Faculty of Health Science, Department of Medical Biology, Research Group of Experimental and Clinical Pharmacology, University of Tromsø - The Arctic University of Norway, Tromsø, Norway.
Laboratory Medicine, University Hospital of North Norway, Tromsø, Norway.
J Cell Physiol. 2018 Aug;233(8):5972-5980. doi: 10.1002/jcp.26409. Epub 2018 Feb 27.
The present study was conducted to characterise the transporter(s) responsible for the uptake of cyclic nucleotides to human erythrocytes. Western blotting showed that hRBC expressed OAT2 (SLC22A7), but detection of OAT1 (SLC22A6), or OAT3 (SLC22A8) was not possible. Intact hRBC were employed to clarify the simultaneous cyclic nucleotide egression and uptake. Both these opposing processes were studied. The K -values for high affinity efflux was 3.5 ± 0.1 and 39.4 ± 5.7 μM for cGMP and cAMP, respectively. The respective values for low affinity efflux were 212 ± 11 and 339 ± 42 μM. The uptake was characterised with apparently low affinity and similar K -values for cGMP (2.2 mM) and cAMP (0.89 mM). Using an iterative approach in order to balance uptake with efflux, the predicted real K -values for uptake were 100-200 μM for cGMP and 50-150 μM for cAMP. The established OAT2-substrate indomethacin showed a competitive interaction with cyclic nucleotide uptake. Creatinine, also an OAT2 substrate, showed saturable uptake with a K of 854 ± 98 μM. Unexpectedly, co-incubation with cyclic nucleotides showed an uncompetitive inhibition. The observed K -values were 399 ± 44 and 259 ± 30 μM for creatinine, in the presence of cGMP and cAMP, respectively. Finally, the OAT1-substrate para-aminohippurate (PAH) showed some uptake (K -value of 2.0 ± 0.4 mM) but did not interact with cyclic nucleotide or indomethacin transport.
本研究旨在表征负责摄取环核苷酸进入人红细胞的转运体。Western blot 显示 hRBC 表达 OAT2(SLC22A7),但无法检测到 OAT1(SLC22A6)或 OAT3(SLC22A8)。完整的 hRBC 用于阐明环核苷酸的同时外排和摄取。这两个相反的过程都进行了研究。高亲和力外排的 K 值分别为 cGMP 和 cAMP 的 3.5 ± 0.1 和 39.4 ± 5.7 μM。低亲和力外排的相应值分别为 212 ± 11 和 339 ± 42 μM。摄取具有明显的低亲和力和相似的 K 值,cGMP(2.2 mM)和 cAMP(0.89 mM)。使用迭代方法,以使摄取与外排平衡,摄取的预测真实 K 值分别为 cGMP 的 100-200 μM 和 cAMP 的 50-150 μM。已建立的 OAT2 底物吲哚美辛显示与环核苷酸摄取的竞争性相互作用。肌酸酐,也是 OAT2 的底物,显示出饱和摄取,K 值为 854 ± 98 μM。出乎意料的是,与环核苷酸共同孵育显示出非竞争性抑制。在存在 cGMP 和 cAMP 的情况下,观察到的肌酸酐的 K 值分别为 399 ± 44 和 259 ± 30 μM。最后,OAT1 底物对氨基马尿酸(PAH)显示出一些摄取(K 值为 2.0 ± 0.4 mM),但与环核苷酸或吲哚美辛的转运没有相互作用。