Sung-Sub Choi, Ji-sun Kim, Ji-ho Jeong, Yongae Kim
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引用次数: 3
摘要
跨膜蛋白与转运、通道形成、信号传导、细胞间相互作用密切相关,是现代药物的重要靶点。为了研究这些TM蛋白的结构和功能,制备适量的蛋白是非常重要的。然而,由于TM蛋白的产率不足和溶解度低,它们的制备非常困难和耗时。我们尝试大量生产含有TM结构域的Syndecan-4 (SDC4-TM),该结构域与伤口愈合和肿瘤有关。此外,我们还研究了突变SDC4-TM通过修饰二聚化基序来观察其结构变化。我们基于SDC4-TM的N-H 2D SAMPI-4固态核磁共振和Discovery Studio 2016的计算建模,通过极性指数斜角(PISA)车轮模式分析来确定结构。
Structural Change in Transmembrane Region of Syndecan-4 by Mutation
Transmembrane(TM) proteins are closely related to transport, channel formation, signaling, cell to cell interaction, so they are the crucial target of modern medicinal drugs. In order to study the structure and function of these TM proteins, it is important to prepare reasonable amounts of proteins. However, their preparation is seriously difficult and time-consuming due to insufficient yields and low solubility of TM proteins. We tried to produce large amounts of Syndecan-4 containing TM domain(SDC4-TM) that is related to the wound healing and tumor. Also, mutated SDC4-TM was studied to investigate structural change by modification of dimerization motif. We performed the structure determination by the Polarity Index at Slanted Angle (PISA) wheel pattern analysis based on N-H 2D SAMPI-4 solid-state NMR of SDC4-TM and computational modeling using Discovery Studio 2016.