Dlx5 regulates chondrocyte differentiation at multiple stages

scientific article

Dlx5 regulates chondrocyte differentiation at multiple stages is …
instance of (P31):
scholarly articleQ13442814

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P698PubMed publication ID12895028

P2093author name stringCory Abate-Shen
Giovanni Levi
Andrew J Bendall
Gezhi Hu
P433issue5
P304page(s)335-344
P577publication date2003-06-01
P1433published inThe International Journal of Developmental BiologyQ7742306
P1476titleDlx5 regulates chondrocyte differentiation at multiple stages
P478volume47

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cites work (P2860)
Q28595827Altered mRNA Splicing, Chondrocyte Gene Expression and Abnormal Skeletal Development due to SF3B4 Mutations in Rodriguez Acrofacial Dysostosis
Q97419226DLX5 and HOXC8 enhance the chondrogenic differentiation potential of stem cells from apical papilla via LINC01013
Q38499194De novo characterization of the antler tip of Chinese Sika deer transcriptome and analysis of gene expression related to rapid growth
Q33285460Disruption of insulin-like growth factor-I expression in type IIalphaI collagen-expressing cells reduces bone length and width in mice
Q28588130Dlx5 Is a cell autonomous regulator of chondrocyte hypertrophy in mice and functionally substitutes for Dlx6 during endochondral ossification
Q64053559Dlx5 and Dlx6 can antagonize cell division at the G/S checkpoint
Q41874349Dlx5, a positive regulator of osteoblastogenesis, is essential for osteoblast-osteoclast coupling.
Q92810847Hormonal and Molecular Regulation of Phallus Differentiation in a Marsupial Tammar Wallaby
Q50086271Screen for Slit/Robo signaling in trunk neural cells reveals new players
Q36162905Spatial and temporal regulation of gene expression in the mammalian growth plate
Q35173443The dlx5a/dlx6a genes play essential roles in the early development of zebrafish median fin and pectoral structures
Q39632201The effects of Sp7/Osterix gene silencing in the chondroprogenitor cell line, ATDC5
Q55317237Use of integrative epigenetic and mRNA expression analyses to identify significantly changed genes and functional pathways in osteoarthritic cartilage.

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