Drug Metabolism and Pharmacokinetics
Online ISSN : 1880-0920
Print ISSN : 1347-4367
ISSN-L : 1347-4367
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Functional Characterization of Human Aquaporin 9 as a Facilitative Glycerol Carrier
Yuriko OHGUSUKin-ya OHTAMegumi ISHIITakahiro KATANOKimihiko URANOJun WATANABEKatsuhisa INOUEHiroaki YUASA
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2008 年 23 巻 4 号 p. 279-284

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  The mechanism of glycerol transport by human aquaporin 9 (hAQP9), which is a liver-specific AQP water channel and can also transport glycerol, was investigated by using the Xenopus laevis oocyte expression system. It was found that specific glycerol uptake by hAQP9 was concentration-dependent (saturable) at 25°C, conforming to the Michaelis-Menten kinetics with the maximum transport rate (Jmax) of 0.84 pmol/min/oocyte and the Michaelis constant (Km) of 9.2 μM, and temperature-dependent, being reduced by about 70% when temperature was lowered from 25°C to 4°C. Such dependences on concentration and temperature are characteristic of a carrier-mediated type of mechanism rather than a channel type, which is expected not to depend on them. Furthermore, several glycerol-related compounds, such as monoacetin, were found to specifically inhibit hAQP9-mediated glycerol uptake, indicating a possibility of competition with glycerol. hAQP9-mediated glycerol uptake was, however, found not to require Na+. All these results suggest that hAQP9 functions as a facilitative carrier for glycerol, although it had been believed to function as a channel. Findings in the present study provide novel insight into its glycerol-transporting mechanism and would help exploring a possibility that hAQP9 inhibitors might help lower blood glucose level by reducing gluconeogenesis by limiting hepatic glycerol uptake.
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© 2008 by The Japanese Society for the Study of Xenobiotics
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