Literature DB >> 11313147

Structural characterization of the mouse Foxf1a gene.

V W Chang1, Y Ho.   

Abstract

Members in the superfamily of the forkhead/winged-helix transcription factors are known to play a critical role in the control of cell differentiation and tissue development. To understand the regulation and function of these genes, we have initially isolated and characterized the mouse Foxf1a gene, a novel forkhead gene predominantly expressed in the lung. The mouse gene consists of two exons with the forkhead domain contained in exon 1, and is located at band E1 on chromosome 8. Amino acid sequence of the mouse protein shares a high degree of homology to that of the corresponding human protein. The tissue specificity of expression of the mouse gene also resembles that found in the human gene. This gene is primarily expressed in the lung, and to a lesser extent in placenta and tissues in gastrointestinal tract. The transcription start site was mapped to 113 nucleotides upstream from the putative translation initiation site. The promoter of the mouse gene is highly GC rich and contains neither a CAAT nor a TATA box. A series of luciferase report constructs driven by the promoter and various deletions in the 5' flanking region of the gene were constructed and employed in transient transfection studies using a line of SV40 transformed mouse lymph node endothelial cells (SVEC4-10), which express the endogenous Foxf1a gene, and a line of mouse hepatoma cells (Hepa 1-6), in which Foxf1a is not expressed. To our surprise, these reporter genes are equally active in both cell lines. Further studies have shown that the proximal 5' flanking sequence and exon 1 of the endogenous gene are highly methylated in Hepa 1-6 cells but not in SVEC4-10 cells, suggesting that DNA methylation but not cell-specific transcription factor(s) regulates cell specificity of gene expression in these cultured cells.

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Year:  2001        PMID: 11313147     DOI: 10.1016/s0378-1119(01)00400-0

Source DB:  PubMed          Journal:  Gene        ISSN: 0378-1119            Impact factor:   3.688


  6 in total

1.  Long-range enhancers modulate Foxf1 transcription in blood vessels of pulmonary vascular network.

Authors:  Hyejin Seo; Jinsun Kim; Gi-Hee Park; Yuri Kim; Sung-Won Cho
Journal:  Histochem Cell Biol       Date:  2016-05-11       Impact factor: 4.304

2.  A familial case of alveolar capillary dysplasia with misalignment of pulmonary veins supports paternal imprinting of FOXF1 in human.

Authors:  Partha Sen; Romana Gerychova; Petr Janku; Marta Jezova; Iveta Valaskova; Colby Navarro; Iris Silva; Claire Langston; Stephen Welty; John Belmont; Pawel Stankiewicz
Journal:  Eur J Hum Genet       Date:  2012-09-19       Impact factor: 4.246

3.  Small noncoding differentially methylated copy-number variants, including lncRNA genes, cause a lethal lung developmental disorder.

Authors:  Przemyslaw Szafranski; Avinash V Dharmadhikari; Erwin Brosens; Priyatansh Gurha; Katarzyna E Kolodziejska; Ou Zhishuo; Piotr Dittwald; Tadeusz Majewski; K Naga Mohan; Bo Chen; Richard E Person; Dick Tibboel; Annelies de Klein; Jason Pinner; Maya Chopra; Girvan Malcolm; Gregory Peters; Susan Arbuckle; Sixto F Guiang; Virginia A Hustead; Jose Jessurun; Russel Hirsch; David P Witte; Isabelle Maystadt; Neil Sebire; Richard Fisher; Claire Langston; Partha Sen; Paweł Stankiewicz
Journal:  Genome Res       Date:  2012-10-03       Impact factor: 9.043

4.  Pathogenetics of alveolar capillary dysplasia with misalignment of pulmonary veins.

Authors:  Przemyslaw Szafranski; Tomasz Gambin; Avinash V Dharmadhikari; Kadir Caner Akdemir; Shalini N Jhangiani; Jennifer Schuette; Nihal Godiwala; Svetlana A Yatsenko; Jessica Sebastian; Suneeta Madan-Khetarpal; Urvashi Surti; Rosanna G Abellar; David A Bateman; Ashley L Wilson; Melinda H Markham; Jill Slamon; Fernando Santos-Simarro; María Palomares; Julián Nevado; Pablo Lapunzina; Brian Hon-Yin Chung; Wai-Lap Wong; Yoyo Wing Yiu Chu; Gary Tsz Kin Mok; Eitan Kerem; Joel Reiter; Namasivayam Ambalavanan; Scott A Anderson; David R Kelly; Joseph Shieh; Taryn C Rosenthal; Kristin Scheible; Laurie Steiner; M Anwar Iqbal; Margaret L McKinnon; Sara Jane Hamilton; Kamilla Schlade-Bartusiak; Dawn English; Glenda Hendson; Elizabeth R Roeder; Thomas S DeNapoli; Rebecca Okashah Littlejohn; Daynna J Wolff; Carol L Wagner; Alison Yeung; David Francis; Elizabeth K Fiorino; Morris Edelman; Joyce Fox; Denise A Hayes; Sandra Janssens; Elfride De Baere; Björn Menten; Anne Loccufier; Lieve Vanwalleghem; Philippe Moerman; Yves Sznajer; Amy S Lay; Jennifer L Kussmann; Jasneek Chawla; Diane J Payton; Gael E Phillips; Erwin Brosens; Dick Tibboel; Annelies de Klein; Isabelle Maystadt; Richard Fisher; Neil Sebire; Alison Male; Maya Chopra; Jason Pinner; Girvan Malcolm; Gregory Peters; Susan Arbuckle; Melissa Lees; Zoe Mead; Oliver Quarrell; Richard Sayers; Martina Owens; Charles Shaw-Smith; Janet Lioy; Eileen McKay; Nicole de Leeuw; Ilse Feenstra; Liesbeth Spruijt; Frances Elmslie; Timothy Thiruchelvam; Carlos A Bacino; Claire Langston; James R Lupski; Partha Sen; Edwina Popek; Paweł Stankiewicz
Journal:  Hum Genet       Date:  2016-04-12       Impact factor: 4.132

5.  Genomic and genic deletions of the FOX gene cluster on 16q24.1 and inactivating mutations of FOXF1 cause alveolar capillary dysplasia and other malformations.

Authors:  Paweł Stankiewicz; Partha Sen; Samarth S Bhatt; Mekayla Storer; Zhilian Xia; Bassem A Bejjani; Zhishuo Ou; Joanna Wiszniewska; Daniel J Driscoll; Melissa K Maisenbacher; Juan Bolivar; Mislen Bauer; Elaine H Zackai; Donna McDonald-McGinn; Małgorzata M J Nowaczyk; Mitzi Murray; Virginia Hustead; Kristin Mascotti; Regina Schultz; Lavinia Hallam; Duncan McRae; Andrew G Nicholson; Robert Newbury; Jane Durham-O'Donnell; Gail Knight; Usha Kini; Tamim H Shaikh; Vicki Martin; Matthew Tyreman; Ingrid Simonic; Lionel Willatt; Joan Paterson; Sarju Mehta; Diana Rajan; Tomas Fitzgerald; Susan Gribble; Elena Prigmore; Ankita Patel; Lisa G Shaffer; Nigel P Carter; Sau Wai Cheung; Claire Langston; Charles Shaw-Smith
Journal:  Am J Hum Genet       Date:  2009-06-04       Impact factor: 11.025

6.  Low molecular weight hyaluronan induces lymphangiogenesis through LYVE-1-mediated signaling pathways.

Authors:  Man Wu; Yan Du; Yiwen Liu; Yiqing He; Cuixia Yang; Wenjuan Wang; Feng Gao
Journal:  PLoS One       Date:  2014-03-25       Impact factor: 3.240

  6 in total

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