by year 2017201620152014201320122011

Aziz I, Bibi T, Rashid N, Aono R, Atomi H, Akhtar M.
A phosphofructokinase homolog from Pyrobaculum calidifontis displays kinase activity towards pyrimidine nucleosides and ribose 1-phosphate.
J. Bacteriol. 200(16):e00284-18, 2018.

Hachisuka SI, Sato T, Atomi H.
Hyperthermophilic archaeon Thermococcus kodakarensis utilizes a four-step pathway for NAD+ salvage through nicotinamide deamination.
J. Bacteriol. 200(11):e00785-17, 2018.

Zheng RC, Hachisuka SI, Tomita H, Imanaka T, Zheng YG, Nishiyama M, Atomi H.
An ornithine ω-aminotransferase required for growth in the absence of exogenous proline in the archaeon Thermococcus kodakarensis.
J. Biol. Chem. 293(10):3625-3636, 2018.

Nunoura T, Chikaraishi Y, Izaki R, Suwa T, Sato T, Harada T, Mori K, Kato Y, Miyazaki M, Shimamura S, Yanagawa K, Shuto A, Ohkouchi N, Fujita N, Takaki Y, Atomi H, Takai K.
A primordial and reversible TCA cycle in a facultatively chemolithoautotrophic thermophile.
Science 359(6375):559-563, 2018.

Fuke T, Sato T, Jha S, Tansengco ML, Atomi H.
Phytoene production utilizing the isoprenoid biosynthesis capacity of Thermococcus kodakarensis.
Extremophiles. 22(2):301-313, 2018.

Aslam M, Takahashi N, Matsubara K, Imanaka T, Kanai T, Atomi H.
Identification of the glucosamine kinase in the chitinolytic pathway of Thermococcus kodakarensis.
J. Biosci. Bioeng. 125(3):320-326, 2018.

Nishitani Y, Horiuchi A, Aslam M, Kanai T, Atomi H, Miki K.
Crystal structures of an archaeal chitinase ChiD and its ligand complexes.
Glycobiology 28(6):418-426, 2018.

Kwon S, Watanabe S, Nishitani Y, Kawashima T, Kanai T, Atomi H, Miki K.
Crystal structures of a [NiFe] hydrogenase large subunit HyhL in an immature state in complex with a Ni chaperone HypA.
Proc. Natl. Acad. Sci. USA. 115(27):7045-7050, 2018.

Nagata R, Fujihashi M, Sato T, Atomi H, Miki K.
Identification of a pyrophosphate-dependent kinase and its donor selectivity determinants.
Nat. Commun. 9(1):1765, 2018.

Kwon S, Nishitani Y, Hirao Y, Kanai T, Atomi H, Miki K.
Structure of a [NiFe] hydrogenase maturation protease HycI provides insights into its substrate selectivity.
Biochem. Biophys. Res. Commun. 498(4):782-788, 2018.


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