Literature DB >> 22115758

Trps1 activates a network of secreted Wnt inhibitors and transcription factors crucial to vibrissa follicle morphogenesis.

Katherine A Fantauzzo1, Angela M Christiano.   

Abstract

Mutations in TRPS1 cause trichorhinophalangeal syndrome types I and III, which are characterized by sparse scalp hair in addition to craniofacial and skeletal abnormalities. Trps1 is a vertebrate transcription factor that contains nine zinc-finger domains, including a GATA-type zinc finger through which it binds DNA. Mice in which the GATA domain of Trps1 has been deleted (Trps1(Δgt/Δgt)) have a reduced number of pelage follicles and lack vibrissae follicles postnatally. To identify the transcriptional targets of Trps1 in the developing vibrissa follicle, we performed microarray hybridization analysis, comparing expression patterns in the whisker pads of wild-type versus Trps1(Δgt/Δgt) embryos. We identified a number of transcription factors and Wnt inhibitors among transcripts downregulated in the mutant embryos and several extracellular matrix proteins that were upregulated in the mutant samples, and demonstrated that target gene expression levels were altered in vivo in Trps1(Δgt/Δgt) vibrissae. Unexpectedly, we discovered that Trps1 can directly bind the promoters of its target genes to activate transcription, expanding upon its established role as a transcriptional repressor. Our findings identify Trps1 as a novel regulator of the Wnt signaling pathway and of early hair follicle progenitors in the developing vibrissa follicle.

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Year:  2011        PMID: 22115758      PMCID: PMC3231778          DOI: 10.1242/dev.069971

Source DB:  PubMed          Journal:  Development        ISSN: 0950-1991            Impact factor:   6.868


  59 in total

1.  Mice null for sox18 are viable and display a mild coat defect.

Authors:  D Pennisi; J Bowles; A Nagy; G Muscat; P Koopman
Journal:  Mol Cell Biol       Date:  2000-12       Impact factor: 4.272

2.  Missense mutation of TRPS1 in a family of tricho-rhino-phalangeal syndrome type III.

Authors:  Hiromasa Kobayashi; Megumu Hino; Makiko Shimodahira; Toshio Iwakura; Takashi Ishihara; Katsuji Ikekubo; Yoshihiro Ogawa; Kazuwa Nakao; Hiroyuki Kurahachi
Journal:  Am J Med Genet       Date:  2002-01-01

3.  Mutations in a new gene, encoding a zinc-finger protein, cause tricho-rhino-phalangeal syndrome type I.

Authors:  P Momeni; G Glöckner; O Schmidt; D von Holtum; B Albrecht; G Gillessen-Kaesbach; R Hennekam; P Meinecke; B Zabel; A Rosenthal; B Horsthemke; H J Lüdecke
Journal:  Nat Genet       Date:  2000-01       Impact factor: 38.330

4.  beta-Catenin controls hair follicle morphogenesis and stem cell differentiation in the skin.

Authors:  J Huelsken; R Vogel; B Erdmann; G Cotsarelis; W Birchmeier
Journal:  Cell       Date:  2001-05-18       Impact factor: 41.582

5.  Genotypic and phenotypic spectrum in tricho-rhino-phalangeal syndrome types I and III.

Authors:  H J Lüdecke; J Schaper; P Meinecke; P Momeni; S Gross; H Hirche; M J Abramowicz; B Albrecht; C Apacik; H J Christen; U Claussen; K Devriendt; E Fastnacht; A Forderer; U Friedrich; T H Goodship; M Greiwe; H Hamm; R C Hennekam; G K Hinkel; M Hoeltzenbein; H Kayserili; F Majewski; M Mathieu; R McLeod; A T Midro; U Moog; T Nagai; N Niikawa; K H Orstavik; E Plöchl; C Seitz; J Schmidtke; L Tranebjaerg; M Tsukahara; B Wittwer; B Zabel; G Gillessen-Kaesbach; B Horsthemke
Journal:  Am J Hum Genet       Date:  2000-12-07       Impact factor: 11.025

Review 6.  Structure and function of GC79/TRPS1, a novel androgen-repressible apoptosis gene.

Authors:  G T G Chang; G-J C M van den Bemd; M Jhamai; A O Brinkmann
Journal:  Apoptosis       Date:  2002-02       Impact factor: 4.677

7.  Trichorhinophalangeal syndrome type I: clinical and molecular characterization of 3 members of a family and 1 sporadic case.

Authors:  C S Seitz; H J Lüdecke; N Wagner; E B Bröcker; H Hamm
Journal:  Arch Dermatol       Date:  2001-11

8.  Transcriptional repression and developmental functions of the atypical vertebrate GATA protein TRPS1.

Authors:  T H Malik; S A Shoichet; P Latham; T G Kroll; L L Peters; R A Shivdasani
Journal:  EMBO J       Date:  2001-04-02       Impact factor: 11.598

9.  Trps1 regulates proliferation and apoptosis of chondrocytes through Stat3 signaling.

Authors:  Hiroki Suemoto; Yasuteru Muragaki; Katsuhiro Nishioka; Misako Sato; Akira Ooshima; Shunji Itoh; Ikuji Hatamura; Michitaka Ozaki; Attila Braun; Erika Gustafsson; Reinhard Fässler
Journal:  Dev Biol       Date:  2007-10-10       Impact factor: 3.582

10.  Expression of DeltaNLef1 in mouse epidermis results in differentiation of hair follicles into squamous epidermal cysts and formation of skin tumours.

Authors:  Catherin Niemann; David M Owens; Jörg Hülsken; Walter Birchmeier; Fiona M Watt
Journal:  Development       Date:  2002-01       Impact factor: 6.868

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  17 in total

1.  Transposon mutagenesis identifies genes that cooperate with mutant Pten in breast cancer progression.

Authors:  Roberto Rangel; Song-Choon Lee; Kenneth Hon-Kim Ban; Liliana Guzman-Rojas; Michael B Mann; Justin Y Newberg; Takahiro Kodama; Leslie A McNoe; Luxmanan Selvanesan; Jerrold M Ward; Alistair G Rust; Kuan-Yew Chin; Michael A Black; Nancy A Jenkins; Neal G Copeland
Journal:  Proc Natl Acad Sci U S A       Date:  2016-11-14       Impact factor: 11.205

2.  Trps1 transcription factor regulates mineralization of dental tissues and proliferation of tooth organ cells.

Authors:  Morgan Goss; Mairobys Socorro; Daisy Monier; Kostas Verdelis; Dobrawa Napierala
Journal:  Mol Genet Metab       Date:  2019-01-23       Impact factor: 4.797

3.  Dual role of the Trps1 transcription factor in dentin mineralization.

Authors:  Maria Kuzynski; Morgan Goss; Massimo Bottini; Manisha C Yadav; Callie Mobley; Tony Winters; Anne Poliard; Odile Kellermann; Brendan Lee; Jose Luis Millan; Dobrawa Napierala
Journal:  J Biol Chem       Date:  2014-08-15       Impact factor: 5.157

4.  Transcriptional repressor GATA binding 1-mediated repression of SRY-box 2 expression suppresses cancer stem cell functions and tumor initiation.

Authors:  Xue Gong; Weiguang Liu; Lele Wu; Zhifang Ma; Yuzhi Wang; Shiyi Yu; Jun Zhang; Hao Xie; Guanyun Wei; Fei Ma; Ling Lu; Liming Chen
Journal:  J Biol Chem       Date:  2018-10-12       Impact factor: 5.157

5.  Identifying potentially common genes between dyslipidemia and osteoporosis using novel analytical approaches.

Authors:  Xu Lin; Cheng Peng; Jonathan Greenbaum; Zhang-Fang Li; Ke-Hao Wu; Zeng-Xin Ao; Tong Zhang; Jie Shen; Hong-Wen Deng
Journal:  Mol Genet Genomics       Date:  2018-01-11       Impact factor: 3.291

Review 6.  The genetics of human skin disease.

Authors:  Gina M DeStefano; Angela M Christiano
Journal:  Cold Spring Harb Perspect Med       Date:  2014-10-01       Impact factor: 6.915

7.  Multi-omic analysis reveals divergent molecular events in scarring and regenerative wound healing.

Authors:  Shamik Mascharak; Heather E Talbott; Michael Januszyk; Michelle Griffin; Kellen Chen; Michael F Davitt; Janos Demeter; Dominic Henn; Clark A Bonham; Deshka S Foster; Nancie Mooney; Ran Cheng; Peter K Jackson; Derrick C Wan; Geoffrey C Gurtner; Michael T Longaker
Journal:  Cell Stem Cell       Date:  2022-01-24       Impact factor: 25.269

8.  Prediction of gene network models in limb muscle precursors.

Authors:  Adam L Campbell; Diana Eng; Michael K Gross; Chrissa Kioussi
Journal:  Gene       Date:  2012-08-20       Impact factor: 3.688

9.  Neuronal target identification requires AHA-1-mediated fine-tuning of Wnt signaling in C. elegans.

Authors:  Jingyan Zhang; Xia Li; Angela R Jevince; Liying Guan; Jiaming Wang; David H Hall; Xun Huang; Mei Ding
Journal:  PLoS Genet       Date:  2013-06-27       Impact factor: 5.917

10.  Trps1 and its target gene Sox9 regulate epithelial proliferation in the developing hair follicle and are associated with hypertrichosis.

Authors:  Katherine A Fantauzzo; Mazen Kurban; Brynn Levy; Angela M Christiano
Journal:  PLoS Genet       Date:  2012-11-01       Impact factor: 5.917

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