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Feldmann H, Aigle M, Aljinovic G, Andre B, Baclet MC, Barthe C, Baur A, Becam AM, Biteau N, Boles E, et al  (1994) Complete DNA sequence of yeast chromosome II. EMBO J 13(24):5795-809

Abstract: In the framework of the EU genome-sequencing programmes, the complete DNA sequence of the yeast Saccharomyces cerevisiae chromosome II (807 188 bp) has been determined. At present, this is the largest eukaryotic chromosome entirely sequenced. A total of 410 open reading frames (ORFs) were identified, covering 72% of the sequence. Similarity searches revealed that 124 ORFs (30%) correspond to genes of known function, 51 ORFs (12.5%) appear to be homologues of genes whose functions are known, 52 others (12.5%) have homologues the functions of which are not well defined and another 33 of the novel putative genes (8%) exhibit a degree of similarity which is insufficient to confidently assign function. Of the genes on chromosome II, 37-45% are thus of unpredicted function. Among the novel putative genes, we found several that are related to genes that perform differentiated functions in multicellular organisms of are involved in malignancy. In addition to a compact arrangement of potential protein coding sequences, the analysis of this chromosome confirmed general chromosome patterns but also revealed particular novel features of chromosomal organization. Alternating regional variations in average base composition correlate with variations in local gene density along chromosome II, as observed in chromosomes XI and III. We propose that functional ARS elements are preferably located in the AT-rich regions that have a spacing of approximately 110 kb. Similarly, the 13 tRNA genes and the three Ty elements of chromosome II are found in AT-rich regions. In chromosome II, the distribution of coding sequences between the two strands is biased, with a ratio of 1.3:1. An interesting aspect regarding the evolution of the eukaryotic genome is the finding that chromosome II has a high degree of internal genetic redundancy, amounting to 16% of the coding capacity.

Status: Published Type: Journal Article PubMed ID: 7813418

Topics addressed in this paper

Number of different genes curated to this paper: 76

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Topics Topics not linked to Genes Genes linked to topics (#1 - 10 )
ALG3 AST1 CDS1 CHS3 CMD1 COQ1 COR1 CST26 CTP1 DER1
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Topics Genes linked to topics (#11 - 20 )
DUR1,2 ECM1 FIG1 FUI1 FUR4 FZO1 GDT1 GIP1 GRX7 HMT1
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Topics Genes linked to topics (#21 - 30 )
HSP26 HTA2 IST2 KIP1 KTR4 LSM2 LYS2 MAP2 MCM7 MED8
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Topics Genes linked to topics (#31 - 40 )
MNN2 MRP21 MRPL37 MUD1 PCS60 PRP6 PRS4 RDH54 REG2 REI1
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Topics Genes linked to topics (#41 - 50 )
RFC5 RIB1 RIB5 RIF1 RPG1 RPL19B RPS11B RPS9B RRN6 RTG3
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Topics Genes linked to topics (#51 - 60 )
SAS3 SCO1 SCO2 SEC66 SEF1 SHE1 SKT5 SLM6 SMY2 SPT7
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Topics Genes linked to topics (#61 - 70 )
SSE2 STU1 SUL1 TAF5 TBS1 tD(GUC)B TEC1 TIM12 TIP1 UGA2
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Topics Genes linked to topics (#71 - 76 )
UMP1 URA7 VMA2 VPS15 YBR056W YBR204C
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