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Entree

Free dye affinity partitioning of glucose-6-phosphate dehydrogenase and hexokinase in aquaeoud two-phase systems

Processo: 00/01010-0
Modalidade de apoio:Bolsas no Brasil - Pós-Doutorado
Data de Início da vigência: 01 de fevereiro de 2001
Data de Término da vigência: 31 de janeiro de 2002
Área de conhecimento:Ciências Agrárias - Ciência e Tecnologia de Alimentos - Engenharia de Alimentos
Pesquisador responsável:Adalberto Pessoa Junior
Beneficiário:Xu Yan
Instituição Sede: Faculdade de Ciências Farmacêuticas (FCF). Universidade de São Paulo (USP). São Paulo , SP, Brasil
Assunto(s):Extração líquido-líquido   Hexoquinase   Purificação de enzimas   Sistema de duas fases aquosas   Glucosefosfato desidrogenase
Palavra(s)-Chave do Pesquisador:Duas Fases Aquosas | Extracao Liquido-Liquido | Hexoquinase | Ligantes De Afinidade | Purificacao De Enzimas

Resumo

The applications of aqueous two-phase systems to problems of separation and extraction of macromolecules, organelles, and cells have increased markedly, and their use has been extended into most areas of biology. Common aqueous two-phase system is not selective enough to provide the extreme purity usually desired, so the affinity partitioning was developed. PEG polymer modified by grafting reactive dyes to the terminal oxygen atoms have been utilized in affinity-based separation to increase the selectivity of certain biomolecules for PEG-rich phase in aqueous two-phase systems. For simplifying, free dye affinity partitioning technique was developed. In this study, Cibacron blue F3GA, Procion Red HE-3B, and Procion Yellow HE-3G will be empioyed as free affinity ligands in PEG/hydroxypropyl starch two-phase system for the selective partition of G6PDH and HK. To strip the enzymes from the affinity phase, the PEG/sulfate and PEG/phosphate system are empioyed. Through the screening process, the proper system and optimum operation conditions will be determined. The scale-up of the process to 1 liter will be performed to verify the feasibility of the method. Through the investigation, a high selectivity, large capacity, low cost and simple purification technique for the glucose-6-phosphate dehydrogenase and hexokinase is to be anticipated. (AU)

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