Literature DB >> 16860350

Lily pollen alkaline phytase is a histidine phosphatase similar to mammalian multiple inositol polyphosphate phosphatase (MINPP).

Bakul Dhagat Mehta1, Sonali P Jog, Steven C Johnson, Pushpalatha P N Murthy.   

Abstract

Phytic acid is the most abundant inositol phosphate in cells; it constitutes 1-5% of the dry weight of cereal grains and legumes. Phytases are the primary enzymes responsible for the hydrolysis of phytic acid and thus play important roles in inositol phosphate metabolism. A novel alkaline phytase in lily pollen (LlALP) was recently purified in our laboratory. In this paper, we describe the cloning and characterization of LlALP cDNA from lily pollen. Two isoforms of alkaline phytase cDNAs, LlAlp1 and LlAlp2, which are 1467 and 1533 bp long and encode proteins of 487 and 511 amino acids, respectively, were identified. The deduced amino acid sequences contains the signature heptapeptide of histidine phosphatases, -RHGXRXP-, but shares < 25% identity to fungal histidine acid phytases. Phylogenetic analysis reveals that LlALP is most closely related to multiple inositol polyphosphate phosphatase (MINPP) from humans (25%) and rats (23%). mRNA corresponding to LlAlp1 and LlAlp2 were expressed in leaves, stem, petals and pollen grains. The expression profiles of LlAlp isoforms in anthers indicated that mRNA corresponding to both isoforms were present at all stages of flower development. The expression of LlAlp2 cDNA in Escherichia coli revealed the accumulation of the active enzyme in inclusion bodies and confirmed that the cDNA encodes an alkaline phytase. In summary, plant alkaline phytase is a member of the histidine phosphatase family that includes MINPP and exhibits properties distinct from bacterial and fungal phytases.

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Year:  2006        PMID: 16860350     DOI: 10.1016/j.phytochem.2006.06.008

Source DB:  PubMed          Journal:  Phytochemistry        ISSN: 0031-9422            Impact factor:   4.072


  10 in total

1.  Semi-rational site-directed mutagenesis of phyI1s from Aspergillus niger 113 at two residue to improve its phytase activity.

Authors:  Yong-Sheng Tian; Ri-He Peng; Jing Xu; Wei Zhao; Feng Gao; Xiao-Yan Fu; Ai-Sheng Xiong; Quan-Hong Yao
Journal:  Mol Biol Rep       Date:  2010-06-05       Impact factor: 2.316

2.  myo-inositol phosphate isomers generated by the action of a phytase from a malaysian waste-water bacterium.

Authors:  Ralf Greiner; Abd-Elaziem Farouk; Nils-Gunnar Carlsson; Ursula Konietzny
Journal:  Protein J       Date:  2007-12       Impact factor: 2.371

3.  Identification and determination of extracellular phytate-degrading activity in actinomycetes.

Authors:  Reza Ghorbani-Nasrabadi; Ralf Greiner; Hossein Ali Alikhani; Javad Hamedi
Journal:  World J Microbiol Biotechnol       Date:  2012-05-10       Impact factor: 3.312

4.  Cloning and characterization of purple acid phosphatase phytases from wheat, barley, maize, and rice.

Authors:  Giuseppe Dionisio; Claus K Madsen; Preben B Holm; Karen G Welinder; Malene Jørgensen; Eva Stoger; Elsa Arcalis; Henrik Brinch-Pedersen
Journal:  Plant Physiol       Date:  2011-01-10       Impact factor: 8.340

Review 5.  Phytate: impact on environment and human nutrition. A challenge for molecular breeding.

Authors:  Lisbeth Bohn; Anne S Meyer; Søren K Rasmussen
Journal:  J Zhejiang Univ Sci B       Date:  2008-03       Impact factor: 3.066

6.  Computational analysis reveals a successive adaptation of multiple inositol polyphosphate phosphatase 1 in higher organisms through evolution.

Authors:  Surya P Kilaparty; Awantika Singh; William H Baltosser; Nawab Ali
Journal:  Evol Bioinform Online       Date:  2014-12-22       Impact factor: 1.625

7.  Extracellular expression of alkaline phytase in Pichia pastoris: Influence of signal peptides, promoters and growth medium.

Authors:  Mimi Yang; Sasha Teymorian; Philip Olivares; Pushpalatha P N Murthy
Journal:  Biotechnol Rep (Amst)       Date:  2015-03-26

8.  Identification and functional characterization of multiple inositol polyphosphate phosphatase1 (Minpp1) isoform-2 in exosomes with potential to modulate tumor microenvironment.

Authors:  Mohd Zubair; Rabab Hamzah; Robert Griffin; Nawab Ali
Journal:  PLoS One       Date:  2022-03-02       Impact factor: 3.240

9.  Characterisation of a soil MINPP phytase with remarkable long-term stability and activity from Acinetobacter sp.

Authors:  Gregory D Rix; Colleen Sprigg; Hayley Whitfield; Andrew M Hemmings; Jonathan D Todd; Charles A Brearley
Journal:  PLoS One       Date:  2022-08-31       Impact factor: 3.752

Review 10.  Globoids and Phytase: The Mineral Storage and Release System in Seeds.

Authors:  Claus Krogh Madsen; Henrik Brinch-Pedersen
Journal:  Int J Mol Sci       Date:  2020-10-12       Impact factor: 5.923

  10 in total

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