A yeast and a human CCAAT-binding protein have heterologous subunits that are functionally interchangeable

The S. cerevisiae HAP2 and HAP3 gene products have been shown to recognize CCAAT-containing transcription elements as a HAP2/HAP3 multisubunit heterologous complex, or heteromer. Recently, we have demonstrated that the human sequence-specific DNA-binding protein, CPi, also recognizes CCAAT-containin...

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Veröffentlicht in:Cell 1988-04, Vol.53 (1), p.25-35
Hauptverfasser: Chodosh, Lewis A., Olesen, James, Hahn, Steven, Baldwin, Albert S., Guarente, Leonard, Sharp, Phillip A.
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Sprache:eng
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Zusammenfassung:The S. cerevisiae HAP2 and HAP3 gene products have been shown to recognize CCAAT-containing transcription elements as a HAP2/HAP3 multisubunit heterologous complex, or heteromer. Recently, we have demonstrated that the human sequence-specific DNA-binding protein, CPi, also recognizes CCAAT-containing transcription elements as a heteromer. Mammalian cells contain at least three distinct CCAAT-binding proteins, all of which appear to be multisubunit complexes composed of heterologous subunits. One of these proteins, CP1, has DNA-binding properties that are virtually identical to the yeast HAP2/HAP3 complex. These two proteins bind to the same target sequences, make the same DNA contacts, and are affected in a similar manner by mutations in the CCAAT element. Most surprisingly, the subunits of CP1 and HAP2/HAP3 are functionally interchangeable. That is, the yeast/human hybrid complexes that are formed retain the ability to specifically recognize CCAAT elements.
ISSN:0092-8674
1097-4172
DOI:10.1016/0092-8674(88)90484-9