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Appl Environ Microbiol ; 74(4): 1076-86, 2008 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-18083888

RESUMO

The production by filamentous fungi of therapeutic glycoproteins intended for use in mammals is held back by the inherent difference in protein N-glycosylation and by the inability of the fungal cell to modify proteins with mammalian glycosylation structures. Here, we report protein N-glycan engineering in two Aspergillus species. We functionally expressed in the fungal hosts heterologous chimeric fusion proteins containing different localization peptides and catalytic domains. This strategy allowed the isolation of a strain with a functional alpha-1,2-mannosidase producing increased amounts of N-glycans of the Man5GlcNAc2 type. This strain was further engineered by the introduction of a functional GlcNAc transferase I construct yielding GlcNAcMan5GlcNac2 N-glycans. Additionally, we deleted algC genes coding for an enzyme involved in an early step of the fungal glycosylation pathway yielding Man3GlcNAc2 N-glycans. This modification of fungal glycosylation is a step toward the ability to produce humanized complex N-glycans on therapeutic proteins in filamentous fungi.


Assuntos
Aspergillus/metabolismo , Polissacarídeos/biossíntese , Engenharia de Proteínas/métodos , Transformação Bacteriana/genética , Sequência de Bases , Clonagem Molecular , Primers do DNA/genética , Técnicas de Transferência de Genes , Manosiltransferases/genética , Dados de Sequência Molecular , Polissacarídeos/genética , Proteínas Recombinantes de Fusão/metabolismo , Reação em Cadeia da Polimerase Via Transcriptase Reversa , Análise de Sequência de DNA , Espectrometria de Massas por Ionização e Dessorção a Laser Assistida por Matriz , alfa-Manosidase/metabolismo
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