Characterization of the Catalytic Structure of Plant Phytase, Protein Tyrosine Phosphatase-Like Phytase, and Histidine Acid Phytases and Their Biotechnological Applications

Author:

Cangussu Alex Sander Rodrigues1ORCID,Aires Almeida Deborah1,Aguiar Raimundo Wagner de Souza1,Bordignon-Junior Sidnei Emilio2ORCID,Viana Kelvinson Fernandes3,Barbosa Luiz Carlos Bertucci4,Cangussu Edson Wagner da Silva5,Brandi Igor Viana6,Portella Augustus Caeser Franke1,Santos Gil Rodrigues dos1,Sobrinho Eliane Macedo7,Lima William James Nogueira6

Affiliation:

1. Engenharia de Bioprocessos e Biotecnologia e Programa de Pos-Graduação em Biotecnologia, Universidade Federal do Tocantins, Gurupi, TO, Brazil

2. Engenharia e Ciências de Alimentos, Universidade Estadual Paulista, São José do Rio Preto, SP, Brazil

3. Laboratório de Biologia Molecular e Bioquímica-ICVN, Universidade Federal da Integração Latino-Americana, Foz do Iguaçu, PR, Brazil

4. Engenharia de Bioprocessos e Biotecnologia, Instituto de Recursos Naturais, Universidade Federal de Itajubá, Itajubá, MG, Brazil

5. Faculdade de Medicina, Universidade Estadual de Montes Claros, Montes Claros, MG, Brazil

6. Instituto de Ciências Agrárias, Universidade Federal de Minas Gerais, Montes Claros, MG, Brazil

7. Instituto Federal do Norte Minas Gerais, Araçuaí, MG, Brazil

Abstract

Phytase plays a prominent role in monogastric animal nutrition due to its ability to improve phytic acid digestion in the gastrointestinal tract, releasing phosphorus and other micronutrients that are important for animal development. Moreover, phytase decreases the amounts of phytic acid and phosphate excreted in feces. Bioinformatics approaches can contribute to the understanding of the catalytic structure of phytase. Analysis of the catalytic structure can reveal enzymatic stability and the polarization and hydrophobicity of amino acids. One important aspect of this type of analysis is the estimation of the number of β-sheets and α-helices in the enzymatic structure. Fermentative processes or genetic engineering methods are employed for phytase production in transgenic plants or microorganisms. To this end, phytase genes are inserted in transgenic crops to improve the bioavailability of phosphorus. This promising technology aims to improve agricultural efficiency and productivity. Thus, the aim of this review is to present the characterization of the catalytic structure of plant and microbial phytases, phytase genes used in transgenic plants and microorganisms, and their biotechnological applications in animal nutrition, which do not impact negatively on environmental degradation.

Funder

Federal University of Tocantins

Publisher

Hindawi Limited

Subject

Molecular Biology,Biochemistry

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