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Biomedical subjects

M A Freire-Picos

Publications and source records attributed to M A Freire-Picos.

6 recordsLinked to original sources

Characterization of promoter regions involved in high expression of KlCYC1.

Functional analysis of the KlCYC1 promoter reveals that sequences located upstream to those already published [Freire-Picos, M. A., Rodríguez-Torres, A. M., Ramil, E., Cerdán, M. E., Breuning, K. D., Hollenberg, C. P. & Zitomer, R. S. (1993) Sequence of a cytochrome c from Kluyveromyces lactis and its upstream region, Yeast 9, 201-204] and extending from positions -780 to -371 are important for maintaining high levels of expression, although this region contains both negative and positive elements. A consensus sequence for interaction with KlCpf1p is present at position -492, into the negative site, and specific protein binding to KlCpf1p has been demonstrated. Deletion of the sequences from positions -413 to -338 diminishes KlCYC1 transcription; protein binding to two sequences included in this activator region is detected and several points of evidence indicate that the complex observed is different from the Hap2/3/4/5p complex. Binding of KlCpf1p and the activator complex to the promoter is constitutive in different carbon sources. Although the promoter contains CCAAT boxes, directed mutagenesis has revealed that they are not related to the moderate de-repression observed in glycerol media.

Base Sequence

The HIS4 gene from the yeast Kluyveromyces lactis.

The Kluyveromyces lactis HIS4 gene was cloned by complementation of a Saccharomyces cerevisiae his4 mutant. Sequence analysis revealed a 2388 bp open reading frame encoding a single polypeptide predicted to encompass three distinct enzymatic activities (phosphoribosyl-AMP cyclohydrolase, phosphoribosyl-ATP pyrophosphohydrolase and histidinol dehydrogenase). This structural organization is strikingly similar to that of the His4 proteins from S. cerevisiae and Pichia pastoris. Transcript analysis detected a single mRNA species of 2.5 kb.

Alcohol Oxidoreductases

PICDI, a simple program for codon bias calculation.

PICDI is a very simple program designed to calculate the Intrinsic Codon Deviation Index (ICDI). The program is available in Macintosh as well a PC format. Requirements for correct input of the sequences have been kept to a minimum and the analysis of sequences up to 2000 codons is very quick. The ICDI is very useful for estimation of codon bias of genes from species in which optimal codons are not known. The availability of a computer program for its calculation will increase its usefulness in the fields of Molecular Biology and Biotechnology.

Codon

Regulation of cytochrome c expression in the aerobic respiratory yeast Kluyveromyces lactis.

Transcriptional regulation of the KlCYC1 gene from the aerobic respiratory yeast Kluyveromyces lactis has been studied. The KlCYC1 gene produces two transcripts of different sizes, in contrast with the single transcripts found for CYC1 and CYC7 from Saccharomyces cerevisiae, and for the CYC gene from Schwanniomyces occidentalis. Both KlCYC1 transcripts respond in the same way to the regulatory signals studied here. The transcription of KlCYC1 is regulated by oxygen and this control is mediated by heme. The KlCYC1 gene is also subject to catabolite repression. Heterologous expression in S. cerevisiae mutants reveals that the factors HAP1 and HAP2 take part in the regulatory mechanism.

Base Sequence

Yeast phylogenetic relationships based on cytochrome c sequences.

The availability of the KICYC1 sequence was used to establish homologies with other cytochrome c genes from yeasts and the fungus Neurospora crassa. In terms of nucleotide composition, the cytochrome c gene from Kluyveromyces lactis showed a higher homology with Schwanniomyces occidentalis than with Saccharomyces cerevisiae, and this point is discussed in regard to the differences found in the codon usage of these yeasts. The deduced amino acidic composition of the protein facilitated comparison of its sequence with other cytochrome c protein sequences and new assignments of phylogenetic relationships. In this context Kluyveromyces lactis was most closely related to Candida krusei.

Cytochrome c Group

Codon usage in Kluyveromyces lactis and in yeast cytochrome c-encoding genes.

Codon usage (CU) in Kluyveromyces lactis has been studied. Comparison of CU in highly and lowly expressed genes reveals the existence of 21 optimal codons; 18 of them are also optimal in other yeasts like Saccharomyces cerevisiae or Candida albicans. Codon bias index (CBI) values have been recalculated with reference to the assignment of optimal codons in K. lactis and compared to those previously reported in the literature taking as reference the optimal codons from S. cerevisiae. A new index, the intrinsic codon deviation index (ICDI), is proposed to estimate codon bias of genes from species in which optimal codons are not known; its correlation with other index values, like CBI or effective number of codons (Nc), is high. A comparative analysis of CU in six cytochrome-c-encoding genes (CYC) from five yeasts is also presented and the differences found in the codon bias of these genes are discussed in relation to the metabolic type to which the corresponding yeasts belong. Codon bias in the CYC from K. lactis and S. cerevisiae is correlated to mRNA levels.

Amino Acids