Michaela Hiber
University of Duisburg-Essen
5 Papers
7 Citations
Michaela Hiber is an academic researcher from University of Duisburg-Essen. The author has contributed to research in topics: DNA methylation & Genomic imprinting. The author has an hindex of 3, co-authored 5 publications.
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Papers
Generation of an iPSC line of a patient with Angelman syndrome due to an imprinting defect.
Anika Neureiter,Björn Brändl,Michaela Hiber,Rashmi Tandon,Franz-Josef Müller,Laura Steenpass +5 more
TL;DR: The generated iPSC line was derived from skin fibroblasts of a patient with AS, who, due to an imprinting defect, lacked DNA methylation at the chromosome 15 imprinting center, which controls maternal-specific expression of UBE3A.
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A Mouse Model for Imprinting of the Human Retinoblastoma Gene.
TL;DR: The results indicate that site-specific integration of a proven human gametic differentially methylated region is not sufficient for acquisition of DNA methylation in the mouse germ line, even if promoter function of the element is maintained.
Human PPP1R26P1 Functions as cis-Repressive Element in Mouse Rb1
Laura Steenpass,Deniz Kanber,Michaela Hiber,Karin Buiting,Bernhard Horsthemke,Dietmar R. Lohmann +5 more
TL;DR: The results identify human P PP1R26P1 as a cis-repressive element and support a connection between retrotransposition of PPP1R 26P1 into human RB1 and the reduced expression of RB1 on the paternal allele.
Corrigendum: Angelman syndrome-derived neurons display late onset of paternal UBE3A silencing.
Jana Stanurova,Anika Neureiter,Michaela Hiber,Hannah de Oliveira Kessler,Kristin Stolp,Roman Goetzke,Diana Klein,Agnes Bankfalvi,Hannes Klump,Laura Steenpass +9 more
TL;DR: This corrects the article DOI: 10.1038/srep30792 to indicate that the author of the paper is a doctor of medicine rather than a scientist, as previously reported.
Angelman syndrome-derived neurons display late onset of paternal UBE3A silencing.
Jana Stanurova,Anika Neureiter,Michaela Hiber,Hannah de Oliveira Kessler,Kristin Stolp,Roman Goetzke,Diana Klein,Agnes Bankfalvi,Hannes Klump,Laura Steenpass +9 more
TL;DR: This new Angelman syndrome iPSC line allows to study imprinted gene regulation on both parental alleles and to dissect molecular pathways affected by the absence of UBE3A protein.