660 results on '"Buckingham, Margaret"'
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2. A tribute to François Gros, a founding father of molecular biology: Foreword
3. Cardiac Progenitor Cells of the First and Second Heart Fields
4. PAX3 Confers Functional Heterogeneity in Skeletal Muscle Stem Cell Responses to Environmental Stress
5. What does the concept of the stem cell niche really mean today?
6. Pax3 and Pax7 Have Distinct and Overlapping Functions in Adult Muscle Progenitor Cells
7. Direct Isolation of Satellite Cells for Skeletal Muscle Regeneration
8. Oriented Clonal Cell Growth in the Developing Mouse Myocardium Underlies Cardiac Morphogenesis
9. Gene regulatory networks and cell lineages that underlie the formation of skeletal muscle
10. In remembrance of David Yaffe
11. Expression of CD34 and Myf5 Defines the Majority of Quiescent Adult Skeletal Muscle Satellite Cells
12. First and Second Heart Field
13. François Gros (1925–2022) in memoriam
14. PAX3 and PAX7 as upstream regulators of myogenesis
15. Interactions with John Gurdon – muscle as a mesodermal read-out and the community effect
16. Clonal analysis reveals a common origin between nonsomite-derived neck muscles and heart myocardium
17. Notch regulation of myogenic versus endothelial fates of cells that migrate from the somite to the limb
18. The Origin and Genetic Regulation of Myogenic Cells: From the Embryo to the Adult
19. Gene Regulatory Networks and Transcriptional Mechanisms that Control Myogenesis
20. Somitogenesis
21. Direct molecular regulation of the myogenic determination gene Myf5 by Pax3, with modulation by Six1/4 factors, is exemplified by the −111 kb-Myf5 enhancer
22. Fibroblast growth factor 10 gene regulation in the second heart field by Tbx1, Nkx2-5, and Islet1 reveals a genetic switch for down-regulation in the myocardium
23. Regionalization of Transcriptional Potential in the Myocardium: ‘Cardiosensor’ Transgenic Mice
24. The Transcriptional Building Blocks of the Heart
25. Muscle Stem Cell Behavior Is Modified by MicroRNA-27 Regulation of Pax3 Expression
26. Tracing Cells for Tracking Cell Lineage and Clonal Behavior
27. Six Proteins Regulate the Activation of Myf5 Expression in Embryonic Mouse Limbs
28. Tissue Differentiation
29. Expression of Myogenic Factors in Somites and Limb Buds During Mouse Embryogenesis
30. Distinct and dynamic myogenic populations in the vertebrate embryo
31. The regulatory mechanisms that underlie inappropriate transcription of the myogenic determination gene Myf5 in the central nervous system
32. Conotruncal defects associated with anomalous pulmonary venous connections
33. Type 2X-Myosin Heavy Chain Is Coded by a Muscle Fiber Type-Specific and Developmentally Regulated Gene
34. The Expression of Myosin Genes in Developing Skeletal Muscle in the Mouse Embryo
35. Developmental Regulation of Myosin Gene Expression in Mouse Cardiac Muscle
36. Localization of Dystrophin Gene Transcripts during Mouse Embryogenesis
37. The Muslce Regulatory Gene, Myf-6, Has a Biphasic Pattern of Expression during Early Mouse Development
38. Mouse Limb Muscle is Determined in the Absence of the Earliest Myogenic Factor myf-5
39. Skeletal muscle stem cells
40. Integration of embryonic and fetal skeletal myogenic programs at the myosin light chain 1f/3f locus
41. Myocardium at the base of the aorta and pulmonary trunk is prefigured in the outflow tract of the heart and in subdomains of the second heart field
42. Prdm1 functions in the mesoderm of the second heart field, where it interacts genetically with Tbx1, during outflow tract morphogenesis in the mouse embryo
43. Myogenic progenitor cells in the mouse embryo are marked by the expression of Pax3/7 genes that regulate their survival and myogenic potential
44. Beta catenin-independent activation of MyoD in presomitic mesoderm requires PKC and depends on Pax3 transcriptional activity
45. Skeletal muscle progenitor cells and the role of Pax genes
46. An Nkx2-5/Bmp2/Smad1 Negative Feedback Loop Controls Heart Progenitor Specification and Proliferation
47. Left and right ventricular contributions to the formation of the interventricular septum in the mouse heart
48. M-Cadherin Is a PAX3 Target During Myotome Patterning
49. List of Contributors
50. Skeletal Muscle Development
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