Literature DB >> 9232886

Secretion of active recombinant phytase from soybean cell-suspension cultures.

J Li1, C E Hegeman, R W Hanlon, G H Lacy, M D Denbow, E A Grabau.   

Abstract

Phytase, an enzyme that degrades the phosphorus storage compound phytate, has the potential to enhance phosphorus availability in animal diets when engineered into soybean (Glycine max) seeds. The phytase gene from Aspergillus niger was inserted into soybean transformation plasmids under control of constitutive and seed-specific promoters, with and without a plant signal sequence. Suspension cultures were used to confirm phytase expression in soybean cells. Phytase mRNA was observed in cultures containing constitutively expressed constructs. Phytase activity was detected in the culture medium from transformants that received constructs containing the plant signal sequence, confirming expectations that the protein would follow the default secretory pathway. Secretion also facilitated characterization of the biochemical properties of recombinant phytase. Soybean-synthesized phytase had a lower molecular mass than did the fungal enzyme. However, deglycosylation of the recombinant and fungal phytase yielded polypeptides of identical molecular mass (49 kD). Temperature and pH optima of the recombinant phytase were indistinguishable from the commercially available fungal phytase. Thermal inactivation studies of the recombinant phytase suggested that the additional protein stability would be required to withstand the elevated temperatures involved in soybean processing.

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Year:  1997        PMID: 9232886      PMCID: PMC158400          DOI: 10.1104/pp.114.3.1103

Source DB:  PubMed          Journal:  Plant Physiol        ISSN: 0032-0889            Impact factor:   8.340


  17 in total

1.  Multiple cis regulatory elements for maximal expression of the cauliflower mosaic virus 35S promoter in transgenic plants.

Authors:  R X Fang; F Nagy; S Sivasubramaniam; N H Chua
Journal:  Plant Cell       Date:  1989-01       Impact factor: 11.277

2.  Sequence complexity of polyadenylated ribonucleic acid from soybean suspension culture cells.

Authors:  C D Silflow; J R Hammett; J L Key
Journal:  Biochemistry       Date:  1979-06-26       Impact factor: 3.162

3.  Efficacy of low-activity, microbial phytase in improving the bioavailability of phosphorus in corn-soybean meal diets for pigs.

Authors:  G L Cromwell; R D Coffey; H J Monegue; J H Randolph
Journal:  J Anim Sci       Date:  1995-02       Impact factor: 3.159

4.  Deglycosylation of glycoproteins by trifluoromethanesulfonic acid.

Authors:  A S Edge; C R Faltynek; L Hof; L E Reichert; P Weber
Journal:  Anal Biochem       Date:  1981-11-15       Impact factor: 3.365

5.  Duplication of CaMV 35S Promoter Sequences Creates a Strong Enhancer for Plant Genes.

Authors:  R Kay; A Chan; M Daly; J McPherson
Journal:  Science       Date:  1987-06-05       Impact factor: 47.728

6.  Cloning, characterization and overexpression of the phytase-encoding gene (phyA) of Aspergillus niger.

Authors:  W van Hartingsveldt; C M van Zeijl; G M Harteveld; R J Gouka; M E Suykerbuyk; R G Luiten; P A van Paridon; G C Selten; A E Veenstra; R F van Gorcom
Journal:  Gene       Date:  1993-05-15       Impact factor: 3.688

7.  Identification and cloning of a second phytase gene (phyB) from Aspergillus niger (ficuum).

Authors:  K C Ehrlich; B G Montalbano; E J Mullaney; H C Dischinger; A H Ullah
Journal:  Biochem Biophys Res Commun       Date:  1993-08-31       Impact factor: 3.575

8.  Positive identification of a lambda gt11 clone containing a region of fungal phytase gene by immunoprobe and sequence verification.

Authors:  E J Mullaney; D M Gibson; A H Ullah
Journal:  Appl Microbiol Biotechnol       Date:  1991-08       Impact factor: 4.813

9.  Functional analysis of regulatory elements in a plant embryo-specific gene.

Authors:  Z L Chen; M A Schuler; R N Beachy
Journal:  Proc Natl Acad Sci U S A       Date:  1986-11       Impact factor: 11.205

10.  Improving phosphorus availability in soybean meal for broilers by supplemental phytase.

Authors:  D M Denbow; V Ravindran; E T Kornegay; Z Yi; R M Hulet
Journal:  Poult Sci       Date:  1995-11       Impact factor: 3.352

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  25 in total

Review 1.  Use of plant roots for phytoremediation and molecular farming.

Authors:  D Gleba; N V Borisjuk; L G Borisjuk; R Kneer; A Poulev; M Skarzhinskaya; S Dushenkov; S Logendra; Y Y Gleba; I Raskin
Journal:  Proc Natl Acad Sci U S A       Date:  1999-05-25       Impact factor: 11.205

2.  Expression of an Aspergillus niger phytase gene (phyA) in Saccharomyces cerevisiae.

Authors:  Y Han; D B Wilson; X G Lei
Journal:  Appl Environ Microbiol       Date:  1999-05       Impact factor: 4.792

3.  The intracellular fate of a recombinant protein is tissue dependent.

Authors:  Georgia Drakakaki; Sylvain Marcel; Elsa Arcalis; Friedrich Altmann; Pablo Gonzalez-Melendi; Rainer Fischer; Paul Christou; Eva Stoger
Journal:  Plant Physiol       Date:  2006-04-21       Impact factor: 8.340

4.  Shifting the pH profile of Aspergillus niger PhyA phytase to match the stomach pH enhances its effectiveness as an animal feed additive.

Authors:  Taewan Kim; Edward J Mullaney; Jesus M Porres; Karl R Roneker; Sarah Crowe; Sarah Rice; Taegu Ko; Abul H J Ullah; Catherine B Daly; Ross Welch; Xin Gen Lei
Journal:  Appl Environ Microbiol       Date:  2006-06       Impact factor: 4.792

5.  The Quest to Understand the Basis and Mechanisms that Control Expression of Introduced Transgenes in Crop Plants.

Authors:  Ajay Kohli; Pablo Gonzalez Melendi; Rita Abranches; Teresa Capell; Eva Stoger; Paul Christou
Journal:  Plant Signal Behav       Date:  2006-07

6.  The sweet potato sporamin promoter confers high-level phytase expression and improves organic phosphorus acquisition and tuber yield of transgenic potato.

Authors:  Ya-Fang Hong; Chang-Yeu Liu; Kuo-Joan Cheng; Ai-Ling Hour; Min-Tsair Chan; Tung-Hai Tseng; Kai-Yi Chen; Jei-Fu Shaw; Su-May Yu
Journal:  Plant Mol Biol       Date:  2008-04-04       Impact factor: 4.076

7.  Endosperm-specific co-expression of recombinant soybean ferritin and Aspergillus phytase in maize results in significant increases in the levels of bioavailable iron.

Authors:  Georgia Drakakaki; Sylvain Marcel; Raymond P Glahn; Elizabeth K Lund; Sandra Pariagh; Rainer Fischer; Paul Christou; Eva Stoger
Journal:  Plant Mol Biol       Date:  2005-12       Impact factor: 4.076

Review 8.  Phytase: sources, preparation and exploitation.

Authors:  J Dvoráková
Journal:  Folia Microbiol (Praha)       Date:  1998       Impact factor: 2.099

9.  Cloning and expression of fungal phytases in genetically modified strains of Aspergillus awamori.

Authors:  Judith A Martin; Richard A Murphy; Ronan F G Power
Journal:  J Ind Microbiol Biotechnol       Date:  2003-08-28       Impact factor: 3.346

10.  Production of two highly active bacterial phytases with broad pH optima in germinated transgenic rice seeds.

Authors:  Chwan-Yang Hong; Kuo-Joan Cheng; Tung-Hai Tseng; Chang-Sheng Wang; Li-Fei Liu; Su-May Yu
Journal:  Transgenic Res       Date:  2004-02       Impact factor: 2.788

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