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Expression of recombinant human phenylalanine hydroxylase as fusion protein in Escherichia coli circumvents proteolytic degradation by host cell proteases. Isolation and characterization of the wild-type enzyme.

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TLDR
The recombinant hPAH, recovered in soluble forms, revealed a high specific activity even in crude extracts and was detected as a homogeneous band by Western-blot analysis using affinity-purified polyclonal rabbit anti-(rat PAH) antibodies.
Abstract
Recombinant human phenylalanine hydroxylase (hPAH) was produced in high yields in Escherichia coli using the pET and pMAL expression vectors. In the pMAL system, hPAH was fused through the target sequences of the restriction protease factor Xa (IEGR) or enterokinase (D4K) to the C-terminal end of the highly expressed E. coli maltose-binding protein (MBP). The recombinant hPAH, recovered in soluble forms, revealed a high specific activity even in crude extracts and was detected as a homogeneous band by Western-blot analysis using affinity-purified polyclonal rabbit anti-(rat PAH) antibodies. The enzyme expressed in the pET system was subject to limited proteolysis by host cell proteases and was difficult to purify with a satisfactory yield. By contrast, when expressed as a fusion protein in the pMAL system, hPAH was resistant to cleavage by host cell proteases and was conveniently purified by affinity chromatography on an amylose resin. Catalytically active tetramer-dimer (in equilibrium) forms of the fusion protein were separated from inactive, aggregated forms by size-exclusion h.p.l.c. After cleavage by restriction protease, factor Xa or enterokinase, hPAH was separated from uncleaved fusion protein, MBP and restriction proteases by hydroxylapatite or ion-exchange (DEAE) chromatography. The yield of highly purified hPAH was approx. 10 mg/l of culture. The specific activity of the isolated recombinant enzyme was high (i.e. 1440 nmol of tyrosine.min-1.mg-1 with tetrahydrobiopterin as the cofactor) and its catalytic and physicochemical properties are essentially the same as those reported for the enzyme isolated from human liver. The recombinant enzyme, both as a fusion protein and as purified full-length hPAH, was phosphorylated in vitro by the catalytic subunit of cyclic AMP-dependent protein kinase. The phosphorylated from of hPAH electrophoretically displayed an apparently higher molecular mass (approximately 51 kDa) than the non-phosphorylated (approximately 50 kDa) form.

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Journal ArticleDOI

Advanced genetic strategies for recombinant protein expression in Escherichia coli.

TL;DR: Issues addressed include expression systems in general, selection of host strain, mRNA stability, codon bias, inclusion body formation and prevention, fusion protein technology and site-specific proteolysis, compartment directed secretion and finally co-overexpression technology.
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Reaction mechanisms of mononuclear non-heme iron oxygenases.

TL;DR: This review presents and analyzes results obtained in the past 6 years from primary sequences, structure-function relationships, and chemical kinetics and mechanisms, dealing with mononuclear non-heme iron interand intramolecular dioxygenases.
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Production of active eukaryotic proteins through bacterial expression systems: a review of the existing biotechnology strategies.

TL;DR: This work has divided the conversion of inactive protein, expressed as an insoluble fraction, into a soluble and active form into three major groups, which can be made amenable to the industrial production for that particular protein with minimum alterations.
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SUMO fusion technology for difficult-to-express proteins

TL;DR: The ability of gene fusions to improve expression, solubility, purification, and decrease proteolytic degradation will be discussed in this review and the newly described SUMO fusion system will be addressed.
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The P1' specificity of tobacco etch virus protease.

TL;DR: The results indicate that many side-chains can be accommodated in the P1' position of a TEV protease recognition site with little impact on the efficiency of processing.
References
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Journal ArticleDOI

Cleavage of Structural Proteins during the Assembly of the Head of Bacteriophage T4

TL;DR: Using an improved method of gel electrophoresis, many hitherto unknown proteins have been found in bacteriophage T4 and some of these have been identified with specific gene products.
Journal ArticleDOI

A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding

TL;DR: This assay is very reproducible and rapid with the dye binding process virtually complete in approximately 2 min with good color stability for 1 hr with little or no interference from cations such as sodium or potassium nor from carbohydrates such as sucrose.
Journal Article

Cleavage of structural proteins during the assemble of the head of bacterio-phage T4

U. K. Laemmli
- 01 Jan 1970 - 
TL;DR: Using an improved method of gel electrophoresis, many hitherto unknown proteins have been found in bacteriophage T4 and some of these have been identified with specific gene products as mentioned in this paper.
Journal ArticleDOI

Vectors that facilitate the expression and purification of foreign peptides in Escherichia coli by fusion to maltose-binding protein.

TL;DR: Vectors were constructed that allow foreign peptides to be expressed in Escherichia coli as fusion proteins that can be directed to the periplasm by including the leader sequence from the phoA gene on the vector.
Journal ArticleDOI

An Escherichia coli vector to express and purify foreign proteins by fusion to and separation from maltose-binding protein.

TL;DR: A plasmid vector has been constructed that directs the synthesis of high levels of fusions between a target protein and maltose-binding protein in Escherichia coli and a prokaryotic and a eukaryotic protein have been successfully purified by this method.
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