Literature DB >> 20026669

Synthesis and organization of hyaluronan and versican by embryonic stem cells undergoing embryoid body differentiation.

Shreya Shukla1, Rekha Nair, Marsha W Rolle, Kathleen R Braun, Christina K Chan, Pamela Y Johnson, Thomas N Wight, Todd C McDevitt.   

Abstract

Embryonic stem cells (ESCs) provide a convenient model to probe the molecular and cellular dynamics of developmental cell morphogenesis. ESC differentiation in vitro via embryoid bodies (EBs) recapitulates many aspects of early stages of development, including the epithelial-mesenchymal transition (EMT) of pluripotent cells into more differentiated progeny. Hyaluronan and versican are important extracellular mediators of EMT processes, yet the temporal expression and spatial distribution of these extracellular matrix (ECM) molecules during EB differentiation remains undefined. Thus, the objective of this study was to evaluate the synthesis and organization of hyaluronan and versican by using murine ESCs during EB differentiation. Hyaluronan and versican (V0 and V1 isoforms), visualized by immunohistochemistry and evaluated biochemically, accumulated within EBs during the course of differentiation. Interestingly, increasing amounts of a 70-kDa proteolytic fragment of versican were also detected over time, along with ADAMTS-1 and -5 protein expression. ESCs expressed each of the hyaluronan synthases (HAS) -1, -2, and -3 and versican splice variants (V0, V1, V2, and V3) throughout EB differentiation, but HAS-2, V0, and V1 were expressed at significantly increased levels at each time point examined. Hyaluronan and versican exhibited overlapping expression patterns within EBs in regions of low cell density, and versican expression was excluded from clusters of epithelial (cytokeratin-positive) cells but was enriched within the vicinity of mesenchymal (N-cadherin-positive) cells. These results indicate that hyaluronan and versican synthesized by ESCs within EB microenvironments are associated with EMT processes and furthermore suggest that endogenously produced ECM molecules play a role in ESC differentiation. This manuscript contains online supplemental material at http://www.jhc.org. Please visit this article online to view these materials.

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Year:  2009        PMID: 20026669      PMCID: PMC2842597          DOI: 10.1369/jhc.2009.954826

Source DB:  PubMed          Journal:  J Histochem Cytochem        ISSN: 0022-1554            Impact factor:   2.479


  52 in total

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4.  Characterization of proADAMTS5 processing by proprotein convertases.

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5.  New cell lines from mouse epiblast share defining features with human embryonic stem cells.

Authors:  Paul J Tesar; Josh G Chenoweth; Frances A Brook; Timothy J Davies; Edward P Evans; David L Mack; Richard L Gardner; Ronald D G McKay
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6.  Glycomics of proteoglycan biosynthesis in murine embryonic stem cell differentiation.

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8.  Adamts5, the gene encoding a proteoglycan-degrading metalloprotease, is expressed by specific cell lineages during mouse embryonic development and in adult tissues.

Authors:  Daniel R McCulloch; Carine Le Goff; Sumantha Bhatt; Laura J Dixon; John D Sandy; Suneel S Apte
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9.  Avian neural crest cell migration is diversely regulated by the two major hyaluronan-binding proteoglycans PG-M/versican and aggrecan.

Authors:  D Perissinotto; P Iacopetti; I Bellina; R Doliana; A Colombatti; Z Pettway; M Bronner-Fraser; T Shinomura; K Kimata; M Mörgelin; J Löfberg; R Perris
Journal:  Development       Date:  2000-07       Impact factor: 6.868

10.  Putative role of hyaluronan and its related genes, HAS2 and RHAMM, in human early preimplantation embryogenesis and embryonic stem cell characterization.

Authors:  Meenakshi Choudhary; Xin Zhang; Petra Stojkovic; Louise Hyslop; George Anyfantis; Mary Herbert; Alison P Murdoch; Miodrag Stojkovic; Majlinda Lako
Journal:  Stem Cells       Date:  2007-09-13       Impact factor: 6.277

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Review 4.  The multiparametric effects of hydrodynamic environments on stem cell culture.

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7.  Correlation of Versican Expression, Accumulation, and Degradation during Embryonic Development by Quantitative Immunohistochemistry.

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Review 8.  Engineering three-dimensional stem cell morphogenesis for the development of tissue models and scalable regenerative therapeutics.

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Review 9.  Heparan sulfate: a key regulator of embryonic stem cell fate.

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Review 10.  Emerging strategies for spatiotemporal control of stem cell fate and morphogenesis.

Authors:  Melissa A Kinney; Todd C McDevitt
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