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Cellular and Molecular Life Sciences : CMLS|April 12, 2011
Roles of the human hypoxia-inducible factor (HIF)-3α variants in the hypoxia responseMinna Heikkilä, Annika Pasanen, Kari I Kivirikko, et al.Endocrinology|October 26, 2002
Wnt-4 deficiency alters mouse adrenal cortex function, reducing aldosterone productionMinna Heikkilä, Hellevi Peltoketo, Juhani Leppäluoto, et al.The International Journal of Biochemistry & Cell Biology|April 27, 2010
Hypoxia-inducible factor (HIF)-3alpha is subject to extensive alternative splicing in human tissues and cancer cells and is regulated by HIF-1 but not HIF-2Annika Pasanen, Minna Heikkilä, Kati Rautavuoma, et al.Endocrinology|June 4, 2005
The partial female to male sex reversal in Wnt-4-deficient females involves induced expression of testosterone biosynthetic genes and testosterone production, and depends on androgen actionMinna Heikkilä, Renata Prunskaite, Florence Naillat, et al.Journal of Molecular Medicine (Berlin, Germany)|October 11, 2015
HIF-P4H-2 deficiency protects against skeletal muscle ischemia-reperfusion injurySara Karsikas, Mikko Myllymäki, Minna Heikkilä, et al.Cellular and Molecular Life Sciences : CMLS|November 27, 2019
A long hypoxia-inducible factor 3 isoform 2 is a transcription activator that regulates erythropoietinJussi-Pekka Tolonen, Minna Heikkilä, Marjo Malinen, et al.FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|February 27, 2020
Systemic long-term inactivation of hypoxia-inducible factor prolyl 4-hydroxylase 2 ameliorates aging-induced changes in mice without affecting their life spanAnna Laitakari, Riikka Huttunen, Paula Kuvaja, et al.Blood|September 8, 2012
Transmembrane prolyl 4-hydroxylase is a fourth prolyl 4-hydroxylase regulating EPO production and erythropoiesisAnu Laitala, Ellinoora Aro, Gail Walkinshaw, et al.Pageof 1