Francisella tularensis is the causative agent for the potentially fatal disease tularemia. The lipoprotein Flpp3 has been identified as a virulence determinant of tularemia with no sequence homology outside the Francisella genus. We report a room temperature structure of Flpp3 determined by serial femtosecond crystallography that exists in a significantly different conformation than previously described by the NMR-determined structure. Furthermore, we investigated the conformational space and energy barriers between these two structures by molecular dynamics umbrella sampling and identified three low-energy intermediate states, transitions between which readily occur at room temperature. We have also begun to investigate organic compounds in silico that may act as inhibitors to Flpp3. This work paves the road to developing targeted therapeutics against tularemia and aides in our understanding of the disease mechanisms of tularemia.
XFEL and NMR Structures of Francisella Lipoprotein Reveal Conformational Space of Drug Target against Tularemia.
弗朗西斯菌脂蛋白的 XFEL 和 NMR 结构揭示了抗兔热病药物靶点的构象空间
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作者:Zook James, Shekhar Mrinal, Hansen Debra, Conrad Chelsie, Grant Thomas, Gupta Chitrak, White Thomas, Barty Anton, Basu Shibom, Zhao Yun, Zatsepin Nadia, Ishchenko Andrii, Batyuk Alex, Gati Cornelius, Li Chufeng, Galli Lorenzo, Coe Jesse, Hunter Mark, Liang Meng, Weierstall Uwe, Nelson Garret, James Daniel, Stauch Benjamin, Craciunescu Felicia, Thifault Darren, Liu Wei, Cherezov Vadim, Singharoy Abhishek, Fromme Petra
| 期刊: | Structure | 影响因子: | 4.300 |
| 时间: | 2020 | 起止号: | 2020 May 5; 28(5):540-547 |
| doi: | 10.1016/j.str.2020.02.005 | 研究方向: | 其它 |
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