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Items: 1 to 20 of 382

1.

LXXLL-related motifs in Dax-1 have target specificity for the orphan nuclear receptors Ad4BP/SF-1 and LRH-1.

Suzuki T, Kasahara M, Yoshioka H, Morohashi K, Umesono K.

Mol Cell Biol. 2003 Jan;23(1):238-49.

2.

Transcriptional regulation of the human FTZ-F1 gene encoding Ad4BP/SF-1.

Oba K, Yanase T, Ichino I, Goto K, Takayanagi R, Nawata H.

J Biochem. 2000 Sep;128(3):517-28.

3.

LXXLL motifs in Dax-1 have target specificity for the orphan nuclear receptors Ad4BP/SF-1 and LRH-1.

Suzuki T, Kasahara M, Yoshioka H, Umesono K, Morohashi K.

Endocr Res. 2002 Nov;28(4):537. No abstract available.

PMID:
12530660
4.
5.

Sexually dimorphic expression of Dax-1 in the adrenal cortex.

Mukai T, Kusaka M, Kawabe K, Goto K, Nawata H, Fujieda K, Morohashi K.

Genes Cells. 2002 Jul;7(7):717-29.

6.

Dax-1 (dosage-sensitive sex reversal-adrenal hypoplasia congenita critical region on the X chromosome, gene 1) gene transcription is regulated by wnt4 in the female developing gonad.

Mizusaki H, Kawabe K, Mukai T, Ariyoshi E, Kasahara M, Yoshioka H, Swain A, Morohashi K.

Mol Endocrinol. 2003 Apr;17(4):507-19. Epub 2003 Jan 23.

PMID:
12554773
7.

Role of the LXXLL-motif and activation function 2 domain in subcellular localization of Dax-1 (dosage-sensitive sex reversal-adrenal hypoplasia congenita critical region on the X chromosome, gene 1).

Kawajiri K, Ikuta T, Suzuki T, Kusaka M, Muramatsu M, Fujieda K, Tachibana M, Morohashi K.

Mol Endocrinol. 2003 Jun;17(6):994-1004. Epub 2003 Feb 27.

PMID:
12610109
8.
9.
10.

Dax-1 as one of the target genes of Ad4BP/SF-1.

Kawabe K, Shikayama T, Tsuboi H, Oka S, Oba K, Yanase T, Nawata H, Morohashi K.

Mol Endocrinol. 1999 Aug;13(8):1267-84.

PMID:
10446902
11.
12.
13.

Identification of a putative steroidogenic factor-1 response element in the DAX-1 promoter.

Burris TP, Guo W, Le T, McCabe ER.

Biochem Biophys Res Commun. 1995 Sep 14;214(2):576-81.

PMID:
7677767
14.

Segmentation gene product Fushi tarazu is an LXXLL motif-dependent coactivator for orphan receptor FTZ-F1.

Suzuki T, Kawasaki H, Yu RT, Ueda H, Umesono K.

Proc Natl Acad Sci U S A. 2001 Oct 23;98(22):12403-8. Epub 2001 Oct 9.

15.

Adrenocortical and gonadal differentiation regulated by transcription factors, Ad4BP/SF-1 (NR5A1) and Dax-I (NROB1).

Morohashi K, Mukai T, Kawabe K, Suzuki, Mizusaki H, Ishiharal S, Umesono K, Kawajiri K.

Endocr Res. 2000 Nov;26(4):953. No abstract available.

PMID:
11196474
16.

Crystal structure of the human LRH-1 DBD-DNA complex reveals Ftz-F1 domain positioning is required for receptor activity.

Solomon IH, Hager JM, Safi R, McDonnell DP, Redinbo MR, Ortlund EA.

J Mol Biol. 2005 Dec 16;354(5):1091-102. Epub 2005 Oct 27.

PMID:
16289203
17.

Role of phosphorylation, gene dosage and Dax-1 in SF-1 mediated steroidogenesis.

Babu PS, Bavers DL, Shah S, Hammer GD.

Endocr Res. 2000 Nov;26(4):985-94.

PMID:
11196480
19.

Phenotypic spectrum of mutations in DAX-1 and SF-1.

Achermann JC, Meeks JJ, Jameson JL.

Mol Cell Endocrinol. 2001 Dec 20;185(1-2):17-25. Review.

PMID:
11738790
20.

Steroidogenic factor-1: its role in endocrine organ development and differentiation.

Hammer GD, Ingraham HA.

Front Neuroendocrinol. 1999 Jul;20(3):199-223. Review.

PMID:
10433862

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