Signal peptidase I overproduction results in increased efficiencies of export and maturation of hybrid secretory proteins inEscherichia coli (original) (raw)

Lack of Effect of Leader Peptidase Overproduction on the Processing in vivo of Exported Proteins in Escherichia coli

Jamila Anba-mondoloni

Microbiology, 1986

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Export and secretion of overproduced OmpA-β-lactamase inEscherichia coli

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Non-functional expression of Escherichia coli signal peptidase I in Bacillus subtilis

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Efficient function of signal peptidase 1 of Escherichia coli is partly determined by residues in the mature N-terminus of exported proteins

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Energy is Required for Maturation of Exported Proteins in Escherichia coli

S. Harayama

European Journal of Biochemistry, 1981

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Determination of K m and k ca t for Signal Peptidase I Using a Full Length Secretory Precursor, pro-OmpA-nuclease A

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Journal of Molecular Biology, 1995

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Recombinant protein secretion in Escherichia coli

Gabriel Monteiro

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Secretion of heterologous gene products to the culture medium of Escherichia coli

Tomas Moks

Nucleic Acids Research, 1986

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Catalytic efficiency of signal peptidase I of Escherichia coli is comparable to that of members of the serine protease family

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Optimization of a Heterologous Signal Peptide by Site-Directed Mutagenesis for Improved Secretion of Recombinant Proteins in Escherichia coli

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Heterologous protein secretion by Lactobacillus plantarum using homologous signal peptides

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OmpA signal peptide leads to heterogenous secretion of B. subtilis chitosanase enzyme from E. coli expression system

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Analysis of factors affecting the periplasmic production of recombinant proteins in Escherichia coli

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The Plasmid-Encoded Signal Peptidase SipP Can Functionally Replace the Major Signal Peptidases SipS and SipT ofBacillus subtilis

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The endogenous Bacillus subtilis (natto) plasmids pTA1015 and pTA1040 contain signal peptidase-encoding genes: identification of a new structural module on cryptic plasmids

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Phage Shock Protein PspA of Escherichia coli Relieves Saturation of Protein Export via the Tat Pathway

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