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Reproduction (Cambridge, England)|July 18, 2014
Mouse models of altered gonadotrophin action: insight into male reproductive disordersKim C Jonas, Olayiwola O Oduwole, Hellevi Peltoketo, 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.Cancer Letters|August 18, 2004
Characterization and expression of the human WNT4; lack of associated germline mutations in high--to moderate--risk breast and ovarian cancerHellevi Peltoketo, Minna Allinen, Jaana Vuosku, et al.Endocrinology|February 23, 2010
Female mice expressing constitutively active mutants of FSH receptor present with a phenotype of premature follicle depletion and estrogen excessHellevi Peltoketo, Leena Strauss, Riikka Karjalainen, et al.Cellular and Molecular Life Sciences : CMLS|April 10, 2024
PALB2-mutated human mammary cells display a broad spectrum of morphological and functional abnormalities induced by increased TGFβ signalingHanna Tuppurainen, Niina Laurila, Marjut Nätynki, et al.International Journal of Cancer|February 28, 2019
Tumor suppressor MCPH1 regulates gene expression profiles related to malignant conversion and chromosomal assemblyAnna Tervasmäki, Tuomo Mantere, Leila Eshraghi, et al.Biochemical and Biophysical Research Communications|May 7, 2003
Production, purification, and functional analysis of recombinant human and mouse 17beta-hydroxysteroid dehydrogenase type 7Svea Törn, Pasi Nokelainen, Riitta Kurkela, et al.Molecular Human Reproduction|May 5, 2012
Structural and functional analysis of rare missense mutations in human chorionic gonadotrophin β-subunitLiina Nagirnaja, Česlovas Venclovas, Kristiina Rull, et al.The Journal of Clinical Investigation|March 28, 2018
Constitutively active follicle-stimulating hormone receptor enables androgen-independent spermatogenesisOlayiwola O Oduwole, Hellevi Peltoketo, Ariel Poliandri, et al.Cell Death & Disease|May 17, 2023
ABRAXAS1 orchestrates BRCA1 activities to counter genome destabilizing repair pathways-lessons from breast cancer patientsJuliane Sachsenweger, Rebecca Jansche, Tatjana Merk, et al.Pageof 3