(en) Nicola J. Patron, Matthew B. Rogers et Patrick J. Keeling, « Gene Replacement of Fructose-1,6-Bisphosphate Aldolase Supports the Hypothesis of a Single Photosynthetic Ancestor of Chromalveolates », Eukaryotic Cell, vol. 3, no 5, , p. 1169-1175 (PMID15470245, PMCID522617, DOI10.1128/EC.3.5.1169-1175.2004, lire en ligne)
jb.asm.org
(en) Sebastian Estelmann, Michael Hügler, Wolfgang Eisenreich, Katharina Werner, Ivan A. Berg, W. Hugo Ramos-Vera, Rafael F. Say, Daniel Kockelkorn, Nasser Gad′on et Georg Fuchs, « Labeling and Enzyme Studies of the Central Carbon Metabolism in Metallosphaera sedula », Journal of bacteriology, vol. 193, no 5, , p. 1191-1200 (PMID21169486, PMCID3067578, DOI10.1128/JB.01155-10, lire en ligne)
biologists.org
dev.biologists.org
(en) A. H. Ahn, S. Dziennis, R. Hawkes et K. Herrup, « The cloning of zebrin II reveals its identity with aldolase C », Development, vol. 120, no 8, , p. 2081-2090 (PMID7925012, lire en ligne)
doi.org
dx.doi.org
(en) Andrew Dalby, Zbigniev Dauter et Jennifer A. Littlechild, « Crystal structure of human muscle aldolase complexed with fructose 1,6-bisphosphate: Mechanistic implications », Protein Science, vol. 8, no 2, , p. 291-297 (PMID10048322, PMCID2144250, DOI10.1110/ps.8.2.291, lire en ligne)
(en) Shaza M. Zgiby, Graeme J. Thomson, Seema Qamar et Alan Berry, « Exploring substrate binding and discrimination in fructose1,6-bisphosphate and tagatose 1,6-bisphosphate aldolases », The FEBS Journal, vol. 267, no 6, , p. 1858-1868 (PMID10712619, DOI10.1046/j.1432-1327.2000.01191.x, lire en ligne)
(en) Nicola J. Patron, Matthew B. Rogers et Patrick J. Keeling, « Gene Replacement of Fructose-1,6-Bisphosphate Aldolase Supports the Hypothesis of a Single Photosynthetic Ancestor of Chromalveolates », Eukaryotic Cell, vol. 3, no 5, , p. 1169-1175 (PMID15470245, PMCID522617, DOI10.1128/EC.3.5.1169-1175.2004, lire en ligne)
(en) Bettina Siebers, Henner Brinkmann, Christine Dörr, Britta Tjaden, Hauke Lilie, John van der Oost et Corné H. Verhees, « Archaeal Fructose-1,6-bisphosphate Aldolases Constitute a New Family of Archaeal Type Class I Aldolase », Journal of Biological Chemistry, vol. 276, no 31, , p. 28710-28718 (PMID11387336, DOI10.1074/jbc.M103447200, lire en ligne)
(en) A. Gopher, N. Vaisman, H. Mandel et A. Lapidot, « Determination of fructose metabolic pathways in normal and fructose-intolerant children: a 13C NMR study using [U-1313C]fructose », Proceedings of the National Academy of Sciences of the United States of America, vol. 87, no 14, , p. 5449-5453 (PMID2371280, PMCID54342, DOI10.1073/pnas.87.14.5449, lire en ligne)
(en) Ernst U. Walther, Martin Dichgans, Stephen M. Maricich, Rita R. Romito, Fei Yang, Suzan Dziennis, Saul Zackson, Richard Hawkes et Karl Herrup, « Genomic sequences of aldolase C (Zebrin II) direct lacZ expression exclusively in non-neuronal cells of transgenic mice », Proceedings of the National Academy of Sciences of the United States of America, vol. 95, no 5, , p. 2615-2620 (PMID9482935, PMCID19434, DOI10.1073/pnas.95.5.2615, lire en ligne)
(en) Sebastian Estelmann, Michael Hügler, Wolfgang Eisenreich, Katharina Werner, Ivan A. Berg, W. Hugo Ramos-Vera, Rafael F. Say, Daniel Kockelkorn, Nasser Gad′on et Georg Fuchs, « Labeling and Enzyme Studies of the Central Carbon Metabolism in Metallosphaera sedula », Journal of bacteriology, vol. 193, no 5, , p. 1191-1200 (PMID21169486, PMCID3067578, DOI10.1128/JB.01155-10, lire en ligne)
(en) Erumbi S. Rangarajan, HaJeung Park, Emanuelle Fortin, Jurgen Sygusch et Tina Izard, « Mechanism of Aldolase Control of Sorting Nexin 9 Function in Endocytosis », Journal of Biological Chemistry, vol. 285, no 16, , p. 11983-11990 (PMID20129922, PMCID2852936, DOI10.1074/jbc.M109.092049, lire en ligne)
(en) Maria Merkulova, Andrés Hurtado-Lorenzo, Hiroyuki Hosokawa, Zhenjie Zhuang, Dennis Brown, Dennis A. Ausiello et Vladimir Marshansky, « Aldolase directly interacts with ARNO and modulates cell morphology and acidic vesicle distribution », American Journal of Physiology. Cell Physiology, vol. 300, no 6, , C1442-C1455 (PMID21307348, PMCID3118619, DOI10.1152/ajpcell.00076.2010, lire en ligne)
europepmc.org
(en) Andrew Dalby, Zbigniev Dauter et Jennifer A. Littlechild, « Crystal structure of human muscle aldolase complexed with fructose 1,6-bisphosphate: Mechanistic implications », Protein Science, vol. 8, no 2, , p. 291-297 (PMID10048322, PMCID2144250, DOI10.1110/ps.8.2.291, lire en ligne)
jbc.org
(en) Bettina Siebers, Henner Brinkmann, Christine Dörr, Britta Tjaden, Hauke Lilie, John van der Oost et Corné H. Verhees, « Archaeal Fructose-1,6-bisphosphate Aldolases Constitute a New Family of Archaeal Type Class I Aldolase », Journal of Biological Chemistry, vol. 276, no 31, , p. 28710-28718 (PMID11387336, DOI10.1074/jbc.M103447200, lire en ligne)
(en) Erumbi S. Rangarajan, HaJeung Park, Emanuelle Fortin, Jurgen Sygusch et Tina Izard, « Mechanism of Aldolase Control of Sorting Nexin 9 Function in Endocytosis », Journal of Biological Chemistry, vol. 285, no 16, , p. 11983-11990 (PMID20129922, PMCID2852936, DOI10.1074/jbc.M109.092049, lire en ligne)
nih.gov
ncbi.nlm.nih.gov
(en) Andrew Dalby, Zbigniev Dauter et Jennifer A. Littlechild, « Crystal structure of human muscle aldolase complexed with fructose 1,6-bisphosphate: Mechanistic implications », Protein Science, vol. 8, no 2, , p. 291-297 (PMID10048322, PMCID2144250, DOI10.1110/ps.8.2.291, lire en ligne)
(en) Shaza M. Zgiby, Graeme J. Thomson, Seema Qamar et Alan Berry, « Exploring substrate binding and discrimination in fructose1,6-bisphosphate and tagatose 1,6-bisphosphate aldolases », The FEBS Journal, vol. 267, no 6, , p. 1858-1868 (PMID10712619, DOI10.1046/j.1432-1327.2000.01191.x, lire en ligne)
(en) Nicola J. Patron, Matthew B. Rogers et Patrick J. Keeling, « Gene Replacement of Fructose-1,6-Bisphosphate Aldolase Supports the Hypothesis of a Single Photosynthetic Ancestor of Chromalveolates », Eukaryotic Cell, vol. 3, no 5, , p. 1169-1175 (PMID15470245, PMCID522617, DOI10.1128/EC.3.5.1169-1175.2004, lire en ligne)
(en) Bettina Siebers, Henner Brinkmann, Christine Dörr, Britta Tjaden, Hauke Lilie, John van der Oost et Corné H. Verhees, « Archaeal Fructose-1,6-bisphosphate Aldolases Constitute a New Family of Archaeal Type Class I Aldolase », Journal of Biological Chemistry, vol. 276, no 31, , p. 28710-28718 (PMID11387336, DOI10.1074/jbc.M103447200, lire en ligne)
(en) A. Gopher, N. Vaisman, H. Mandel et A. Lapidot, « Determination of fructose metabolic pathways in normal and fructose-intolerant children: a 13C NMR study using [U-1313C]fructose », Proceedings of the National Academy of Sciences of the United States of America, vol. 87, no 14, , p. 5449-5453 (PMID2371280, PMCID54342, DOI10.1073/pnas.87.14.5449, lire en ligne)
(en) Ernst U. Walther, Martin Dichgans, Stephen M. Maricich, Rita R. Romito, Fei Yang, Suzan Dziennis, Saul Zackson, Richard Hawkes et Karl Herrup, « Genomic sequences of aldolase C (Zebrin II) direct lacZ expression exclusively in non-neuronal cells of transgenic mice », Proceedings of the National Academy of Sciences of the United States of America, vol. 95, no 5, , p. 2615-2620 (PMID9482935, PMCID19434, DOI10.1073/pnas.95.5.2615, lire en ligne)
(en) Sebastian Estelmann, Michael Hügler, Wolfgang Eisenreich, Katharina Werner, Ivan A. Berg, W. Hugo Ramos-Vera, Rafael F. Say, Daniel Kockelkorn, Nasser Gad′on et Georg Fuchs, « Labeling and Enzyme Studies of the Central Carbon Metabolism in Metallosphaera sedula », Journal of bacteriology, vol. 193, no 5, , p. 1191-1200 (PMID21169486, PMCID3067578, DOI10.1128/JB.01155-10, lire en ligne)
(en) Erumbi S. Rangarajan, HaJeung Park, Emanuelle Fortin, Jurgen Sygusch et Tina Izard, « Mechanism of Aldolase Control of Sorting Nexin 9 Function in Endocytosis », Journal of Biological Chemistry, vol. 285, no 16, , p. 11983-11990 (PMID20129922, PMCID2852936, DOI10.1074/jbc.M109.092049, lire en ligne)
(en) A. H. Ahn, S. Dziennis, R. Hawkes et K. Herrup, « The cloning of zebrin II reveals its identity with aldolase C », Development, vol. 120, no 8, , p. 2081-2090 (PMID7925012, lire en ligne)
(en) Maria Merkulova, Andrés Hurtado-Lorenzo, Hiroyuki Hosokawa, Zhenjie Zhuang, Dennis Brown, Dennis A. Ausiello et Vladimir Marshansky, « Aldolase directly interacts with ARNO and modulates cell morphology and acidic vesicle distribution », American Journal of Physiology. Cell Physiology, vol. 300, no 6, , C1442-C1455 (PMID21307348, PMCID3118619, DOI10.1152/ajpcell.00076.2010, lire en ligne)
physiology.org
ajpcell.physiology.org
(en) Maria Merkulova, Andrés Hurtado-Lorenzo, Hiroyuki Hosokawa, Zhenjie Zhuang, Dennis Brown, Dennis A. Ausiello et Vladimir Marshansky, « Aldolase directly interacts with ARNO and modulates cell morphology and acidic vesicle distribution », American Journal of Physiology. Cell Physiology, vol. 300, no 6, , C1442-C1455 (PMID21307348, PMCID3118619, DOI10.1152/ajpcell.00076.2010, lire en ligne)
pnas.org
(en) A. Gopher, N. Vaisman, H. Mandel et A. Lapidot, « Determination of fructose metabolic pathways in normal and fructose-intolerant children: a 13C NMR study using [U-1313C]fructose », Proceedings of the National Academy of Sciences of the United States of America, vol. 87, no 14, , p. 5449-5453 (PMID2371280, PMCID54342, DOI10.1073/pnas.87.14.5449, lire en ligne)
(en) Ernst U. Walther, Martin Dichgans, Stephen M. Maricich, Rita R. Romito, Fei Yang, Suzan Dziennis, Saul Zackson, Richard Hawkes et Karl Herrup, « Genomic sequences of aldolase C (Zebrin II) direct lacZ expression exclusively in non-neuronal cells of transgenic mice », Proceedings of the National Academy of Sciences of the United States of America, vol. 95, no 5, , p. 2615-2620 (PMID9482935, PMCID19434, DOI10.1073/pnas.95.5.2615, lire en ligne)
wiley.com
onlinelibrary.wiley.com
(en) Shaza M. Zgiby, Graeme J. Thomson, Seema Qamar et Alan Berry, « Exploring substrate binding and discrimination in fructose1,6-bisphosphate and tagatose 1,6-bisphosphate aldolases », The FEBS Journal, vol. 267, no 6, , p. 1858-1868 (PMID10712619, DOI10.1046/j.1432-1327.2000.01191.x, lire en ligne)