TY - JOUR
T1 - The crystal structure of human adenylate kinase 6: An adenylate kinase localized to the cell nucleus
AU - Ren, H
AU - Wang, LY
AU - Bennett, M
AU - Liang, YH
AU - Zheng, XF
AU - Lu, F
AU - Li, LF
AU - Nan, J
AU - Luo, M
AU - Eriksson, S
AU - Zhang, CM
AU - Su, XD
PY - 2005
Y1 - 2005
N2 - Adenylate kinases (AKs) play important roles in nucleotide metabolism in all organisms and in cellular energetics by means of phosphotransfer networks in eukaryotes. The crystal structure of a human AK named AK6 was determined by in-house sulfur sing le-wavelength anomalous dispersion phasing methods and refined to 2.0-Angstrom resolution with a free R factor of 21.8%. Sequence analyses revealed that human AK6 belongs to a distinct subfamily of AKs present in all eukaryotic organisms sequenced so far. Enzymatic assays show that human AK6 has properties similar with other AKs, particularly with AK5. Fluorescence microscopy showed that human AK6 is localized predominantly to the nucleus of HeLa cells. The identification of a nuclear-localized AK sheds light on nucleotide metabolism in the nucleus and the energetic communication between mitochondria and nucleus by means of phosphotransfer networks.
AB - Adenylate kinases (AKs) play important roles in nucleotide metabolism in all organisms and in cellular energetics by means of phosphotransfer networks in eukaryotes. The crystal structure of a human AK named AK6 was determined by in-house sulfur sing le-wavelength anomalous dispersion phasing methods and refined to 2.0-Angstrom resolution with a free R factor of 21.8%. Sequence analyses revealed that human AK6 belongs to a distinct subfamily of AKs present in all eukaryotic organisms sequenced so far. Enzymatic assays show that human AK6 has properties similar with other AKs, particularly with AK5. Fluorescence microscopy showed that human AK6 is localized predominantly to the nucleus of HeLa cells. The identification of a nuclear-localized AK sheds light on nucleotide metabolism in the nucleus and the energetic communication between mitochondria and nucleus by means of phosphotransfer networks.
KW - x-ray crystallography
KW - nuclear localization
KW - nucleoticle metabolism
KW - phosphotransfer networks
KW - x-ray crystallography
KW - nuclear localization
KW - nucleoticle metabolism
KW - phosphotransfer networks
UR - https://res.slu.se/id/publ/5691
U2 - 10.1073/pnas.0407459102
DO - 10.1073/pnas.0407459102
M3 - Journal article
C2 - 15630091
SN - 1091-6490
VL - 102
SP - 303
EP - 308
JO - Proceedings of the National Academy of Sciences
JF - Proceedings of the National Academy of Sciences
IS - 2
ER -