Dysfunction of programmed embryo senescence is linked to genetic developmental defects

Author:

de Lope Cristina1ORCID,García-Lucena Rebeca1ORCID,Magariños Marta23,León Yolanda2ORCID,Casa-Rodríguez Nuria1ORCID,Contreras Nuria1ORCID,Escudero-Iriarte Carmen1ORCID,Varela-Nieto Isabel345ORCID,Maire Pascal6ORCID,Palmero Ignacio1ORCID

Affiliation:

1. Instituto de Investigaciones Biomédicas “Alberto Sols” CSIC-UAM 1 Cell Senescence and Tumor Suppression Lab , , 28029 Madrid , Spain

2. Universidad Autónoma de Madrid 2 Biology Department , , 28049 Madrid , Spain

3. Rare Diseases Networking Biomedical Research Centre (CIBERER), CIBER, Carlos III Institute of Health 3 , 28029 Madrid , Spain

4. Instituto de Investigaciones Biomédicas “Alberto Sols” CSIC-UAM 4 Neuropathology of Hearing and Myelinopathies Lab , , 28029 Madrid , Spain

5. Hospital La Paz Institute for Health Research (IdiPAZ) 5 , 28046 Madrid , Spain

6. Université de Paris Cité, Institut Cochin, INSERM, CNRS 6 , 75014 Paris , France

Abstract

ABSTRACT Developmental senescence is a form of programmed senescence that contributes to morphogenesis during embryonic development. We showed recently that the SIX1 homeoprotein, an essential regulator of organogenesis, is also a repressor of adult cellular senescence. Alterations in the SIX/EYA pathway are linked to the human branchio-oto-renal (BOR) syndrome, a rare congenital disorder associated with defects in the ears, kidneys and branchial arches. Here, we have used Six1-deficient mice, an animal model of the BOR syndrome, to investigate whether dysfunction of senescence underpins the developmental defects associated with SIX1 deficiency. We have focused on the developing inner ear, an organ with physiological developmental senescence that is severely affected in Six1-deficient mice and BOR patients. We show aberrant levels and distribution of senescence markers in Six1-deficient inner ears concomitant with defective morphogenesis of senescent structures. Transcriptomic analysis and ex vivo assays support a link between aberrant senescence and altered morphogenesis in this model, associated with deregulation of the TGFβ/BMP pathway. Our results show that misregulation of embryo senescence may lead to genetic developmental disorders, significantly expanding the connection between senescence and disease.

Funder

Comunidad de Madrid

Ministerio de Ciencia e Innovación

Agencia Estatal de Investigación

European Regional Development Fund

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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