| Literature DB >> 15147199 |
Tohru Ichimura1, Hiroyuki Kubota, Takeshi Goma, Noboru Mizushima, Yoshinori Ohsumi, Maki Iwago, Kazue Kakiuchi, Hossain Uddin Shekhar, Takashi Shinkawa, Masato Taoka, Takashi Ito, Toshiaki Isobe.
Abstract
BMH1 and BMH2 encode Saccharomyces cerevisiae 14-3-3 homologues whose exact functions have remained unclear. The present work compares the transcriptomic and proteomic profiles of the wild type and a BMH1/2-deficient S. cerevisiae mutant (bmhDelta) using DNA microarrays and two-dimensional polyacrylamide gel electrophoresis. It is reported here that, although the global patterns of gene and protein expression are very similar between the two types of yeast cells, a subset of genes and proteins (a total of 220 genes) is significantly induced or reduced in the absence of Bmh1/2p. These genes include approximately 60 elements that could be linked to the reported phenotypes of the bmhDelta mutant (e.g., accumulation of glycogen and hypersensitivity to environmental stress) and/or could be the potential downstream targets of interacting partners of Bmh1/2p such as Msn2p and Rtg3p. Importantly, >30% of the identified genes (71 genes) were found to be associated with carbon (C) and nitrogen (N) metabolism and transport, thereby suggesting that Bmh1/2p may play a major role in the regulation of C/N-responsive cellular processes. This study presents the first comprehensive overview of the genes and proteins that are affected by the depletion of Bmh1/2p and extends the scope of knowledge of the regulatory roles of Bmh1/2p in S. cerevisiae.Entities:
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Year: 2004 PMID: 15147199 DOI: 10.1021/bi035421i
Source DB: PubMed Journal: Biochemistry ISSN: 0006-2960 Impact factor: 3.162