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Master's Dissertation
DOI
https://doi.org/10.11606/D.9.2015.tde-23112015-151341
Document
Author
Full name
Iris Munhoz Costa
E-mail
Institute/School/College
Knowledge Area
Date of Defense
Published
São Paulo, 2015
Supervisor
Committee
Souza, Gisele Monteiro de (President)
Farsky, Sandra Helena Poliselli
Rocha, Adriana Rios Lopes
Title in Portuguese
Produção, caracterização cinética e engenharia de proteína Asparaginase 1 de Saccharomyces cerevisiae para avaliação de seu uso como biofármaco
Keywords in Portuguese
Engenharia de proteína
L-asparaginase
Leucemia linfoblástica aguda
Saccharomyces
Abstract in Portuguese
A L-asparaginase (EC 3.5.1.1) é uma enzima importante para o tratamento da leucemia linfoblástica aguda (LLA), neoplasia mais frequente em crianças e adolescentes. A L-asparaginase hidrolisa a L-asparagina resultando em ácido aspártico e amônio, impedindo que as células tumorais utilizem esse aminoácido para síntese proteica, ocasionando a morte celular apoptótica. Atualmente a enzima é obtida a partir de Escherichia coli e Erwinia chrysanthemi; no entanto, ambas as formulações estão associadas a um alto índice de efeitos adversos que comprometem a evolução e eficácia do tratamento. A levedura Saccharomyces cerevisiae tem o gene ASP1 responsável pela produção de L-asparaginase 1 (Sc_ASPase1) que tem sido pouco estudada. Para elucidar as características de Sc_ASPase1 nós expressamos a proteína em E. coli BL21(DE3) e a purificamos por cromatografia de afinidade. Sc_ASPase1 tem uma atividade especifica de 195,4 U/mg para L-asparagina e de 0,36 U/mg para L-glutamina, e um comportamento alostérico com um K0.5 de 75 µM para L-asparagina. Por meio de mutação sitio dirigida demonstramos a importância dos resíduos Thr64-Thy78-Th141-Lys215 para a catálise. As isoformas mutantes da proteína A331D, K335E, Y243S, S301N e ΔG77 não apresentaram melhoria nos parâmetros cinéticos ou atividade específica. Construímos e clonamos Sc_ASPase1 com a deleção dos primeiros 52 aminoácidos, porém nas condições testadas a proteína foi expressa na forma insolúvel. Demonstramos que Sc_ASPase1 possui potencial antineoplásico, pois com 10 U/mL de enzima foi capaz causar a 85% de mortalidade da linhagem leucêmica MOLT-4. Na mesma concentração, a enzima de E. coli é capaz de matar 95% de células dessa mesma linhagem.
Title in English
Production, kinetic characterization and engineering of asparaginase 1 protein from Saccharomyces cerevisiae to evaluate its use as a biopharmaceutical.
Keywords in English
Acute lymphoblastic leukemia
L-asparaginase
Protein engineering
Saccharomyces
Abstract in English
L-Asparaginase (EC 3.5.1.1) is an important enzyme for the treatment of acute lymphoblastic leukemia (ALL), the most common malignancy in children and adolescents. L-asparaginase hydrolyzes L-asparagine resulting in ammonium and aspartic acid, preventing tumor cells of using such amino acid for protein synthesis, leading to apoptotic cell death. Currently, the enzyme is obtained from Escherichia coli and Erwinia chrysanthemi; however, both formulations are associated with a high incidence of side effects that compromise the progress and effectiveness of treatment. The yeast Saccharomyces cerevisiae has ASP1 gene responsible for the production of L-asparaginase 1 (Sc_ASPase1) that has been poor studied. To elucidate the characteristics of Sc_ASPase1, we expressed the protein in E. coli BL21 (DE3) cells and purified it by affinity chromatography. Sc_ASPase1 has a specific activity of 195.4 U/mg for L-asparagine and 0.36 U/mg for L-glutamine, and an allosteric behavior with a K0.5 of 75 µM for L-asparagine. Through site directed mutation, we demonstrated the importance of Thr64-Thy78-Th141-Lys215 residues for catalysis. The mutant protein isoforms A331D, K335E, Y243S, S301N and ΔG77 showed no improvement in kinetic parameters or specific activity. We build and cloned Sc_ASPase1 with the deletion of the first 52 amino acids, but under the conditions tested the protein was expressed in insoluble form. Sc_ASPase1 have demonstrated potential antineoplastic activityc, since 10 U/mL of enzyme lead to 85% of mortality in leukemia cell line MOLT-4. At the same concentration, the E. coli enzyme kills 95% of the cells of the same line.
 
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Publishing Date
2015-12-09
 
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