Structural and biochemical characterizations of Thermus thermophilus HB8 transketolase producing a heptulose
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Yoshihara, Akihide
[1
,2
]
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Takamatsu, Yota
[2
]
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Mochizuki, Susumu
[1
,2
]
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Yoshida, Hiromi
[1
,3
,4
]
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Masui, Ryoji
[5
]
Izumori, Ken
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Kagawa Univ, Int Inst Rare Sugar Res & Educ, Takamatsu, Kagawa 7608521, JapanKagawa Univ, Int Inst Rare Sugar Res & Educ, Takamatsu, Kagawa 7608521, Japan
Izumori, Ken
[1
]
Kamitori, Shigehiro
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Kagawa Univ, Int Inst Rare Sugar Res & Educ, Takamatsu, Kagawa 7608521, Japan
Kagawa Univ, Life Sci Res Ctr, Miki, Kagawa 7610793, Japan
Kagawa Univ, Fac Med, Miki, Kagawa 7610793, JapanKagawa Univ, Int Inst Rare Sugar Res & Educ, Takamatsu, Kagawa 7608521, Japan
Kamitori, Shigehiro
[1
,3
,4
]
机构:
[1] Kagawa Univ, Int Inst Rare Sugar Res & Educ, Takamatsu, Kagawa 7608521, Japan
[2] Kagawa Univ, Fac Agr, Dept Appl Biol Sci, Miki, Kagawa 7610795, Japan
[3] Kagawa Univ, Life Sci Res Ctr, Miki, Kagawa 7610793, Japan
[4] Kagawa Univ, Fac Med, Miki, Kagawa 7610793, Japan
[5] Osaka City Univ, Grad Sch Sci, Osaka 5588585, Japan
Transketolase is a key enzyme in the pentose phosphate pathway in all organisms, recognizing sugar phosphates as substrates. Transketolase with a cofactor of thiamine pyrophosphate catalyzes the transfer of a 2-carbon unit from D-xylulose-5-phosphate to D-ribose-5-phosphate (5-carbon aldose), giving D-sedoheptulose-7-phosphate (7-carbon ketose). Transketolases can also recognize non-phosphorylated monosaccharides as substrates, and catalyze the formation of non-phosphorylated 7-carbon ketose (heptulose), which has attracted pharmaceutical attention as an inhibitor of sugar metabolism. Here, we report the structural and biochemical characterizations of transketolase from Thermus thermophilus HB8 (TtTK), a well-characterized thermophilic Gram-negative bacterium. TtTK showed marked thermostability with maximum enzyme activity at 85 degrees C, and efficiently catalyzed the formation of heptuloses from lithium hydroxypyruvate and four aldopentoses: D-ribose, L-lyxose, L-arabinose, and D-xylose. The X-ray structure showed that TtTK tightly forms a homodimer with more interactions between subunits compared with transketolase from other organisms, contributing to its thermal stability. A modeling study based on X-ray structures suggested that D-ribose and L-lyxose could bind to the catalytic site of TtTK to form favorable hydrogen bonds with the enzyme, explaining the high conversion rates of 41% (D-ribose) and 43% (L-lyxose) to heptulose. These results demonstrate the potential of TtTK as an enzyme producing a rare sugar of heptulose. Key points Transketolase catalyzes the formation of a 7-carbon sugar phosphate Structural and biochemical characterizations of thermophilic transketolase were done The enzyme could produce non-phosphorylated 7-carbon ketoses from sugars.
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Univ Tokyo, Grad Sch Agr & Life Sci, Dept Appl Biol Chem, Bunkyo Ku, Tokyo, Japan
RIKEN Harima Inst, Riken SPrings 8 Ctr, Wako, Hyogo, JapanUniv Tokyo, Grad Sch Agr & Life Sci, Dept Appl Biol Chem, Bunkyo Ku, Tokyo, Japan
Nagata, Koji
Ohtsuka, Jun
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Univ Tokyo, Grad Sch Agr & Life Sci, Dept Appl Biol Chem, Bunkyo Ku, Tokyo, JapanUniv Tokyo, Grad Sch Agr & Life Sci, Dept Appl Biol Chem, Bunkyo Ku, Tokyo, Japan
Ohtsuka, Jun
Takahashi, Mihoko
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Univ Tokyo, Grad Sch Agr & Life Sci, Dept Appl Biol Chem, Bunkyo Ku, Tokyo, JapanUniv Tokyo, Grad Sch Agr & Life Sci, Dept Appl Biol Chem, Bunkyo Ku, Tokyo, Japan
Takahashi, Mihoko
Asano, Atsuko
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Univ Tokyo, Grad Sch Agr & Life Sci, Dept Appl Biol Chem, Bunkyo Ku, Tokyo, JapanUniv Tokyo, Grad Sch Agr & Life Sci, Dept Appl Biol Chem, Bunkyo Ku, Tokyo, Japan
Asano, Atsuko
Iino, Hitoshi
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RIKEN Harima Inst, Riken SPrings 8 Ctr, Wako, Hyogo, JapanUniv Tokyo, Grad Sch Agr & Life Sci, Dept Appl Biol Chem, Bunkyo Ku, Tokyo, Japan
Iino, Hitoshi
Ebihara, Akio
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RIKEN Harima Inst, Riken SPrings 8 Ctr, Wako, Hyogo, JapanUniv Tokyo, Grad Sch Agr & Life Sci, Dept Appl Biol Chem, Bunkyo Ku, Tokyo, Japan
Ebihara, Akio
Tanokura, Masaru
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Univ Tokyo, Grad Sch Agr & Life Sci, Dept Appl Biol Chem, Bunkyo Ku, Tokyo, Japan
RIKEN Harima Inst, Riken SPrings 8 Ctr, Wako, Hyogo, JapanUniv Tokyo, Grad Sch Agr & Life Sci, Dept Appl Biol Chem, Bunkyo Ku, Tokyo, Japan