scholarly journals Author response: Enhancer architecture sensitizes cell specific responses to Notch gene dose via a bind and discard mechanism

2020 ◽  
Author(s):  
Yi Kuang ◽  
Ohad Golan ◽  
Kristina Preusse ◽  
Brittany Cain ◽  
Collin J Christensen ◽  
...  
Keyword(s):  
2016 ◽  
Author(s):  
Bayly S Wheeler ◽  
Erika Anderson ◽  
Christian Frøkjær-Jensen ◽  
Qian Bian ◽  
Erik Jorgensen ◽  
...  

eLife ◽  
2020 ◽  
Vol 9 ◽  
Author(s):  
Yi Kuang ◽  
Ohad Golan ◽  
Kristina Preusse ◽  
Brittany Cain ◽  
Collin J Christensen ◽  
...  

Notch pathway haploinsufficiency can cause severe developmental syndromes with highly variable penetrance. Currently, we have a limited mechanistic understanding of phenotype variability due to gene dosage. Here, we unexpectedly found that inserting an enhancer containing pioneer transcription factor sites coupled to Notch dimer sites can induce a subset of Notch haploinsufficiency phenotypes in Drosophila with wild type Notch gene dose. Using Drosophila genetics, we show that this enhancer induces Notch phenotypes in a Cdk8-dependent, transcription-independent manner. We further combined mathematical modeling with quantitative trait and expression analysis to build a model that describes how changes in Notch signal production versus degradation differentially impact cellular outcomes that require long versus short signal duration. Altogether, these findings support a ‘bind and discard’ mechanism in which enhancers with specific binding sites promote rapid Cdk8-dependent Notch turnover, and thereby reduce Notch-dependent transcription at other loci and sensitize tissues to gene dose based upon signal duration.


2019 ◽  
Author(s):  
Yi Kuang ◽  
Ohad Golan ◽  
Kristina Preusse ◽  
Brittany Cain ◽  
Joseph Salomone ◽  
...  

SUMMARYNotch pathway haploinsufficiency can cause severe developmental syndromes with highly variable penetrance. Currently, we have a limited mechanistic understanding of phenotype variability due to gene dosage. Here, we show that inserting a single enhancer containing pioneer transcription factor sites coupled to Notch dimer sites can unexpectedly induce a subset of Drosophila Notch haploinsufficiency phenotypes in an animal with wild type Notch gene dose. Mechanistically, this enhancer couples Notch DNA binding to degradation in a Cdk8-dependent, transcription-independent manner. Using mathematical modeling combined with quantitative trait and expression analysis, we show that tissues requiring long duration Notch signals are more sensitive to perturbations in Notch degradation compared to tissues relying upon short duration processes. These findings support a novel “bind and discard” mechanism in which enhancers with specific binding sites promote rapid Notch turnover, reduce Notch-dependent transcription at other loci, and thereby sensitize tissues to gene dose based upon signal duration.


2020 ◽  
Author(s):  
Gesa F. Dinges ◽  
Alexander S. Chockley ◽  
Till Bockemühl ◽  
Kei Ito ◽  
Alexander Blanke ◽  
...  

2020 ◽  
Author(s):  
Charles A. Williams ◽  
Kimberly E. Miller ◽  
Nisa P. Williams ◽  
Christine V. Portfors ◽  
David J. Perkel

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