GIANCASPERO, TERESA ANNA
 Distribuzione geografica
Continente #
NA - Nord America 2.511
EU - Europa 710
AS - Asia 208
OC - Oceania 2
SA - Sud America 1
Totale 3.432
Nazione #
US - Stati Uniti d'America 2.509
CN - Cina 195
SE - Svezia 195
IT - Italia 143
UA - Ucraina 106
DE - Germania 73
FI - Finlandia 60
FR - Francia 57
GB - Regno Unito 39
BE - Belgio 18
IE - Irlanda 12
IN - India 11
AU - Australia 2
CA - Canada 2
NL - Olanda 2
BO - Bolivia 1
CZ - Repubblica Ceca 1
ES - Italia 1
JP - Giappone 1
LA - Repubblica Popolare Democratica del Laos 1
LT - Lituania 1
LU - Lussemburgo 1
PT - Portogallo 1
Totale 3.432
Città #
Chandler 290
Woodbridge 270
Jacksonville 267
Houston 203
Ann Arbor 200
Fairfield 192
Nyköping 159
Ashburn 94
Wilmington 91
Cambridge 84
Seattle 71
Lawrence 62
Roxbury 60
Nanjing 53
New York 52
Beijing 48
Inglewood 43
Des Moines 37
Bari 33
Boardman 27
Princeton 24
Dearborn 19
Hebei 19
Brussels 18
Shenyang 18
Changsha 13
Jiaxing 13
Los Angeles 12
Dublin 11
Milan 10
Pune 10
Nanchang 9
Tianjin 9
San Diego 7
London 6
Washington 6
Brooklyn 5
Foggia 5
Norwalk 5
Auburn Hills 4
Berlin 4
Trani 4
Martina Franca 3
Newcastle Upon Tyne 3
Paris 3
Rome 3
Terlizzi 3
Bisceglie 2
Bitonto 2
Florence 2
Gravina In Puglia 2
Hangzhou 2
Helsinki 2
Mountain View 2
New Bedfont 2
Rende 2
San Marzano Di San Giuseppe 2
Sânhuzen 2
Wenzhou 2
Adelfia 1
Augusta 1
Baotou 1
Barletta 1
Bitetto 1
Bologna 1
Capurso 1
Castrolibero 1
Cerano 1
Chongqing 1
Conversano 1
Cupertino 1
Fasano 1
Fiumicino 1
Fort Lauderdale 1
Giffoni Valle Piana 1
Guangzhou 1
Hefei 1
Indiana 1
Islington 1
Kilburn 1
Kunming 1
Latina 1
Leawood 1
Limerick 1
Lisbon 1
Luxembourg 1
Madrid 1
Marseille 1
Medolla 1
Miami Beach 1
Modugno 1
Mumbai 1
Munich 1
Nagaoka 1
New Port Richey 1
Ningbo 1
Nuremberg 1
Padova 1
Phoenix 1
Pulsano 1
Totale 2.647
Nome #
La FAD sintetasi umana: dalla ricerca di base alla patologia umana 160
Remaining challenges in cellular flavin cofactor homeostasis and flavoprotein biogenesis 131
Riboflavin transport and metabolism in humans 118
Human FAD synthase is a bi-functional enzyme with a FAD hydrolase activity in the molybdopterin binding domain 97
Biosynthesis of flavin cofactors in man: implications in health and disease. 95
Human FAD synthase (isoform 2): a component of the machinery that delivers FAD to apo-flavoproteins 94
Cellular localization of Fad1p in Saccharomyces cerevisiae: is the fate written in the 3’UTR end? 91
Riboflavin-Responsive and -Non-responsive Mutations in FAD Synthase Cause Multiple Acyl-CoA Dehydrogenase and Combined Respiratory-Chain Deficiency 91
Coordinated and reversible reduction of enzymes involved in terminal oxidative metabolism in skeletal muscle mitochondria from a riboflavin-responsive, multiple acyl-CoA dehydrogenase deficiency patient 88
The occurrence of riboflavin kinase and FAD synthetase ensures FAD synthesis in tobacco mitochondria and maintenance of cellular redox status 83
FAD synthesis and degradation in the nucleus create a local flavin cofactor pool 82
Mitochondrial localization of human FAD synthetase isoform 1 74
Control of the functionality of mitochondrial flavoenzymes and flavin cofactor homeostasis in mitochondria 68
Significance of redox-active cysteines in human FAD synthase isoform 2 66
Relevance of Cys residues of human FAD synthase (isoform 2) in the protein function/structure as assessed by homology modeling and site directed mutagenesis 63
Succinate dehydrogenase flavoprotein subunit expression in S. cerevisiae - involvement of the mitochondrial FAD transporter, Flx1p 62
Biochemical and genetical characterisation of novel enzymes involved in riboflavin metabolism. Involvement in riboflavin-responsive myopathy 59
Biochemical and genetical characterisation of novel enzymes involved in riboflavin metabolism. Involvement in riboflavin-responsive myopathy 59
Dual subcellular localization of fad1p in Saccharomyces cerevisiae: a possible choice at post transcriptional level. 58
18. Riboflavin responsive multiple acyl-CoA dehydrogenation deficiency due to deletion of p.ser495 in the FAD synthase. 57
Silencing of FAD synthase gene in Caenorhabditis elegans upsets protein homeostasis and impacts on complex behavioral patterns 57
Redox cofactor degradation in S. cerevisiae mitochondria. 56
Dual sub-cellular localization of Fad1p in S. cerevisiae 56
A novel subcellular localization of FAD synthase in neuronal cell models and possible consequences of altered flavin homeostasis. 55
Expression of succinate dehydrogenase flavoprotein subunit in Saccharomyces cerevisiae studied by LacZ reporter strategy. Effect of FLX1 deletion 53
Studies on mitochondrial FAD binding proteins 53
Riboflavin transport and metabolism in Saccharomyces cerevisiae mitochondria: the role of Flx1p 52
Control of the functionality of mitochondrial flavoenzymes by flavin cofactor movement across the mitochondrial membranes 52
Alteration of ROS Homeostasis and Decreased Lifespan in S. cerevisiae Elicited by Deletion of the Mitochondrial Translocator FLX1. 51
MITOCHONDRIAL LOCALIZATION OF FAD SYNTHASE IN S. cerevisiae 50
Saccharomyces cerevisiae mitochondria exibit their own FAD synthetase activity and export FAD via FLX1p” 50
null 50
Control of the functionality of mitochondrial flavoenzymes and flavin cofactor homeostasis in mitochondria 49
Expression of succinate dehydrogenase flavoprotein subunit (SDH1p) in S. cerevisiae: role of the mitochondrial FAD transporter, FLX1p 47
Riboflavin transport and metabolism in Saccharomyces cerevisiae mitochondria: the role of FLX1p 46
The involvement of FAD synthesis and trafficking in riboflavin-responsive human diseases: investigations in s. cerevisiae and c. elegans. 46
Riboflavin Uptake and FAD synthesis in Saccharomyces cerevisiae mitochondria. Involvement of the Flx1p carrier in FAD export 45
Mitochondrial FAD synthesis, flavinylation and regulation of flavoprotein level 43
The role of cysteine residues in human FAD synthase (isoform 2) 40
Flavin adenine dinucleotide metabolism in S. cerevisiae mitochondria. The occurrence of a FAD pyrophosphatase in isolated mitochondria ?? 40
Dual subcellular localization of Fad1p in Saccharomyces cerevisiae: a possible choice at post-transcriptional level 40
Flavin adenine dinucleotide metabolism in S. cerevisiae mitochondria. The occurrence of a FAD pyrophosphatase in isolated mitochondria 39
Mitochondria-assisted flavinylation of recombinant rat dimethylglycine dehydrogenase 37
Silencing of FAD synthase gene affects neuromuscular transmission in Caenorhabditis elegans. 36
Proteomics of riboflavin-responsive Acyl-CoA dehydrogenase deficiency. Atti 7th Siena meeting “From genome to proteome: back to the future”, 2006 36
Bacterial over-expression and purification of the PAPS reductase domain of human FAD synthase. Functional characterization and homology modelling. 36
The expression level of the flavoprotein subunit of succinate dehydrogenase is under the control of Flx1p, the mitochondrial FAD translocator 35
Relationships between NAD redox status and FAD degradation in S. cerevisiae mitochondria. 35
Kinetic properties of human FAD synthase isoform 2 and probable reaction mechanism 34
A REGULATORY ROLE OF NAD REDOX STATUS ON FLAVIN COFACTOR HOMEOSTASIS IN S. cerevisiae MITOCHONDRIA 34
Flavin adenine dinucleotide metabolism in nucleus 32
Structure/function relationships of Cys residues of the human FAD synthase 2 by homology modelling and site directed mutagenesis 31
Riboflavin responsive multiple acyl-CoA dehydrogenation deficiency associated with flavin-sensitive variant FAD synthase proteins 31
Human cytosolic FAD synthetase: molecular characterisation and kinetic properties 30
Is FAD synthase directly involved in neuronal disorders? 29
null 27
Alteration of ROS homeostasis and decreased lifespan in S. cerevisiae elicited by deletion of the mitochondrial translocator FLX1. 27
FAD Synthase (FADS) localization and function in neuronal cell models: a possible involvement of FADS in the pathogenesis of neurodegenerative diseases. 24
FAD SYNTHASE IN HUMAN MULTIPLE ACYL-COA DEHYDROGENASE DEFICIENCY: INVESTIGATIONS IN S. CEREVISIAE 23
Unravelling the relevance of fad synthetase in human physiopathology. A biotechnological approach. 23
FAD synthesis and degradation in the nucleus: a possible link between metabolism and gene expression regulation. 22
The occurrence and biogenesis of mitochondrial FAD synthetase. Verona, Italia 20
null 20
null 19
Flavin-sensitive variant FAD Synthases underlying riboflavin responsive Multiple Acyl-CoA Dehydrogenation Deficiency. 18
Studies on mitochondrial FAD binding proteins. Genetic strategies to study Sdh1p biogenesis in S. cerevisiae 17
null 16
null 15
FAD synthase (FADs) localization and function in neuronal cell model and worms: a possible involvement of FADs in the pathogenesis of neurodegenerative diseases. 14
The involvement of FAD synthesis and trafficking in Riboflavin-Responsive human diseases: investigations in S. cerevisiae and C. elegans. 13
Totale 3.500
Categoria #
all - tutte 12.779
article - articoli 0
book - libri 0
conference - conferenze 0
curatela - curatele 0
other - altro 0
patent - brevetti 0
selected - selezionate 0
volume - volumi 0
Totale 12.779


Totale Lug Ago Sett Ott Nov Dic Gen Feb Mar Apr Mag Giu
2018/2019129 0 0 0 0 0 0 0 0 0 0 64 65
2019/2020725 177 40 10 45 83 41 79 36 76 36 93 9
2020/2021439 58 13 31 22 81 30 37 12 51 60 25 19
2021/2022378 11 68 2 15 11 10 13 20 28 19 82 99
2022/2023766 99 80 43 71 107 125 4 71 127 4 18 17
2023/2024276 26 32 18 73 19 76 8 6 2 15 1 0
Totale 3.500