Literature DB >> 9851982

BMP4 is essential for lens induction in the mouse embryo.

Y Furuta1, B L Hogan.   

Abstract

Vertebrate lens development is a classical model system for studying embryonic tissue interactions. Little is known, however, about the molecules mediating such inductive events. Here, we show that Bmp4, which is expressed strongly in the optic vesicle and weakly in the surrounding mesenchyme and surface ectoderm, has crucial roles during lens induction. In Bmp4(tm1) homozygous null mutant embryos, lens induction is absent, but the process can be rescued by exogenous BMP4 protein applied into the optic vesicle in explant cultures. This is associated with rescue of ectodermal expression of Sox2, an early lens placode marker. Substituting the optic vesicle in explant cultures with BMP4-carrying beads, however, does not lead to lens induction, indicating that other factors produced by the optic vesicle are involved. BMP4 appears to regulate expression of a putative downstream gene, Msx2, in the optic vesicle. No change in Pax6 expression is seen in Bmp4(tm1) mutant eyes, and Bmp4 expression appears unaffected in the eyes of homozygous Pax6(Sey-1Neu), suggesting that PAX6 and BMP4 function independently. Based on these results we propose that BMP4 is required for the optic vesicle to manifest its lens-inducing activity, by regulating downstream genes and/or serving as one component of multiple inductive signals.

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Year:  1998        PMID: 9851982      PMCID: PMC317259          DOI: 10.1101/gad.12.23.3764

Source DB:  PubMed          Journal:  Genes Dev        ISSN: 0890-9369            Impact factor:   11.361


  48 in total

Review 1.  Embryonic lens induction: shedding light on vertebrate tissue determination.

Authors:  R M Grainger
Journal:  Trends Genet       Date:  1992-10       Impact factor: 11.639

2.  Immunoreactive alpha A crystallin in rat non-lenticular tissues detected with a sensitive immunoassay method.

Authors:  K Kato; H Shinohara; N Kurobe; S Goto; Y Inaguma; K Ohshima
Journal:  Biochim Biophys Acta       Date:  1991-10-25

3.  Mouse Otx2 functions in the formation and patterning of rostral head.

Authors:  I Matsuo; S Kuratani; C Kimura; N Takeda; S Aizawa
Journal:  Genes Dev       Date:  1995-11-01       Impact factor: 11.361

Review 4.  Embryonic lens induction: more than meets the optic vesicle.

Authors:  M S Saha; C L Spann; R M Grainger
Journal:  Cell Differ Dev       Date:  1989-12

5.  Early tissue interactions leading to embryonic lens formation in Xenopus laevis.

Authors:  J J Henry; R M Grainger
Journal:  Dev Biol       Date:  1990-09       Impact factor: 3.582

6.  Mouse small eye results from mutations in a paired-like homeobox-containing gene.

Authors:  R E Hill; J Favor; B L Hogan; C C Ton; G F Saunders; I M Hanson; J Prosser; T Jordan; N D Hastie; V van Heyningen
Journal:  Nature       Date:  1991 Dec 19-26       Impact factor: 49.962

7.  FGF-4 and BMP-2 have opposite effects on limb growth.

Authors:  L Niswander; G R Martin
Journal:  Nature       Date:  1993-01-07       Impact factor: 49.962

8.  Reinvestigation of the role of the optic vesicle in embryonic lens induction.

Authors:  R M Grainger; J J Herry; R A Henderson
Journal:  Development       Date:  1988-03       Impact factor: 6.868

9.  The Msh-like homeobox genes define domains in the developing vertebrate eye.

Authors:  A P Monaghan; D R Davidson; C Sime; E Graham; R Baldock; S S Bhattacharya; R E Hill
Journal:  Development       Date:  1991-08       Impact factor: 6.868

10.  Involvement of Bone Morphogenetic Protein-4 (BMP-4) and Vgr-1 in morphogenesis and neurogenesis in the mouse.

Authors:  C M Jones; K M Lyons; B L Hogan
Journal:  Development       Date:  1991-02       Impact factor: 6.868

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  145 in total

1.  Serological identification of embryonic neural proteins as highly immunogenic tumor antigens in small cell lung cancer.

Authors:  A O Güre; E Stockert; M J Scanlan; R S Keresztes; D Jäger; N K Altorki; L J Old; Y T Chen
Journal:  Proc Natl Acad Sci U S A       Date:  2000-04-11       Impact factor: 11.205

2.  Pax6 activity in the lens primordium is required for lens formation and for correct placement of a single retina in the eye.

Authors:  R Ashery-Padan; T Marquardt; X Zhou; P Gruss
Journal:  Genes Dev       Date:  2000-11-01       Impact factor: 11.361

3.  Pax6 and SOX2 form a co-DNA-binding partner complex that regulates initiation of lens development.

Authors:  Y Kamachi; M Uchikawa; A Tanouchi; R Sekido; H Kondoh
Journal:  Genes Dev       Date:  2001-05-15       Impact factor: 11.361

4.  A forkhead gene, FoxE3, is essential for lens epithelial proliferation and closure of the lens vesicle.

Authors:  A Blixt; M Mahlapuu; M Aitola; M Pelto-Huikko; S Enerbäck; P Carlsson
Journal:  Genes Dev       Date:  2000-01-15       Impact factor: 11.361

Review 5.  Roles of cell-extrinsic growth factors in vertebrate eye pattern formation and retinogenesis.

Authors:  Xian-Jie Yang
Journal:  Semin Cell Dev Biol       Date:  2004-02       Impact factor: 7.727

6.  Expression patterns of ADAMs in the developing chicken lens.

Authors:  Xin Yan; Juntang Lin; Arndt Rolfs; Jiankai Luo
Journal:  J Mol Histol       Date:  2012-01-14       Impact factor: 2.611

Review 7.  Compartmentalization of vertebrate optic neuroephithelium: external cues and transcription factors.

Authors:  Hyoung-Tai Kim; Jin Woo Kim
Journal:  Mol Cells       Date:  2012-03-23       Impact factor: 5.034

8.  Developmental expression of two CXC chemokines, MIP-2 and KC, and their receptors.

Authors:  J Luan; Y Furuta; J Du; A Richmond
Journal:  Cytokine       Date:  2001-06-07       Impact factor: 3.861

Review 9.  Signaling and Gene Regulatory Networks in Mammalian Lens Development.

Authors:  Ales Cvekl; Xin Zhang
Journal:  Trends Genet       Date:  2017-08-31       Impact factor: 11.639

Review 10.  Cell signaling pathways in vertebrate lens regeneration.

Authors:  Jonathan J Henry; Alvin G Thomas; Paul W Hamilton; Lisa Moore; Kimberly J Perry
Journal:  Curr Top Microbiol Immunol       Date:  2013       Impact factor: 4.291

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