Cornelia de Lange Syndrome mutations in SMC1A cause cohesion defects in yeast

Author:

Chen Jingrong1,Floyd Erin N1,Dawson Dean S12ORCID,Rankin Susannah12ORCID

Affiliation:

1. Program in Cell Cycle and Cancer Biology, Oklahoma Medical Research Foundation , 825 NE 13th St. Oklahoma City, OK 73104 , USA

2. Department of Cell Biology, University of Oklahoma Health Sciences Center , Oklahoma City, OK 73104 , USA

Abstract

Abstract Cornelia de Lange Syndrome (CdLS) is a developmental disorder characterized by limb truncations, craniofacial abnormalities, and cognitive delays. CdLS is caused mainly by mutations in genes encoding subunits or regulators of the cohesin complex. Cohesin plays 2 distinct roles in chromosome dynamics as follows: it promotes looping, organization, and compaction of individual chromosomes, and it holds newly replicated sister chromatids together until cell division. CdLS-associated mutations result in altered gene expression likely by affecting chromosome architecture. Whether CdLS mutations cause phenotypes through impact on sister chromatid cohesion is less clear. Here, we show that CdLS-associated mutations introduced into the SMC1A gene of budding yeast had measurable impacts on sister chromatid cohesion, mitotic progression, and DNA damage sensitivity. These data suggest that sister chromatid cohesion-related defects may contribute to phenotypes seen in CdLS affected individuals.

Funder

NIH

NIGMS

Publisher

Oxford University Press (OUP)

Subject

Genetics

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