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Niño-Vega G, Pérez-Silva C, San-Blas G. The actin gene in Paracoccidioides brasiliensis: organization, expression and phylogenetic analyses. ACTA ACUST UNITED AC 2007; 111:363-9. [PMID: 17363236 DOI: 10.1016/j.mycres.2006.12.004] [Citation(s) in RCA: 9] [Impact Index Per Article: 0.5] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 03/07/2006] [Revised: 10/30/2006] [Accepted: 12/03/2006] [Indexed: 11/16/2022]
Abstract
PbrACT1, the gene responsible for the synthesis of actin in Paracoccidioides brasiliensis, was found as a single copy, organized into six exons and five introns. Its open reading frame (ORF) codes for a putative protein of 375 amino acids, with a molecular mass of 41.5 kDa and an isoelectric point of 5.6. Analysis of the nucleotide sequence revealed a high homology to other fungal actins, the presence of characteristic fungal actin sequences, and heat shock elements at the 5' untranslated region (UTR). Phylogenetic analyses with deduced amino acid sequences of fungal actins grouped P. brasiliensis within the phylum Ascomycota, order Onygenales, in concordance with a few previous reports. Patterns of expression through the temperature-induced morphological transitions from mycelial to yeast-like shapes and reverse, suggests that PbrACT1 is regulated in this process. The PbrACT1 gene sequence is available at the GenBank database under accession number AY383732.
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Affiliation(s)
- Gustavo Niño-Vega
- Instituto Venezolano de Investigaciones Científicas (IVIC), Centro de Microbiología y Biología Celular, Apartado 21827, Caracas 1020A, Venezuela.
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Andrade RV, Paes HC, Nicola AM, de Carvalho MJA, Fachin AL, Cardoso RS, Silva SS, Fernandes L, Silva SP, Donadi EA, Sakamoto-Hojo ET, Passos GAS, Soares CMA, Brígido MM, Felipe MSS. Cell organisation, sulphur metabolism and ion transport-related genes are differentially expressed in Paracoccidioides brasiliensis mycelium and yeast cells. BMC Genomics 2006; 7:208. [PMID: 16907987 PMCID: PMC1578568 DOI: 10.1186/1471-2164-7-208] [Citation(s) in RCA: 17] [Impact Index Per Article: 0.9] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 02/19/2006] [Accepted: 08/14/2006] [Indexed: 12/03/2022] Open
Abstract
BACKGROUND Mycelium-to-yeast transition in the human host is essential for pathogenicity by the fungus Paracoccidioides brasiliensis and both cell types are therefore critical to the establishment of paracoccidioidomycosis (PCM), a systemic mycosis endemic to Latin America. The infected population is of about 10 million individuals, 2% of whom will eventually develop the disease. Previously, transcriptome analysis of mycelium and yeast cells resulted in the assembly of 6,022 sequence groups. Gene expression analysis, using both in silico EST subtraction and cDNA microarray, revealed genes that were differential to yeast or mycelium, and we discussed those involved in sugar metabolism. To advance our understanding of molecular mechanisms of dimorphic transition, we performed an extended analysis of gene expression profiles using the methods mentioned above. RESULTS In this work, continuous data mining revealed 66 new differentially expressed sequences that were MIPS(Munich Information Center for Protein Sequences)-categorised according to the cellular process in which they are presumably involved. Two well represented classes were chosen for further analysis: (i) control of cell organisation - cell wall, membrane and cytoskeleton, whose representatives were hex (encoding for a hexagonal peroxisome protein), bgl (encoding for a 1,3-beta-glucosidase) in mycelium cells; and ags (an alpha-1,3-glucan synthase), cda (a chitin deacetylase) and vrp (a verprolin) in yeast cells; (ii) ion metabolism and transport - two genes putatively implicated in ion transport were confirmed to be highly expressed in mycelium cells - isc and ktp, respectively an iron-sulphur cluster-like protein and a cation transporter; and a putative P-type cation pump (pct) in yeast. Also, several enzymes from the cysteine de novo biosynthesis pathway were shown to be up regulated in the yeast form, including ATP sulphurylase, APS kinase and also PAPS reductase. CONCLUSION Taken together, these data show that several genes involved in cell organisation and ion metabolism/transport are expressed differentially along dimorphic transition. Hyper expression in yeast of the enzymes of sulphur metabolism reinforced that this metabolic pathway could be important for this process. Understanding these changes by functional analysis of such genes may lead to a better understanding of the infective process, thus providing new targets and strategies to control PCM.
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Affiliation(s)
- Rosângela V Andrade
- Depto. de Biologia Celular, Universidade de Brasília, 70910–900. Brasília-DF, Brazil
| | - Hugo C Paes
- Depto. de Biologia Celular, Universidade de Brasília, 70910–900. Brasília-DF, Brazil
| | - André M Nicola
- Depto. de Biologia Celular, Universidade de Brasília, 70910–900. Brasília-DF, Brazil
| | | | - Ana Lúcia Fachin
- Depto de Genética, Faculdade de Medicina de Ribeirão Preto, Universidade de São Paulo, 14040–900, Ribeirão Preto, SP, Brazil
| | - Renato S Cardoso
- Depto de Genética, Faculdade de Medicina de Ribeirão Preto, Universidade de São Paulo, 14040–900, Ribeirão Preto, SP, Brazil
| | - Simoneide S Silva
- Depto. de Biologia Celular, Universidade de Brasília, 70910–900. Brasília-DF, Brazil
| | - Larissa Fernandes
- Depto. de Biologia Celular, Universidade de Brasília, 70910–900. Brasília-DF, Brazil
| | - Silvana P Silva
- Depto de Bioquímica e Biologia Molecular, Universidade Federal de Goiás, 74001–970, Goiânia, GO, Brazil
| | - Eduardo A Donadi
- Depto de Genética, Faculdade de Medicina de Ribeirão Preto, Universidade de São Paulo, 14040–900, Ribeirão Preto, SP, Brazil
| | - Elza T Sakamoto-Hojo
- Depto de Genética, Faculdade de Medicina de Ribeirão Preto, Universidade de São Paulo, 14040–900, Ribeirão Preto, SP, Brazil
| | - Geraldo AS Passos
- Depto de Genética, Faculdade de Medicina de Ribeirão Preto, Universidade de São Paulo, 14040–900, Ribeirão Preto, SP, Brazil
| | - Célia MA Soares
- Depto de Bioquímica e Biologia Molecular, Universidade Federal de Goiás, 74001–970, Goiânia, GO, Brazil
| | - Marcelo M Brígido
- Depto. de Biologia Celular, Universidade de Brasília, 70910–900. Brasília-DF, Brazil
| | - Maria Sueli S Felipe
- Depto. de Biologia Celular, Universidade de Brasília, 70910–900. Brasília-DF, Brazil
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