Roy Choudhury Amrita, Perdih Andrej, Zuperl Spela, Sikorska Emilia, Solmajer Tom, Jurga Stefan, Zhukov Igor, Novič Marjana
National Institute of Chemistry, Ljubljana, Slovenia.
Biochim Biophys Acta. 2013 Nov;1828(11):2609-19. doi: 10.1016/j.bbamem.2013.06.006. Epub 2013 Jun 15.
Membrane proteins represent about a third of the gene products in most organisms, as revealed by the genome sequencing projects. They account for up to two thirds of known drugable targets, which emphasizes their critical pharmaceutical importance. Here we present a study on bilitranslocase (BTL) (TCDB 2.A.65), a membrane protein primarily involved in the transport of bilirubin from blood to liver cells. Bilitranslocase has also been identified as a potential membrane transporter for cellular uptake of several drugs and due to its implication in drug uptake, it is extremely important to advance the knowledge about its 3D structure. However, at present, only a limited knowledge is available beyond the primary structure of BTL. It has been recently confirmed experimentally that one of the four computationally predicted transmembrane segments of bilitranslocase, TM3, has a helical structure with hydrophilic amino acid residues oriented towards one side, which is typical for transmembrane domains of membrane proteins. In this study we confirmed by the use of multidimensional NMR spectroscopy that the second transmembrane segment, TM2, also appears in a form of α-helix. The stability of this polypeptide chain was verified by molecular dynamics (MD) simulation in dipalmitoyl phosphatidyl choline (DPPC) and in sodium dodecyl sulfate (SDS) micelles. The two α-helices, TM2 corroborated in this study, and TM3 confirmed in our previous investigation, provide reasonable building blocks of a potential transmembrane channel for transport of bilirubin and small hydrophilic molecules, including pharmaceutically active compounds.
基因组测序项目显示,膜蛋白在大多数生物体中约占基因产物的三分之一。它们占已知可成药靶点的三分之二,这凸显了它们在药学上的关键重要性。在此,我们展示了一项关于胆红素转运蛋白(BTL)(TCDB 2.A.65)的研究,BTL是一种主要参与胆红素从血液转运至肝细胞过程的膜蛋白。胆红素转运蛋白也被确定为几种药物细胞摄取的潜在膜转运体,鉴于其在药物摄取中的作用,深入了解其三维结构极其重要。然而,目前除了BTL的一级结构外,仅有有限的相关知识。最近通过实验证实,胆红素转运蛋白四个经计算预测的跨膜片段之一,即TM3,具有螺旋结构,其亲水氨基酸残基朝向一侧,这是膜蛋白跨膜结构域的典型特征。在本研究中,我们通过多维核磁共振光谱证实,第二个跨膜片段TM2也呈现α螺旋形式。该多肽链的稳定性在二棕榈酰磷脂酰胆碱(DPPC)和十二烷基硫酸钠(SDS)胶束中通过分子动力学(MD)模拟得到了验证。本研究中证实的TM2和我们之前研究中确认的TM3这两个α螺旋,为胆红素和包括药物活性化合物在内的小亲水分子的潜在跨膜通道提供了合理的结构单元。