipid Based Signaling Mechanism

28. RNAi Screen in Tribolium Reveals Involvement of F-BAR Proteins in Myoblast Fusion and Visceral Muscle Morphogenesis in Insects

29. Puromycin‐sensitive aminopeptidase is required for C2C12 myoblast proliferation and differentiation.

30. Transcription factor signal transducer and activator of transcription 6 (STAT6) is an inhibitory factor for adult myogenesis.

31. RGMa can induce skeletal muscle cell hyperplasia via association with neogenin signalling pathway.

32. Differential physiological roles for BIN1 isoforms in skeletal muscle development, function and regeneration

33. Continuous exposure of isoprenaline inhibits myoblast differentiation and fusion through PKA/ERK1/2-FOXO1 signaling pathway

34. An RNAi based screen in Drosophila larvae identifies fascin as a regulator of myoblast fusion and myotendinous junction structure

35. Inter-organ steroid hormone signaling promotes myoblast fusion via direct transcriptional regulation of a single key effector gene.

36. Fine-Tuning of Piezo1 Expression and Activity Ensures Efficient Myoblast Fusion during Skeletal Myogenesis

37. Myoblast fusion confusion: the resolution begins

38. Impaired Skeletal Muscle Development and Regeneration in Transglutaminase 2 Knockout Mice

40. Drosophila Myoblast Fusion: Invasion and Resistance for the Ultimate Union.

41. Cell Fusion: Merging Membranes and Making Muscle.

42. Sarcolipin overexpression impairs myogenic differentiation in Duchenne muscular dystrophy.

43. Protein kinase CK2 subunits exert specific and coordinated functions in skeletal muscle differentiation and fusogenic activity.

44. Integrin-α7 signaling regulates connexin 43, M-cadherin, and myoblast fusion.

45. Fer1L5, a Dysferlin Homologue Present in Vesicles and Involved in C2C12 Myoblast Fusion and Membrane Repair

46. Alverine citrate promotes myogenic differentiation and ameliorates muscle atrophy

50. DA-Raf, a dominant-negative regulator of the Ras–ERK pathway, is essential for skeletal myocyte differentiation including myoblast fusion and apoptosis.

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