Literature DB >> 21671783

Odd-skipped related genes regulate differentiation of embryonic limb mesenchyme and bone marrow mesenchymal stromal cells.

Sigmar Stricker1, Susanne Mathia, Julia Haupt, Petra Seemann, Julia Meier, Stefan Mundlos.   

Abstract

The regulation of progenitor cell differentiation to a specific tissue type is one of the fundamental questions of biology. Here, we identify Osr1 and Osr2, 2 closely related genes encoding zinc finger transcription factors, as being strongly expressed in irregular connective tissue (ICT) fibroblasts in the chicken embryo, suitable as a developmental marker. We provide evidence that both Osr1 and Osr2 regulate mesenchymal cell-type differentiation. Both Osr1 and Osr2 can promote the formation of ICT, a cell type of so far unknown molecular specification, while suppressing differentiation of other tissues such as cartilage and tendon from uncommitted progenitors. Conversely, knockdown of either Osr gene alone or in combination reverses this effect, thereby leading to decreased differentiation of ICT fibroblasts and increased chondrogenesis in vitro. This indicates that Osr genes play a pivotal role in ICT fibroblast differentiation. Undifferentiated mesenchymal cells reside in the adult body in the form of mesenchymal stem cells in the bone marrow cavity. Using bone marrow stromal cells (BMSCs) isolated from chicken fetal long bones, we show that Osr1 and Osr2 have an intrinsic role in BMSC differentiation similar to their role in early embryonic development, that is, the enforcement of CT fibroblast differentiation and the repression of other cell types as exemplified here by osteoblast differentiation.

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Year:  2011        PMID: 21671783     DOI: 10.1089/scd.2011.0154

Source DB:  PubMed          Journal:  Stem Cells Dev        ISSN: 1547-3287            Impact factor:   3.272


  18 in total

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2.  Odd-skipped related-1 controls neural crest chondrogenesis during tongue development.

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3.  The function and interrelationship between GDF5 and ERG-010 during chondrogenesis in vitro.

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4.  A single cell transcriptional atlas of early synovial joint development.

Authors:  Qin Bian; Yu-Hao Cheng; Jordan P Wilson; Emily Y Su; Dong Won Kim; Hong Wang; Sooyeon Yoo; Seth Blackshaw; Patrick Cahan
Journal:  Development       Date:  2020-07-20       Impact factor: 6.862

5.  Bat Accelerated Regions Identify a Bat Forelimb Specific Enhancer in the HoxD Locus.

Authors:  Betty M Booker; Tara Friedrich; Mandy K Mason; Julia E VanderMeer; Jingjing Zhao; Walter L Eckalbar; Malcolm Logan; Nicola Illing; Katherine S Pollard; Nadav Ahituv
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6.  The chemokines CXCL12 and CXCL14 differentially regulate connective tissue markers during limb development.

Authors:  Sonya Nassari; Cédrine Blavet; Marie-Ange Bonnin; Sigmar Stricker; Delphine Duprez; Claire Fournier-Thibault
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Review 10.  Origins, potency, and heterogeneity of skeletal muscle fibro-adipogenic progenitors-time for new definitions.

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Journal:  Skelet Muscle       Date:  2021-07-01       Impact factor: 4.912

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