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1.
J Cell Mol Med ; 22(3): 1601-1613, 2018 03.
Artigo em Inglês | MEDLINE | ID: mdl-29265583

RESUMO

Methylmalonic aciduria (MMA) is a disorder of organic acid metabolism resulting from a functional defect of the mitochondrial enzyme, methylmalonyl-CoA mutase (MCM). The main treatments for MMA patients are dietary restriction of propiogenic amino acids and carnitine supplementation. Liver or combined liver/kidney transplantation has been used to treat those with the most severe clinical manifestations. Thus, therapies are necessary to help improve quality of life and prevent liver, renal and neurological complications. Previously, we successfully used the TAT-MTS-Protein approach for replacing a number of mitochondrial-mutated proteins. In this targeted system, TAT, an 11 a.a peptide, which rapidly and efficiently can cross biological membranes, is fused to a mitochondrial targeting sequence (MTS), followed by the mitochondrial mature protein which sends the protein into the mitochondria. In the mitochondria, the TAT-MTS is cleaved off and the native protein integrates into its natural complexes and is fully functional. In this study, we used heterologous MTSs of human, nuclear-encoded mitochondrial proteins, to target the human MCM protein into the mitochondria. All fusion proteins reached the mitochondria and successfully underwent processing. Treatment of MMA patient fibroblasts with these fusion proteins restored mitochondrial activity such as ATP production, mitochondrial membrane potential and oxygen consumption, indicating the importance of mitochondrial function in this disease. Treatment with the fusion proteins enhanced cell viability and most importantly reduced MMA levels. Treatment also enhanced albumin and urea secretion in a CRISPR/Cas9-engineered HepG2 MUT (-/-) liver cell line. Therefore, we suggest using this TAT-MTS-Protein approach for the treatment of MMA.


Assuntos
Trifosfato de Adenosina/biossíntese , Fibroblastos/enzimologia , Produtos do Gene tat/genética , Metilmalonil-CoA Mutase/genética , Mitocôndrias/enzimologia , Proteínas Recombinantes de Fusão/genética , Erros Inatos do Metabolismo dos Aminoácidos/enzimologia , Erros Inatos do Metabolismo dos Aminoácidos/genética , Erros Inatos do Metabolismo dos Aminoácidos/patologia , Erros Inatos do Metabolismo dos Aminoácidos/terapia , Sistemas CRISPR-Cas , Escherichia coli/genética , Escherichia coli/metabolismo , Fibroblastos/patologia , Expressão Gênica , Produtos do Gene tat/metabolismo , Terapia Genética/métodos , Células Hep G2 , Humanos , Fígado/enzimologia , Fígado/patologia , Potencial da Membrana Mitocondrial , Ácido Metilmalônico/metabolismo , Metilmalonil-CoA Mutase/metabolismo , Mitocôndrias/patologia , Doenças Mitocondriais/enzimologia , Doenças Mitocondriais/genética , Doenças Mitocondriais/patologia , Doenças Mitocondriais/terapia , Plasmídeos/química , Plasmídeos/metabolismo , Cultura Primária de Células , Engenharia de Proteínas/métodos , Sinais Direcionadores de Proteínas/genética , Proteínas Recombinantes de Fusão/metabolismo , Transfecção
2.
Int J Biochem Cell Biol ; 81(Pt A): 48-56, 2016 12.
Artigo em Inglês | MEDLINE | ID: mdl-27771440

RESUMO

Mitochondrial Targeting Sequences (MTSs) are responsible for trafficking nuclear-encoded proteins into mitochondria. Once entering the mitochondria, the MTS is recognized and cleaved off. Some MTSs are long and undergo two-step processing, as in the case of the human frataxin (FXN) protein (80aa), implicated in Friedreich's ataxia (FA). Therefore, we chose the FXN protein to examine whether nuclear-encoded mitochondrial proteins can efficiently be targeted via a heterologous MTS (hMTS) and deliver a functional protein into mitochondria. We examined three hMTSs; that of citrate synthase (cs), lipoamide deydrogenase (LAD) and C6ORF66 (ORF), as classically MTS sequences, known to be removed by one-step processing, to deliver FXN into mitochondria, in the form of fusion proteins. We demonstrate that using hMTSs for delivering FXN results in the production of 4-5-fold larger amounts of the fusion proteins, and at 4-5-fold higher concentrations. Moreover, hMTSs delivered a functional FXN protein into the mitochondria even more efficiently than the native MTSfxn, as evidenced by the rescue of FA patients' cells from oxidative stress; demonstrating a 18%-54% increase in cell survival; and a 13%-33% increase in ATP levels, as compared to the fusion protein carrying the native MTS. One fusion protein with MTScs increased aconitase activity within patients' cells, by 400-fold. The implications form our studies are of vast importance for both basic and translational research of mitochondrial proteins as any mitochondrial protein can be delivered efficiently by an hMTS. Moreover, effective targeting of functional proteins is important for restoration of mitochondrial function and treatment of related disorders.


Assuntos
Proteínas de Ligação ao Ferro/metabolismo , Mitocôndrias/metabolismo , Aconitato Hidratase/metabolismo , Ataxia de Friedreich/metabolismo , Humanos , Estresse Oxidativo , Transporte Proteico , Frataxina
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