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MOLECULAR AND CELLULAR BIOLOGY, Jan. 1995, p. 534 539 0270-7306/95/$04.00 0 Copyright 1995, American Society for Microbiology Vol. 15, No. 1 The Yeast TATA-Binding Protein (TBP) Core Domain Assembles
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M.T.B. was the primary investigator in these studies. M.Z.M. was the primary investigator in these studies. The present work in this manuscript is largely a reinterpretation of the earlier work by B.J.O., J.K. & M.T.B. as to why and how these genes come into being in the first place. It is argued that in order to evolve into a multicellular organism one must first accumulate a population of small multicellular entities to allow the multiplication of mutations which lead to the production of the next generation. The following sequence is extracted from a transcript: This time it was the transcription factor binding protein: TBP and its associated factor binding protein (FBI) which were the focus of this study, not THIRD (transcription factor binding protein). This is supported by the fact that the genes in question are present in human, yeast, bacteria and eukaryotes (Perelman, 1994). This analysis of these yeast genes was made possible, in part, by the discovery that transcription factors could bind the yeast transcription factor binding domain (THIRD) and thereby modify the expression of the gene in response. In yeast, this THIRD domain is responsible for regulating the expression of one of the most important genes involved in the maintenance of the yeast cell cycle. THIRD proteins are ubiquitous and have large binding sites on all cell membranes in multicellular organisms. It is therefore possible that the yeast THIRD domain is similar in function to the yeast THIRD domain that was used in these studies. The yeast THIRD domain has a high expression level during normal growth in the absence of transcriptional inhibitors while the expression of the yeast THIRD domain during growth in the presence of a transcription inhibitor is less high that in the absence of the inhibitor (Perelman, 1994). Furthermore, it has been proposed that the yeast THIRD domain is involved in protein translation (Kirk, 1992). The same can be said for the yeast C-binding domain, another member of the yeast THIRD (Sara, 1993). The use of genes in yeast to define the role of proteins in the cellular environment can be seen in the use of the FSF hif1 in this study. It is clear that hif1 is part of the cell's immune system (Kauffman, 1994) and hif1 is expressed in response to Toxoplasma cysts in S.

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