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Paired yeast one-hybrid assays to detect DNA-binding cooperativity and antagonism across transcription factors.


ABSTRACT: Cooperativity and antagonism between transcription factors (TFs) can drastically modify their binding to regulatory DNA elements. While mapping these relationships between TFs is important for understanding their context-specific functions, existing approaches either rely on DNA binding motif predictions, interrogate one TF at a time, or study individual TFs in parallel. Here, we introduce paired yeast one-hybrid (pY1H) assays to detect cooperativity and antagonism across hundreds of TF-pairs at DNA regions of interest. We provide evidence that a wide variety of TFs are subject to modulation by other TFs in a DNA region-specific manner. We also demonstrate that TF-TF relationships are often affected by alternative isoform usage and identify cooperativity and antagonism between human TFs and viral proteins from human papillomaviruses, Epstein-Barr virus, and other viruses. Altogether, pY1H assays provide a broadly applicable framework to study how different functional relationships affect protein occupancy at regulatory DNA regions.

SUBMITTER: Berenson A 

PROVIDER: S-EPMC10584920 | biostudies-literature | 2023 Oct

REPOSITORIES: biostudies-literature

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Paired yeast one-hybrid assays to detect DNA-binding cooperativity and antagonism across transcription factors.

Berenson Anna A   Lane Ryan R   Soto-Ugaldi Luis F LF   Patel Mahir M   Ciausu Cosmin C   Li Zhaorong Z   Chen Yilin Y   Shah Sakshi S   Santoso Clarissa C   Liu Xing X   Spirohn Kerstin K   Hao Tong T   Hill David E DE   Vidal Marc M   Fuxman Bass Juan I JI  

Nature communications 20231018 1


Cooperativity and antagonism between transcription factors (TFs) can drastically modify their binding to regulatory DNA elements. While mapping these relationships between TFs is important for understanding their context-specific functions, existing approaches either rely on DNA binding motif predictions, interrogate one TF at a time, or study individual TFs in parallel. Here, we introduce paired yeast one-hybrid (pY1H) assays to detect cooperativity and antagonism across hundreds of TF-pairs at  ...[more]

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