Desmin enters the nucleus of cardiac stem cells and modulates Nkx2.5 expression by participating in transcription factor complexes that interact with the<i>nkx2.5</i>gene

Christiane Fuchs(Max Perutz Labs), Sonja Gawlas(Max Perutz Labs), Philipp Heher(Max Perutz Labs), Sofia Nikouli(Academy of Athens), Hannah Paar(Max Perutz Labs), Mario Ivanković(Max Perutz Labs), Martina Schultheis(Max Perutz Labs), Julia Klammer(Max Perutz Labs), Teresa Gottschamel(Max Perutz Labs), Yassemi Capetanaki(Academy of Athens), Georg Weitzer(Max Perutz Labs)
Biology Open
January 19, 2016
Cited by 28Open Access
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Abstract

The transcription factor Nkx2.5 and the intermediate filament protein desmin are simultaneously expressed in cardiac progenitor cells during commitment of primitive mesoderm to the cardiomyogenic lineage. Up-regulation of Nkx2.5 expression by desmin suggests that desmin may contribute to cardiogenic commitment and myocardial differentiation by directly influencing the transcription of the nkx2.5 gene in cardiac progenitor cells. Here, we demonstrate that desmin activates transcription of nkx2.5 reporter genes, rescues nkx2.5 haploinsufficiency in cardiac progenitor cells, and is responsible for the proper expression of Nkx2.5 in adult cardiac side population stem cells. These effects are consistent with the temporary presence of desmin in the nuclei of differentiating cardiac progenitor cells and its physical interaction with transcription factor complexes bound to the enhancer and promoter elements of the nkx2.5 gene. These findings introduce desmin as a newly discovered and unexpected player in the regulatory network guiding cardiomyogenesis in cardiac stem cells.


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