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Machado, L.E.S.F., Critton, D.A., Page, R., Peti, W. Redox regulation of a gain-of-function mutation (N308D) in SHP2 Noonan Syndrome. ACS Omega. 2017; 2:8313-8318.
*OTVOS, L.P., *GARRITO, G.I.M., JARA, G.E., LOPES-DE-OLIVEIRA, P.S., MACHADO, L.E.S.F. Potential involvement of protein phosphatase PPP2CA on protein synthesis and cell cycle during SARS-CoV-2 infection: a meta-analysis investigation. Kinases and Phosphatases, 2025. 3(1):4. (doi.org/10.3390/kinasesphosphatases3010004)
DURANS, A.M., NAPOLEÃO-PËGO P., REIS, F.C.G., DIAS, E.R., MACHADO,L.E.S.F., LECHUGA,G.C., JUNQUEIRA, A.C.V., DE-SIMONE, S.G., PRVANCE JR., D.W. Chagas disease diagnosis with Trypanosoma cruzi exclusive epitopes in GFP. Vaccines, 2024, 12(9):1029. (doi.org/10.3390/vaccines12091029).
CARVALHO, L.M.L., BRANCO, E.V., SERAFIAN, R.D.,...MACHADO, L.E.S.F., RAMOS, I.C., PEREIRA, L.V,...,KREPISCHI, A.C.V., ROSENBERG, C. Establishment of iPSC lines and zebrafish with loss-of-function AHDC1 variants: models for Xia-Gibbs syndrome. GENE, 2023, 871:147424 (doi:10.1016/j.gene.2023.147424).
YANG, C.Y., YANG, C.F., TANG, X.F., MACHADO,L.E.S.F., SINGH, J.P., PETI, W., CHEN, C.S., MENG, T.C. Active-site cysteine 215 sulfonation targets protein tyrosine phosphatase PTP1B for Cullin1 E3 ligase-mediated degradation. Free Radical Biology and Medicine., 2023, 194:147-159. (doi:10.1016/freeradbiomed.2022.11.041).
NETTO, L. E. S. & MACHADO, L.E.S.F., Preferential redox regulation of cysteine-based protein tyrosine phosphatases: structural and biochemical diversity. The FEBS Journal., 2022, 289:5480-5504. (doi:10.1111/febs.16466).
MESQUITA, R.D., GAVIRAGHI, A., GONÇALVES, R.L.S., VANNIER-SANTOS, M.A., MIGNACO, J.A., FONTES, C.F.L., MACHADO, L.E.S.F, OLIVEIRA, M.F. Cytochrome c oxidase at full thrust: regulation and biological consequences to flying insects. Cells., 2021, 10(2):470.
MACHADO, L.E.S.F., DE PAULA, V.S., PUSTOVALOVA, Y., BEZSONOVA, I., VALENTE, A.P., KORZHNEV, DM., ALMEIDA, F.C. Conformational dynamics of a cysteine-stabilized plant defensin reveals an evolutionary mechanism to expose hydrophobic residues. Biochemistry., 2018, 57(40):5797-5806.
MACHADO, L.E.S.F., PAGE, R., PETI, W. 1H,15N and 13C sequence specific backbone assignment of the vanadate inhibited hematopoietic tyrosine phosphatase. Biomol. NMR Assign., 2018, 12(1):5-9.
MACHADO, L.E.S.F., CRITTON, D.A., PAGE, R., PETI, W. Redox regulation of a gain-of-function mutation (N308D) in SHP2 Noonan Syndrome. ACS Omega, 2017, 2:8313-8318.
MACHADO, L.E.S.F., SHEN, TL., PAGE, R., PETI, W. The KIM-family protein tyrosine phosphatases use distinct reversible oxidation intermediates: Intramolecular or intermolecular disulfide bond formation. J. Biol. Chem., 2017, 292(21):8786-8796.
*CHOY, M.S., *LI, Y., *MACHADO,L.E.S.F., KUNZE,M.B.Z., CONNORS,C.R., WEI,X., LINDORFF-LARSEN,K., PAGE, R., PETI,W. Conformational rigidity and protein dynamics at distinct timescales regulate PTP1B activity and allostery. Molecular Cell, 2017, 65(4):644-658.
CRUZEIRO-SILVA, C., GOMES-NETO, F., MACHADO, L.E., MIYAMOTO, C.A., PINHEIRO, A.S., CORREA-PEREIRA, N., DE MAGALHÃES, M.T., VALENTE, A.P., ALMEIDA, F.C. Hydration and conformational equilibrium in yeast thioredoxin 1: implication for H (+) exchange. Biochemistry, 2014, 13:2890-2902.
MACHADO, L.E.S.F., PUSTOVALOVA, Y., KILE, A.C., POZHIDAEVA, A., CIMPRICH, K.A., ALMEIDA, F.C.L., BEZSONOVA, I., KORZHNEV, DM. PHD domain from human SHPRH. J Biomol NMR, 2013, 56:393-399.
*BONFIM,T.R., *MACHADO,L.E.S.F., LIMA,L.M.T.R., SORENSON,M.M., SALERNO,V.P. 2,4-Dinitrophenol reduces the reactivity of Lys553 in the lower 50-kDa region of myosin subfragment 1. Archives of Biochemistry and Biophysics, 2011, 505:105-111.
*authors contributed equally.
Pre-print
OTVOS, L.P., GARRITO, G.I.M., MACHADO,L.E.S.F. Potential involvement of protein phosphatase PP2CA on protein synthesis and cell cycle during SARS-CoV-2 infection. A meta analysis investigation. bioRxiv. doi: https://doi.org/10.1101/2023.06.02.543487