Literature DB >> 18708054

Wnt4 and Wnt5a promote adipocyte differentiation.

Makoto Nishizuka1, Akiko Koyanagi, Shigehiro Osada, Masayoshi Imagawa.   

Abstract

The roles of the non-canonical Wnt pathway during adipogenesis are not well known, though Wnt10b is known to function as a negative regulator for adipogenesis by activating the canonical Wnt pathway. We focused on the roles of Wnt4, Wnt5a and Wnt6, which are thought to be part of the non-canonical Wnt pathway. The expression of these genes changed dramatically at the initial stage of adipogenesis. Furthermore, the inhibition of Wnt4 or Wnt5a expression prevented the accumulation of triacylglycerol and decreased the expression of adipogenesis-related genes. Wnt4 and Wnt5a have crucial roles in adipogenesis as positive regulators.

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Year:  2008        PMID: 18708054     DOI: 10.1016/j.febslet.2008.08.011

Source DB:  PubMed          Journal:  FEBS Lett        ISSN: 0014-5793            Impact factor:   4.124


  40 in total

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Journal:  J Clin Invest       Date:  2012-06-25       Impact factor: 14.808

3.  The Diabetes Gene and Wnt Pathway Effector TCF7L2 Regulates Adipocyte Development and Function.

Authors:  Xi Chen; Iriscilla Ayala; Chris Shannon; Marcel Fourcaudot; Nikhil K Acharya; Christopher P Jenkinson; Sami Heikkinen; Luke Norton
Journal:  Diabetes       Date:  2018-01-09       Impact factor: 9.461

4.  Inhibition of adipocytogenesis by canonical WNT signaling in human mesenchymal stem cells.

Authors:  Longxiang Shen; Julie Glowacki; Shuanhu Zhou
Journal:  Exp Cell Res       Date:  2011-05-27       Impact factor: 3.905

5.  Wnt6, Wnt10a and Wnt10b inhibit adipogenesis and stimulate osteoblastogenesis through a β-catenin-dependent mechanism.

Authors:  William P Cawthorn; Adam J Bree; Yao Yao; Baowen Du; Nahid Hemati; Gabriel Martinez-Santibañez; Ormond A MacDougald
Journal:  Bone       Date:  2011-08-18       Impact factor: 4.398

6.  Regulation of cyclin D1 and Wnt10b gene expression by cAMP-responsive element-binding protein during early adipogenesis involves differential promoter methylation.

Authors:  Keith E Fox; Lillester A Colton; Paul F Erickson; Jacob E Friedman; Hyuk C Cha; Pernille Keller; Ormond A MacDougald; Dwight J Klemm
Journal:  J Biol Chem       Date:  2008-10-27       Impact factor: 5.157

7.  A deep investigation into the adipogenesis mechanism: profile of microRNAs regulating adipogenesis by modulating the canonical Wnt/beta-catenin signaling pathway.

Authors:  Limei Qin; Yaosheng Chen; Yuna Niu; Weiquan Chen; Qiwei Wang; Shuqi Xiao; Anning Li; Ying Xie; Jing Li; Xiao Zhao; Zuyong He; Delin Mo
Journal:  BMC Genomics       Date:  2010-05-23       Impact factor: 3.969

8.  Role of Curcuminoids and Tricalcium Phosphate Ceramic in Rat Spinal Fusion.

Authors:  Daniel A Ryan; Jiongjia Cheng; Koichi Masuda; John R Cashman
Journal:  Tissue Eng Part C Methods       Date:  2020-11-13       Impact factor: 3.056

9.  Fat depot-specific gene signature and ECM remodeling of Sca1(high) adipose-derived stem cells.

Authors:  Masakuni Tokunaga; Mayumi Inoue; Yibin Jiang; Richard H Barnes; David A Buchner; Tae-Hwa Chun
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Review 10.  Determinants of stem cell lineage differentiation toward chondrogenesis versus adipogenesis.

Authors:  Sheng Zhou; Song Chen; Qing Jiang; Ming Pei
Journal:  Cell Mol Life Sci       Date:  2019-01-28       Impact factor: 9.261

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