LIM homeobox transcription factor Lhx2 inhibits skeletal muscle differentiation in part via transcriptional activation of Msx1 and Msx2

Exp Cell Res. 2015 Feb 15;331(2):309-19. doi: 10.1016/j.yexcr.2014.11.009. Epub 2014 Nov 24.

Abstract

LIM homeobox transcription factor Lhx2 is known to be an important regulator of neuronal development, homeostasis of hair follicle stem cells, and self-renewal of hematopoietic stem cells; however, its function in skeletal muscle development is poorly understood. In this study, we found that overexpression of Lhx2 completely inhibits the myotube-forming capacity of C2C12 cells and primary myoblasts. The muscle dedifferentiation factors Msx1 and Msx2 were strongly induced by the Lhx2 overexpression. Short interfering RNA-mediated knockdown of Lhx2 in the developing limb buds of mouse embryos resulted in a reduction in Msx1 and Msx2 mRNA levels, suggesting that they are downstream target genes of Lhx2. We found two Lhx2 consensus-binding sites in the -2097 to -1189 genomic region of Msx1 and two additional sites in the -536 to +73 genomic region of Msx2. These sequences were shown by luciferase reporter assay to be essential for Lhx2-mediated transcriptional activation. Moreover, electrophoretic mobility shift assays and chromatin immunoprecipitation assays showed that Lhx2 is present in chromatin DNA complexes bound to the enhancer regions of the Msx1 and Msx2 genes. These data demonstrate that Msx1 and Msx2 are direct transcriptional targets of Lhx2. In addition, overexpression of Lhx2 significantly enhanced the mRNA levels of bone morphogenetic protein 4 and transforming growth factor beta family genes. We propose that Lhx2 is involved in the early stage of skeletal muscle development by inducing multiple differentiation inhibitory factors.

Keywords: Lhx2; Limb bud; Msx1; Msx2; Skeletal muscle differentiation.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Binding Sites / genetics
  • Bone Morphogenetic Protein 4 / biosynthesis
  • Bone Morphogenetic Protein 4 / genetics
  • Cell Differentiation / genetics
  • Cell Line
  • Electrophoretic Mobility Shift Assay
  • Enhancer Elements, Genetic / genetics
  • Female
  • Gene Expression Profiling
  • Gene Expression Regulation, Developmental
  • HEK293 Cells
  • Homeodomain Proteins / biosynthesis
  • Homeodomain Proteins / genetics*
  • Humans
  • LIM-Homeodomain Proteins / genetics
  • LIM-Homeodomain Proteins / metabolism*
  • MSX1 Transcription Factor / biosynthesis
  • MSX1 Transcription Factor / genetics*
  • Mice
  • Mice, Inbred C57BL
  • Muscle Development / genetics*
  • Muscle Fibers, Skeletal / cytology*
  • Myoblasts / cytology*
  • RNA Interference
  • RNA, Messenger / biosynthesis
  • RNA, Small Interfering
  • Transcription Factors / genetics
  • Transcription Factors / metabolism*
  • Transcription, Genetic
  • Transcriptional Activation*
  • Transforming Growth Factor beta / biosynthesis
  • Transforming Growth Factor beta / genetics
  • Up-Regulation

Substances

  • Bmp4 protein, mouse
  • Bone Morphogenetic Protein 4
  • Homeodomain Proteins
  • LIM-Homeodomain Proteins
  • Lhx2 protein, mouse
  • MSX1 Transcription Factor
  • MSX2 protein
  • Msx1 protein, mouse
  • RNA, Messenger
  • RNA, Small Interfering
  • Transcription Factors
  • Transforming Growth Factor beta