» Articles » PMID: 29265583

TAT-MTS-MCM Fusion Proteins Reduce MMA Levels and Improve Mitochondrial Activity and Liver Function in MCM-deficient Cells

Overview
Journal J Cell Mol Med
Date 2017 Dec 22
PMID 29265583
Citations 3
Authors
Affiliations
Soon will be listed here.
Abstract

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.

Citing Articles

TAT for Enzyme/Protein Delivery to Restore or Destroy Cell Activity in Human Diseases.

Lichtenstein M, Zabit S, Hauser N, Farouz S, Melloul O, Hirbawi J Life (Basel). 2021; 11(9).

PMID: 34575072 PMC: 8466028. DOI: 10.3390/life11090924.


A bioluminescent probe for longitudinal monitoring of mitochondrial membrane potential.

Bazhin A, Sinisi R, De Marchi U, Hermant A, Sambiagio N, Maric T Nat Chem Biol. 2020; 16(12):1385-1393.

PMID: 32778841 DOI: 10.1038/s41589-020-0602-1.


Fibroblast growth factor 21 as a biomarker for long-term complications in organic acidemias.

Molema F, Jacobs E, Onkenhout W, Schoonderwoerd G, Langendonk J, Williams M J Inherit Metab Dis. 2018; 41(6):1179-1187.

PMID: 30159853 PMC: 6327009. DOI: 10.1007/s10545-018-0244-6.

References
1.
Bhat A, Dar K, Anees S, Zargar M, Masood A, Sofi M . Oxidative stress, mitochondrial dysfunction and neurodegenerative diseases; a mechanistic insight. Biomed Pharmacother. 2015; 74:101-10. DOI: 10.1016/j.biopha.2015.07.025. View

2.
de Keyzer Y, Valayannopoulos V, Benoist J, Batteux F, Lacaille F, Hubert L . Multiple OXPHOS deficiency in the liver, kidney, heart, and skeletal muscle of patients with methylmalonic aciduria and propionic aciduria. Pediatr Res. 2009; 66(1):91-5. DOI: 10.1203/PDR.0b013e3181a7c270. View

3.
Thorland E, Drost J, Lusher J, Warrier I, Shapiro A, Koerper M . Anaphylactic response to factor IX replacement therapy in haemophilia B patients: complete gene deletions confer the highest risk. Haemophilia. 1999; 5(2):101-5. View

4.
Marcus D, Lichtenstein M, Cohen N, Hadad R, Erlich-Hadad T, Greif H . Heterologous mitochondrial targeting sequences can deliver functional proteins into mitochondria. Int J Biochem Cell Biol. 2016; 81(Pt A):48-56. DOI: 10.1016/j.biocel.2016.10.013. View

5.
Niemi A, Kim I, Krueger C, Cowan T, Baugh N, Farrell R . Treatment of methylmalonic acidemia by liver or combined liver-kidney transplantation. J Pediatr. 2015; 166(6):1455-61.e1. DOI: 10.1016/j.jpeds.2015.01.051. View