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Jure Piskur (1960—2014)

Jure Piskur (1960—2014)
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摘要 Following a short struggle against an aggressive cancer, Prof. Jure Piskur (Fig. 1 ), a professor of molecular genetics at Lund University (LU), Sweden, and the University of Nova Gorica (UNG), Slovenia, died in his home in Lund on 18 May 2014. He leaves behind his lifelong partner and wife, Judita Gartner, and their sons, Jan and Jure. Following a short struggle against an aggressive cancer, Prof. Jure Piskur (Fig. 1 ), a professor of molecular genetics at Lund University (LU), Sweden, and the University of Nova Gorica (UNG), Slovenia, died in his home in Lund on 18 May 2014. He leaves behind his lifelong partner and wife, Judita Gartner, and their sons, Jan and Jure.
出处 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2015年第5期275-277,共3页 遗传学报(英文版)
关键词 Jure Piskur ICAP
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参考文献17

  • 1Andersen, G., Bjornberg, O., Polakova, S., Pynyaha, Y., Rasmussen, A., Moiler, K., Hofer, A., Moritz, T., Sandrini, M.E, Merico, A.M., Compagno, C., Akerlund, H.E., Gojkovic, Z., Piskur, J., 2008. A second pathway to degrade pyrimidine nucleic acid precursors in eukaryotes. J. Mol. Biol. 380, 656-666.
  • 2Andersson Rasmussen, A., Kandasamy, D., Beck, H,, Crosby, S.D., Bjornberg, O., Schnackerz, K.D., Piskur, J., 2014. Global expression analysis of the yeast Lachancea (Saccharomyces) kluyveri reveals new URC genes involved in pyrimidine catabolism. Eukaryotic Cell 13, 31-42.
  • 3Beck, H., Dobritzsch, D., Piskur, J., 2008. Saccharomyces kluyveri as a model organism to study pyrimidine degradation. FEMS Yeast Res. 8, 1209- 1213.
  • 4Bjornberg, O., Vodnala, M., Domkin, V., Hofer, A., Rasmussen, A., Andersen, G., Piskur, J., 2010, Ribosylurea accumulates in yeast urc4 mutants. Nucleosides Nucleotides Nucleic Acids 29, 433-437.
  • 5Gojkovic, Z., Knecht, W., Zameitat, E., Warneboldt, J., Coutelis, J.B., Pynyaha, Y., Neuveglise, C., Moiler, K., Loftier, M., Piskur, J., 2004. Horizontal gene transfer promoted evolution of the ability to propagate under anaerobic conditions in yeasts. Mol. Genet. Genomics 271,387-393.
  • 6Johansson, K., Ramaswamy, S., Ljungcrantz, C., Knecht, W., Piskur, J., Munch-Petersen, B., Eriksson, S., Eklund, H., 2001. Structural basis for substrate specificities of cellular deoxyribonucleoside kinases. Nat. Struct. Biol. 8, 616-620.
  • 7Khan, Z., Knecht, W., Wilier, M., Rozpedowska, E., Kristoffersen, P., Clausen, A.R., Munch-Petersen, B., Almqvist, P.M., Gojkovic, Z., Piskur, J., Ekstrom, T.J., 2010. Plant thymidine kinase I : a novel efficient suicide gene for malignant glioma therapy. Neuro Oncol. 12, 549-558.
  • 8Knecht, W., Rozpedowska, E., Le Breton, C., Wilier, M., Gojkovic, Z., Sandrini, M.P.B., Joergensen, T., Hasholt, L., Munch-Petersen, B., Piskur, J., 2007. Drosophila deoxyribonucleoside kinase mutants with enhanced ability to phosphorylate purine analogs. Gene Ther. 14, 1278-1286.
  • 9Knecht, W., Sandrini, M.P.B., Johansson, K., Eklund, H., Munch-Petersen, B., Piskur, J., 2002. A few amino acid substitutions can convert deoxy- ribonucleoside kinase specificity from pyrimidines to purines. EMBO J. 21, 1873-1880.
  • 10Lohkamp, B., Andersen, B., Piskur, J., Dobritzsch, D., 2006. The crystal structures of dihydropyrimidinases reaffirm the close relationship between cyclic amidohydrolases and explain their substrate specificity. J. Biol. Chem. 281, 13762-13776.

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