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首页> 外文期刊>Biochemical Pharmacology >Glycine 154 of the equilibrative nucleoside transporter, hENT1, is important for nucleoside transport and for conferring sensitivity to the inhibitors nitrobenzylthioinosine, dipyridamole, and dilazep.
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Glycine 154 of the equilibrative nucleoside transporter, hENT1, is important for nucleoside transport and for conferring sensitivity to the inhibitors nitrobenzylthioinosine, dipyridamole, and dilazep.

机译:平衡核苷转运蛋白hENT1的甘氨酸154对于核苷转运以及赋予对抑制剂硝基苄硫代肌苷,双嘧达莫和地拉西普的敏感性很重要。

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摘要

hENT1 and hENT2 are members of the human equilibrative nucleoside transporter family. hENT1 is ubiquitously expressed and plays an important role in the disposition and pharmacological activity of nucleoside drugs and nucleosides, such as adenosine. hENT2 is expressed in only a few tissues (e.g. muscle). hENT1 and hENT2 differ in their affinity for nucleoside substrates and in their sensitivity to inhibitors, such as nitrobenzylthioinosine (NBMPR). hENT1 has higher (or equal) affinity to hENT2 for all natural nucleosides except inosine. hENT1 is also more sensitive to NBMPR inhibition (IC50 approximately 0.4-8 nM) when compared with hENT2 (IC50 approximately 2.8 microM). This difference in inhibition potency is substantially dependent on the difference in amino acid at position 154 in hENT1 (glycine) and hENT2 (serine). Since NBMPR competitively inhibits nucleoside transporter activity, we hypothesized that G154 may also play a role in the transport of natural nucleosides and in the inhibition by otherhENT1 inhibitors, dipyridamole (DP), and dilazep (DZ). Our results, using a yeast expression system, demonstrate that substituting glycine 154 of hENT1 with serine of hENT2 converts hENT1 to a transporter that exhibits partial characteristics of hENT2. For example, this conversion reduces sensitivity of hENT1 to the inhibitors NBMPR, DP, and DZ and reduces its transport affinity for the natural nucleosides cytidine and adenosine. However, this conversion renders hENT1 less sensitive to inhibition by anti-HIV drugs azidothymidine, dideoxyinosine, and the nucleobase, hypoxanthine. Collectively, these results suggest that glycine 154 plays an important role in the transport of nucleosides and in sensitivity to the inhibitors NBMPR, DP, and DZ.
机译:hENT1和hENT2是人类平衡核苷转运蛋白家族的成员。 hENT1无处不在,在核苷药物和核苷(如腺苷)的配置和药理活性中起重要作用。 hENT2仅在少数组织(例如肌肉)中表达。 hENT1和hENT2在对核苷底物的亲和力和对抑制剂(如硝基苄基硫代肌苷(NBMPR))的敏感性方面有所不同。对于除肌苷以外的所有天然核苷,hENT1与hENT2的亲和力更高(或相等)。与hENT2(IC50约2.8 microM)相比,hENT1对NBMPR抑制也更敏感(IC50约0.4-8 nM)。抑制能力的这种差异主要取决于hENT1(甘氨酸)和hENT2(丝氨酸)中154位氨基酸的差异。由于NBMPR竞争性地抑制了核苷转运蛋白的活性,因此我们假设G154也可能在天然核苷的转运以及其他hent1抑制剂,双嘧达莫(DP)和地拉西普(DZ)的抑制作用中发挥作用。我们的结果,使用酵母表达系统,证明用hENT2的丝氨酸取代hENT1的甘氨酸154可以将hENT1转换为具有hENT2部分特征的转运蛋白。例如,这种转化降低了hENT1对抑制剂NBMPR,DP和DZ的敏感性,并降低了其对天然核苷胞苷和腺苷的转运亲和力。但是,这种转化使hENT1对抗HIV药物叠氮胸苷,双脱氧肌苷和核碱基次黄嘌呤的抑制作用较不敏感。总的来说,这些结果表明甘氨酸154在核苷的转运以及对抑制剂NBMPR,DP和DZ的敏感性中起重要作用。

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