Zhang Yuchen, Boxberger Kelli H, Hagenbuch Bruno
Department of Pharmacology, Toxicology and Therapeutics, the University of Kansas Medical Center, Kansas City, Kansas, United States of America.
PLoS One. 2017 Jun 23;12(6):e0180257. doi: 10.1371/journal.pone.0180257. eCollection 2017.
OATP1B3 is a 12 transmembrane domain protein expressed at the basolateral membrane of human hepatocytes where it mediates the uptake of numerous drugs and endogenous compounds. Previous western blot results suggest the formation of OATP1B3 multimers. In order to better understand the function of OATP1B3 under normal physiological conditions, we investigated its oligomerization status. We transiently transfected OATP1B3 with a C-terminal His-, FLAG- or HA-tag in HEK293 cells and used co-immunoprecipitation and a Proximity Ligation Assay to detect interactions between the different constructs. All three constructs retained similar transport rates as wild-type OATP1B3. Immunofluorescence experiments indicated that in contrast to wild-type, His- and FLAG-tagged OATP1B3, where the C-terminal end is on the cytoplasmic side of the membrane, the C-terminal end of HA-tagged OATP1B3 is extracellular. After cross-linking, anti-FLAG antibodies were able to pull down FLAG-tagged OATP1B3 (positive control) and co-transfected His- or HA-tagged OATP1B3, demonstrating the formation of homo-oligomers and suggesting that the C-terminal part is not involved in oligomer formation. We confirmed co-localization of His- and FLAG-tagged OATP1B3 in transfected HEK293 cells with the Proximity Ligation Assay. Transport studies with a non-functional OATP1B3 mutant suggest that the individual subunits and not the whole oligomer are the functional units in the homo-oligomers. In addition, we also detected OATP1B3-FLAG co-localization with OATP1B1-His or NTCP-His, suggesting that OATP1B3 also hetero-oligomerizes with other transport proteins. Using the Proximity Ligation Assay with transporter specific antibodies, we demonstrate close association of OATP1B3 with NTCP in frozen human liver tissue. These findings demonstrate that OATP1B3 can form homo- and hetero-oligomers and suggest a potential co-regulation of the involved transporters.
有机阴离子转运多肽1B3(OATP1B3)是一种具有12个跨膜结构域的蛋白质,表达于人类肝细胞的基底外侧膜,在该位置它介导多种药物和内源性化合物的摄取。之前的蛋白质免疫印迹结果提示OATP1B3多聚体的形成。为了更好地理解OATP1B3在正常生理条件下的功能,我们研究了其寡聚化状态。我们在人胚肾293(HEK293)细胞中瞬时转染带有C末端组氨酸、FLAG或血凝素(HA)标签的OATP1B3,并使用免疫共沉淀和邻近连接分析来检测不同构建体之间的相互作用。所有这三种构建体都保持了与野生型OATP1B3相似的转运速率。免疫荧光实验表明,与野生型、C末端位于膜细胞质侧的组氨酸和FLAG标签的OATP1B3不同,HA标签的OATP1B3的C末端是细胞外的。交联后,抗FLAG抗体能够拉下FLAG标签的OATP1B3(阳性对照)以及共转染的组氨酸或HA标签的OATP1B3,证明了同型寡聚体的形成,并表明C末端部分不参与寡聚体形成。我们通过邻近连接分析证实了转染的HEK293细胞中组氨酸和FLAG标签的OATP1B3的共定位。对无功能的OATP1B3突变体的转运研究表明,同型寡聚体中的功能单位是单个亚基而非整个寡聚体。此外,我们还检测到OATP1B3-FLAG与OATP1B1-组氨酸或钠-牛磺胆酸共转运体(NTCP)-组氨酸的共定位,提示OATP1B3也与其他转运蛋白形成异型寡聚体。使用针对转运体的特异性抗体进行邻近连接分析,我们证明了在冷冻的人类肝组织中OATP1B3与NTCP紧密关联。这些发现表明OATP1B3可以形成同型和异型寡聚体,并提示所涉及的转运体存在潜在的共同调节。