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Общее количество найденных документов : 18
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1.
A novel splicing junction mutation in the gene for the steroidogenic acute regulatory protein causes congenital lipoid adrenal hyperplasia // J. Clin. Endocrinol. and Metab., 1997. Vol. 82, N 7.-С.2337-2341

2.
Blomberg Expression analysis of the steroidogenic acute regulatory protein (STAR) gene in developing porcine conceptuses // Mol. Reprod. and Dev., 2005. Vol. 72, N 4.-С.419-429

3.
Bose Himangshu S. Evidence that StAR and MLN64 act on the outer mitochondrial membrane as molten globules // Endocr. Res., 2000. Vol. 26, N 4.-С.629-637

4.
Carbaryl inhibits basal and FSH-induced progesterone biosynthesis of primary human granulosa-lutein cells // Toxicology, 2006. Vol. 220, N 1.-С.37-45

5.
Caron Kathleen M. Targeted disruption of StAR provides novel insights into congenital adrenal hyperplasia // Endocr. Res., 1998. Vol. 24, N 3-4.-С.827-834

6.
Caron Kathleen M. Targeted disruption of StAR provides novel insights into congenital adrenal hyperplasia // Endocr. Res., 1998. Vol. 24, N 3-4.-С.827-834

7.
Clark Barbara J. Janus kinase 2 signaling in the angiotensin II-dependent activation of StAR expression // Endocr. Res., 2004. Vol. 30, N 4.-С.685-693

8.
Establishment of FSH-responsive cell lines by transfection of pre-ovulatory human granulosa cells with mutated p53 (p53val135) and Ha-ras genes // Mol. Hum. Reprod., 2002. Vol. 8, N 1.-С.48-57

9.
Four Japanese patients with adrenal hypoplasia congenita and hypogonadotropic hypogonadism caused by DAX-1 gene mutations: Mutant DAX-1 failed to repress steroidogenic acute regulatory protein (StAR) and luteinizing hormone 'бета'-subunit gene promoter activity // Endocr. J., 2008. Vol. 55, N 1.-С.97-103

10.
Jefcoate C.R. Relationship of StAR expression to mitochondrial cholesterol transfer and metabolism // Endocr. Res., 2000. Vol. 26, N 4.-С.663-680

11.
Jefcoate C.R. Relationship of StAR expression to mitochondrial cholesterol transfer and metabolism // Endocr. Res., 2000. Vol. 26, N 4.-С.663-680

12.
Khoury A family of two patients with congenital lipoid adrenal hyperplasia due to StAR mutation // Endocr. Res., 2004. Vol. 30, N 4.-С.925-929

13.
Liu Heat shock-induced inhibition of acute steroidogenesis in MA-10 cells is associated with inhibition of the synthesis of the steroidogenic acute regulatory protein // Endocrinology, 1997. Vol. 138, N 7.-С.2722-2728

14.
Nishikawa Possible involvement of calcium/calmodulin-dependent protein kinase in ACTH-induced expression of the steroidogenic acute regulatory (StAR) protein in bovine adrenal fasciculata cells // Endocr. J., 1997. Vol. 44, N 6.-С.895-898

15.
Perfluorododecanoic acid-induced steroidogenic inhibition is associated with steroidogenic acute regulatory protein and reactive oxygen species in cAMP-stimulated Leyding cells // Toxicol. Sci., 2010. Vol. 114, N 2.-С.285-294

16.
Steroidogenic acute regulatory protein (StAR) acts on the outside of mitochondria to stimulate steroidogenesis // Endocr. Res., 1998. Vol. 24, N 3-4.-С.463-468

17.
Transcriptional regulation of the gene encoding the STAR protein in the human adrenocortical cell line, H295R by cAMP and TGF'бета'1 // Endocr. Res., 2000. Vol. 26, N 4.-С.1045-1053

18.
Transfer of cholesterol between phospholipid vesicles mediated by the steroidogenic acute regulatory protein (StAR) // J. Biol. Chem., 2002. Vol. 277, N 49.-С.47123-47128

 




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