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Tsai HK, et al.  (2007) Co-expression of adjacent genes in yeast cannot be simply attributed to shared regulatory system. BMC Genomics 8:352

Abstract: ABSTRACT: BACKGROUND: Adjacent gene pairs in the yeast genome have a tendency to express concurrently. Sharing of regulatory elements within the intergenic region of those adjacent gene pairs was often considered the major mechanism responsible for such co-expression. However, it is still in debate to what extent that common transcription factors (TFs) contribute to the co-expression of adjacent genes. In order to resolve the evolutionary aspect of this issue, we investigated the conservation of adjacent pairs in five yeast species. By using the information for TF binding sites in promoter regions available from the MYBS database (http://cg1.iis.sinica.edu.tw/~mybs/), the ratios of TF-sharing pairs among all the adjacent pairs in yeast genomes were analyzed. The levels of co-expression in different adjacent patterns were also compared. RESULTS: Our analyses showed that the proportion of adjacent pairs conserved in five yeast species is relatively low compared to that in the mammalian lineage. The proportion was also low for adjacent gene pairs with shared TFs. Particularly, the statistical analysis suggested that co-expression of adjacent gene pairs was not noticeably associated with the sharing of TFs in these pairs. We further proposed a case of the PAC (polymerase A and C) and RRPE (rRNA processing element) motifs which co-regulate divergent/bidirectional pairs, and found that the shared TFs were not significantly relevant to co-expression of divergent promoters among adjacent genes. CONCLUSION: Our findings suggested that the commonly shared cis-regulatory system does not solely contribute to the co-expression of adjacent gene pairs in yeast genome. Therefore we believe that during evolution yeasts have developed a sophisticated regulatory system that integrates both TF-based and non-TF based mechanisms(s) for concurrent regulation of neighboring genes in response to various environmental changes.

Status: Published Type: Journal Article PubMed ID: 17910772

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ALB1 BRE2 CTR9 ECM16 FYV7 GCD10 GTF1 ICE2 IRC19 LCP5
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MRPL16 MTC1 NIP7 NOG1 NOP1 NOP2 NOP7 NOP8 NSA2 NUP133
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NUP85 PET309 PKH3 PPR1 PUS1 QCR2 RIX7 RPA49 RPC53 RPC82
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RPF2 RRP3 SAS10 SAS2 SEC62 SSF1 TSC13 URA7 URB2 UTP21
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UTP25 VIP1 YNL247W
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