中心PI

 

王千千

邮箱cassieqq@mail.tsinghua.edu.cn

学科方向:致力于通过生物化学、分子生物学与结构生物学手段揭示分子机制,并推动纳米抗体的创新研发。

研究领域:

孤独症谱系障碍(Autism Spectrum Disorder,以下简称ASD)是全球最普遍的神经系统疾病之一。过去十年的遗传学研究揭示ASD的遗传架构病识别了众多高风险基因,但由这些基因编码的蛋白质的功能机制多数未知,这种机理的不明确是理解ASD根本发病机理和开发治疗方法的关键障碍。本课题组将通过生物化学、分子生物学和结构生物学等手段,深入解析ASD的分子机制,并开创更安全、更高效的ASD治疗新策略。

最新研究发现,胆固醇与ASD的发病密切相关,但我们对其分子机制知之甚微。值得注意的是,在已鉴定的232个高风险ASD基因中,有76个直接参与或受胆固醇调控。课题组未来将以此为切入点,系统解析胆固醇在ASD发生发展中的生物学作用及其调控网络。同时,依托对ASD相关蛋白的结构与功能解析,我们将开发新型纳米抗体,实现对关键蛋白动态与功能的精准调控,推动ASD的精准治疗研究。课题组负责人荣获2024Simons Foundation Autism Research Initiative (SFARI) Bridge to Independence Award

代表性科研论文:

1.Wang, Q., Wang, J., Tokhtaeva, E., Li, Z., Martín, M.G., Ling, X.B., Dunn, J.C.Y.† An Engineered living intestinal muscle patch produces macroscopic contractions that can mix and break down artificial intestinal contents. Advanced Materials, Apr;35 (15), e2207255 (2023). †co-corresponding authors

Featured by Advanced Science News (link) and New Scientist (link).

2.Wang, Q.*, Asarnow, D.E.*, Ding K., Mann R., Hatakeyama J., Zhang, Y., Ma, Y., Cheng, Y., Beachy, P.A. Dispatched uses Na+ flux to power lipid-modified Hedgehog release. Nature 599 (7884), 320-324 (2021). *co-first authors

3.Wang, Q., Wang, K., Solorzano-Vargas, R.S., Lin, P.Y., Walthers, C.M., Thomas, A.,  Martín, M.G., Dunn, J.C.Y. Bioengineered intestinal muscularis complexes with long-term spontaneous and periodic contractions. PLoS One 13, 1–29 (2018).

4.Kobayashi M., Khalil H.A., Lei N.Y., Wang Q., Wang K., Wu B.M., & Dunn J.C.Y. Bioengineering functional smooth muscle with spontaneous rhythmic contraction in vitro. Sci Rep 10, 8(1):13544 (2018).

5.Kobayashi, M., Lei, N. Y., Wang, Q., Wu, B. M. & Dunn, J. C. Y. Orthogonally oriented scaffolds with aligned fibers for engineering intestinal smooth muscle. Biomaterials 61, 75–84 (2015).