Tachikawa Masanori, Fujinawa Jun, Takahashi Masato, Kasai Yasuyuki, Fukaya Masahiro, Sakai Kazuhisa, Yamazaki Maya, Tomi Masatoshi, Watanabe Masahiko, Sakimura Kenji, Terasaki Tetsuya, Hosoya Ken-ichi
Department of Pharmaceutics, Graduate School of Medicine and Pharmaceutical Sciences, University of Toyama, Toyama, Japan.
J Neurochem. 2008 Nov;107(3):768-78. doi: 10.1111/j.1471-4159.2008.05652.x. Epub 2008 Sep 20.
Little is known about the cerebral distribution and clearance of guanidinoacetate (GAA), the accumulation of which induces convulsions. The purpose of the present study was to identify creatine transporter (CRT)-mediated GAA transport and to clarify its cerebral expression and role in GAA efflux transport at the blood-cerebrospinal fluid barrier (BCSFB). CRT mediated GAA transport with a K(m) value of 269 microM/412 microM which was approximately 10-fold greater than that of CRT for creatine. There was wide and distinct cerebral expression of CRT and localization of CRT on the brush-border membrane of choroid plexus epithelial cells. The in vivo elimination clearance of GAA from the CSF was 13-fold greater than that of d-mannitol reflecting bulk flow of the CSF. This process was partially inhibited by creatine. The characteristics of GAA uptake by isolated choroid plexus and an immortalized rat choroid plexus epithelial cell line (TR-CSFB cells) used as an in vitro model of BCSFB are partially consistent with those of CRT. These results suggest that CRT plays a role in the cerebral distribution of GAA and GAA uptake by the choroid plexus. However, in the presence of endogenous creatine in the CSF, CRT may make only a limited contribution to the GAA efflux transport at the BCSFB.
关于胍基乙酸(GAA)的脑部分布和清除情况所知甚少,其蓄积会引发惊厥。本研究的目的是确定肌酸转运体(CRT)介导的GAA转运,并阐明其在血脑脊髓液屏障(BCSFB)处的脑内表达及在GAA外流转运中的作用。CRT介导的GAA转运的K(m)值为269微摩尔/412微摩尔,约为CRT对肌酸转运K(m)值的10倍。CRT在脑内有广泛且独特的表达,并且定位于脉络丛上皮细胞的刷状缘膜上。脑脊液中GAA的体内消除清除率比d - 甘露醇高13倍,反映了脑脊液的大量流动。这一过程部分受肌酸抑制。将分离的脉络丛和永生大鼠脉络丛上皮细胞系(TR - CSFB细胞)作为BCSFB的体外模型,其摄取GAA的特性与CRT的部分特性一致。这些结果表明,CRT在GAA的脑部分布及脉络丛摄取GAA过程中发挥作用。然而,在脑脊液中存在内源性肌酸的情况下,CRT对BCSFB处GAA外流转运的贡献可能有限。