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We are analyzing https://www.nature.com/articles/370477a0.

Title:
Nucleosome disruption and enhancement of activator binding by a human SW1/SNF complex | Nature
Description:
CHROMATIN structure can affect the transcriptional activity of eukaryotic structural genes by blocking access of sequence-specific activator proteins (activators) to their promoter-binding sites1. For example, the DNA-binding domain of the yeast GAL4 protein interacts very poorly with nucleosome cores compared with naked DNA2 (and see below), and binding of other activators is even more strongly inhibited2,3. The way in which activators bind to nucleosomal DNA is therefore a critical aspect of transcriptional activation. Genetic studies have suggested that the multi-component SWI/SNF complex of Saccharomyces cerevisiae facilitates transcription by altering the structure of the chromatin4,5. Here we identify and partially purify a human homologue of the yeast SWI/SNF complex (hSWI/SNF complex). We show that a partially purified hSWI/SNF complex mediates the ATP-dependent disruption of a nucleosome, thereby enabling the activators, GAL4โ€“VP16 and GAL4โ€“AH, to bind within a nucleosome core. We conclude that the hSWI/SNF complex acts directly to reorganize chromatin structure so as to facilitate binding of transcription factors.
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article, nature, cas, google, scholar, access, complex, ads, kingston, cell, content, nucleosome, chromatin, cookies, imbalzano, swisnf, usa, privacy, genes, massachusetts, cancer, data, binding, kwon, khavari, green, structure, activators, open, workman, dev, biol, ptashne, medical, advertising, information, subscribe, august, disruption, activator, human, anthony, robert, yeast, hswisnf, institution, buy, accessibility, taylor, peterson,

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nature portfolio permissions reprints privacy policy multi-component swi/snf complex advertising social media human sw1/snf complex yeast swi/snf complex swi/snf complex subunit subscribe nature klf4 recruits swi/snf nature 355 nature 366 nature 370 nature 330 nature 335 nature 349 nature increase chromatin accessibility sequence-specific activator proteins hswi/snf complex personal data reorganize chromatin structure orchestrates cancer immunity data protection springerlink instant access permissions privacy harvard medical school explore content subscription content nucleosome cores compared nucleosome acidic patch european economic area institutional subscriptions read endothelial enhancer landscape ฮฒ-4 integrin expression accepting optional cookies blocking access atp-dependent disruption article kwon journals search log issue learn eukaryotic structural genes promoter-binding sites1 manage preferences massachusetts medical center massachusetts general hospital dna-binding domain content

Schema {๐Ÿ—บ๏ธ}

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         description:CHROMATIN structure can affect the transcriptional activity of eukaryotic structural genes by blocking access of sequence-specific activator proteins (activators) to their promoter-binding sites1. For example, the DNA-binding domain of the yeast GAL4 protein interacts very poorly with nucleosome cores compared with naked DNA2 (and see below), and binding of other activators is even more strongly inhibited2,3. The way in which activators bind to nucleosomal DNA is therefore a critical aspect of transcriptional activation. Genetic studies have suggested that the multi-component SWI/SNF complex of Saccharomyces cerevisiae facilitates transcription by altering the structure of the chromatin4,5. Here we identify and partially purify a human homologue of the yeast SWI/SNF complex (hSWI/SNF complex). We show that a partially purified hSWI/SNF complex mediates the ATP-dependent disruption of a nucleosome, thereby enabling the activators, GAL4รขย€ย“VP16 and GAL4รขย€ย“AH, to bind within a nucleosome core. We conclude that the hSWI/SNF complex acts directly to reorganize chromatin structure so as to facilitate binding of transcription factors.
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      headline:Nucleosome disruption and enhancement of activator binding by a human SW1/SNF complex
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