522 results on '"De Pinto, Vito"'
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52. Generation of artificial channels by multimerization of β-strands from natural porin
53. Is the Secret of VDAC Isoforms in Their Gene Regulation? Characterization of Human VDAC Genes Expression Profile, Promoter Activity, and Transcriptional Regulators
54. The secret of VDAC isoforms is in their gene regulation? Characterization of human VDAC genes expression profile, promoter activity, and transcriptional regulators
55. NRF-1 and HIF-1α modulate activity of human VDAC1 gene promoter during starvation and hypoxia in HeLa cells
56. Cysteine Oxidations in Mitochondrial Membrane Proteins: The Case of VDAC Isoforms in Mammals
57. A High Resolution Mass Spectrometry Study Reveals the Potential of Disulfide Formation in Human Mitochondrial Voltage-Dependent Anion Selective Channel Isoforms (hVDACs)
58. Protocol for high-yield bacterial expression and purification of the voltage-dependent anion channel 1 for high-throughput biophysical assays
59. Functional Characterization of a Second Porin Isoform in Drosophila melanogaster: DMPORIN2 FORMS VOLTAGE-INDEPENDENT CATION-SELECTIVE PORES
60. Voltage-dependent Anion-selective Channels VDAC2 and VDAC3 Are Abundant Proteins in Bovine Outer Dense Fibers, a Cytoskeletal Component of the Sperm Flagellum
61. VDAC1 Is a Transplasma Membrane NADH-Ferricyanide Reductase
62. Transmembrane arrangement of mitochondrial porin or voltage-dependent anion channel (VDAC)
63. A lower affinity to cytosolic proteins reveals VDAC3 isoform-specific role in mitochondrial biology
64. Deletion of Voltage-Dependent Anion Channel 1 knocks mitochondria down triggering metabolic rewiring in yeast
65. Recombinant yeastVDAC2: a comparison of electrophysiological features with the native form
66. A 3D model of the voltage-dependent anion channel (VDAC)
67. Hypoxic-induced truncation of voltage-dependent anion channel 1 is mediated by both asparagine endopeptidase and calpain 1 activities
68. Characterization of the Human Porin Isoform 1 (HVDAC1) Gene by Amplification on the Whole Human Genome: A Tool for Porin Deficiency Analysis
69. Folded Structure and Membrane Affinity of the N-Terminal Domain of the Three Human Isoforms of the Mitochondrial Voltage-Dependent Anion-Selective Channel
70. VDAC isoforms in S. cerevisiae
71. VDAC1 as Pharmacological Target in Cancer and Neurodegeneration: Focus on Its Role in Apoptosis
72. Porin Is Present in the Plasma Membrane Where It Is Concentrated in Caveolae and Caveolae-related Domains
73. Mapping of the Human Voltage-Dependent Anion Channel Isoforms 1 and 2 Reconsidered
74. Purification of Mammalian Porins
75. Pharmacologically active peptide compound, process for the preparation and use thereof
76. HIGH RESOLUTION MASS SPECTROMETRY CHARACTERIZATION OF POST-TRANSLATIONAL MODIFICATIONS IN RAT LIVER MITOCHONDRIA VOLTAGE-DEPENDENT ANION SELECTIVE CHANNELS (VDACS)
77. Biologia Molecolare Struttura e Dinamica di Genomi e Proteomi
78. Anti-Cancer Compounds Targeted to VDAC: Potential and Perspectives
79. High Resolution Mass Spectrometry Characterization of Cysteine Residues Oxidation in Rat Liver Mitochondria Voltage-Dependent Anion selective Channel 1 (VDAC1)
80. Synthetic peptides prevent VDAC1-SOD1 mutant interaction recovering mitochondrial dysfunction in Amyotrophic Lateral Sclerosis
81. Synthetic peptides as new therapeutic strategy in disassembling VDAC1-SOD1 G93A toxic mitochondrial complexes in Amyotrophic Lateral Sclerosis
82. Synthetic peptides prevent the mitochondrial dysfunction in Amyotrophic Lateral Sclerosis
83. New concepts about the function of cysteines oxidation in VDAC: a counter of the redox load of intermembrane mitochondrial space?
84. Superoxide Dismutase 1 has the additional function to recover mitochondria dysfunction
85. Yeast VDAC2 has Pore Forming Activity: Functional Consequences
86. Recombinant yeast VDAC2: a comparison of electrophysiological features with the native form.
87. Oxidation States of Human Recombinant and Rat Liver Mitochondria VDAC3 Investigated by Mass Spectrometry
88. Expression of hSOD1 in porin1-less yeast strain restores mitochondrial functionality modulating the protein composition of mitochondrial membranes
89. VDAC activity in the presence of huntingtin proteins
90. VDAC3 As a Potential Marker of Mitochondrial Status Is Involved in Cancer and Pathology
91. Hexokinase I N-terminal based peptide prevents the VDAC1-SOD1 G93A interaction and re-establishes ALS cell viability
92. The overexpression of SOD1 in S. cerevisiae devoid of VDAC1 reactivates the mitochondrial functionality
93. The D. melanogaster porin1 mRNA translation is regulated by its alternative 5′UTR sequences.
94. Can modification of VDAC(s) cysteine residues act as a sensor of oxidative state of the intermembrane space of mitochondria?
95. Neurospora crassa tox-1 Gene Encodes a pH- and Temperature-Tolerant Mini-Cellulase
96. Unexpected Modifications of Cysteines in VDAC3: Indication that VDAC3 may Signal the Mitochondrial Intermembrane Redox State
97. Electrophysiological Characterization of two Novel Ion Channels of Mitochondria
98. Analysis of regulative role of dmPorin1 alternative 5’UTR-sequences in porin1 translation
99. hVDAC3 Cys mutants: in vitro and in vivo characterization
100. Overexpression of Superoxide Dismutase 1 in yeast devoid of endogenous porin: effect on mitochondria and oxidative stress
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