Literature DB >> 11254122

Characterization of the lys2 gene of Acremonium chrysogenum encoding a functional alpha-aminoadipate activating and reducing enzyme.

M J Hijarrubia1, J F Aparicio, J Casqueiro, J F Martín.   

Abstract

A 5.2-kb NotI DNA fragment isolated from a genomic library of Acremonium chrysogenum by hybridization with a probe internal to the Penicillium chrysogenum lys2 gene, was able to complement an alpha-aminoadipate reductase-deficient mutant of P. chrysogenum (lysine auxotroph L-G-). Enzyme assays showed that the alpha-aminoadipate reductase activity was restored in all the transformants tested. The lys2-encoded enzyme catalyzed both the activation and reduction of alpha-aminoadipic acid to its semialdehyde, as shown by reaction of the product with p-dimethylaminobenzaldehyde. The reaction required NADPH, and was not observed in the presence of NADH. Sequence analysis revealed that the gene encodes a protein with relatively high similarity to members of the superfamily of acyladenylate-forming enzymes. The Lys2 protein contained all nine motifs that are conserved in the adenylating domain of this enzyme family, a peptidyl carrier domain, and a reduction domain. In addition, a new NADP-binding motif located at the N-terminus of the reduction domain that may form a Rossmann-like betaalphabeta-fold has been identified and found to be shared by all known Lys2 proteins. The lys2 gene was mapped to chromosome I (2.2 Mb, the smallest chromosome) of A. chrysogenum C10 (the chromosome that contains the "late" cephalosporin cluster) and is transcribed as a monocistronic 4.5-kb mRNA although at relatively low levels compared with the beta-actin gene.

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Year:  2001        PMID: 11254122     DOI: 10.1007/s004380000364

Source DB:  PubMed          Journal:  Mol Gen Genet        ISSN: 0026-8925


  11 in total

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3.  Novel posttranslational activation of the LYS2-encoded alpha-aminoadipate reductase for biosynthesis of lysine and site-directed mutational analysis of conserved amino acid residues in the activation domain of Candida albicans.

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4.  Functional and phylogenetic divergence of fungal adenylate-forming reductases.

Authors:  Daniel Kalb; Gerald Lackner; Dirk Hoffmeister
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5.  Cytosolic NADPH balancing in Penicillium chrysogenum cultivated on mixtures of glucose and ethanol.

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Review 6.  Cephalosporin C biosynthesis and fermentation in Acremonium chrysogenum.

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7.  A rapid and specific method for the detection of indole in complex biological samples.

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8.  The reductase domain in a Type I fatty acid synthase from the apicomplexan Cryptosporidium parvum: restricted substrate preference towards very long chain fatty acyl thioesters.

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9.  Site-directed mutational analysis of the novel catalytic domains of alpha-aminoadipate reductase (Lys2p) from Candida albicans.

Authors:  S Guo; J K Bhattacharjee
Journal:  Mol Genet Genomics       Date:  2003-03-22       Impact factor: 3.291

10.  Molecular evolution of adenylating domain of aminoadipate reductase.

Authors:  Kwang-Deuk An; Hiromi Nishida; Yoshiharu Miura; Akira Yokota
Journal:  BMC Evol Biol       Date:  2003-05-08       Impact factor: 3.260

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