Tripathi Ravi, Yang Xiaoxiao, Liu Dongning, Lu Wen, Wang Binghe
Department of Chemistry and Center for Diagnostics and Therapeutics, Georgia State University, Atlanta, GA, USA.
J Enzyme Inhib Med Chem. 2025 Dec;40(1):2554896. doi: 10.1080/14756366.2025.2554896. Epub 2025 Sep 7.
Sodium-dependent multivitamin transporter (SMVT) is a biotin transporter over-expressed in various types of cancer cells and is commonly studied for targeted drug delivery using biotin conjugates. However, such conjugates lack the carboxyl group needed for recognition by SMVT. Previously, we proposed that SMVT is unlikely the transporter of biotin conjugates. To experimentally assess this hypothesis, we examined intracellular enrichment and activation of the biotin-conjugated version of a well-established CO prodrug pair in cell culture. Although prodrug enrichment in SMVT-over-expressing cells was observed, this enrichment was not affected by excess biotin, indicating the lack of competition for SMVT. Additionally, two biotin analogs lacking the carboxyl group exhibited either augmentative or inhibitory effects depending on specific structural features. These findings support the notion that SMVT is not the transporter of biotin conjugates and underscore the need for further mechanistic studies of the transport mechanism(s) of biotin conjugates.
钠依赖性多种维生素转运体(SMVT)是一种在各种癌细胞中过度表达的生物素转运体,通常被研究用于使用生物素缀合物进行靶向药物递送。然而,此类缀合物缺乏被SMVT识别所需的羧基。此前,我们提出SMVT不太可能是生物素缀合物的转运体。为了通过实验评估这一假设,我们在细胞培养中检测了一种成熟的CO前药对的生物素缀合形式的细胞内富集和激活情况。尽管在过表达SMVT的细胞中观察到了前药富集,但这种富集不受过量生物素影响,表明不存在对SMVT的竞争。此外,两种缺乏羧基的生物素类似物根据特定结构特征表现出增强或抑制作用。这些发现支持了SMVT不是生物素缀合物转运体的观点,并强调了对生物素缀合物转运机制进行进一步机制研究的必要性。