侯宪玉

发布时间:2021-12-10浏览次数:7668

doi:10.1093/lifemeta/load036. 

 

4.       Aggarwal, P., Liu, Z., Cheng, G. Q., Singh, S. R., Shi, C., Chen, Y., Sun, L. V., and Hou,  S. X. (2022). Disruption of the lipolysis pathway results in stem cell death through a sterile immunity-like pathway in adult Drosophila.  Cell Rep. 39 (12): 110958.

 

5.       Wang, G., Yin, W., Shin, H., Tian, Q., Lu, W., and Hou, S. X. (2021). Neuronal accumulation of peroxidated lipids promotes demyelination and neurodegeneration through the activation of the microglial NLRP3 inflammasome. Nat Aging, 1, 1024-1037.

 

6.       Wang, G., Xu, J., Zhao, J., Yin, W., Liu, D., Chen, W.,  and Hou, S. X. (2020). Arf1-mediated Lipid Metabolism  Sustains Cancer Stem Cells and Its ablation Induces Anti-tumor Immune Responses in Mice.   Nat Commun. 11(1):220. doi: 10.1038/s41467-019-14046-9 (Editors' Highlights)

 

7.       Singh, S. R., Zeng,  X., Zhao,  J., Liu, Y.,  Hou, G., Liu, H, and Hou,  S. X.  (2016).   The Lipolysis Pathway Sustains Normal and Transformed Stem Cells in Adult Drosophila.   Nature 538, 109-113.

 

8.       Liu, Y, Ge, Q., Chan, B., Liu, H., Singh, S. R., Manley, J., Lee, J., Weidenman, A. M., Hou, G., and Hou,  S. X.  (2016). Whole-animal genome-wide RNAi screen identifies networks regulating male germline stem cells in Drosophila.  Nat Commun  7:12149. doi: 10.1038/ncomms12149.

 

9.       Singh, S. R., Liu, Y., Zhao,  J., Zeng,  X.,  and Hou,  S. X.  (2016).   The novel tumour suppressor Madm regulates stem cell competition in the Drosophila testis.

       Nat Commun. 7:10473. doi: 10.1038/ncomms10473.

 

10.   Zeng, X., Han, L., Singh, S. R., Liu, H., Neumüller, R. A., Yan, D., Hu, Y., Liu, Y., Liu, W., Lin, X., and Hou, S. X. (2015).  Genome-Wide RNAi Screen Identifies Networks Involved in Intestinal Stem Cell Regulation in Drosophila. Cell Reports 10, 1226-1238.

 

11.    Zeng, X., and Hou, S. X. (2015). Enteroendocrine cells are generated from stem cells through a distinct progenitor in the adult Drosophila posterior midgut.  Development 142(4), 644-653. 

 

12.   Zeng, X., Lin, X., and Hou, S. X. (2013). The Osa-containing SWI/SNF chromatin-remodeling complex regulates stem cell commitment in the adult Drosophila intestine.Development 140(17), 3532-3540.

 

13.   Zeng, X., and Hou, S. X. (2012). Broad relays hormone signals to regulate stem cell differentiation in Drosophila midgut during metamorphosis. Development 139(21), 3917-3925.

 

14.Zeng, X., and Hou, S. X. (2011). Kidney stem cells found in adult zebrafish. Cell Stem Cell 8(3), 247-249.

 

15.   Singh, S. R., Zeng, X., Zheng, Z., and Hou, S. X. (2011). The adult Drosophila gastric and stomach organs are maintained by a multipotent stem cell pool at the foregut/midgut junction in the cardia (proventriculus). Cell Cycle 10(7), 1109-1120

 

16.   Ande, S., Orri, K., Chen, X., Coppola, V., Tessarollo, L., Keller, J. R., and Hou, S. X. (2010).  RapGEF2 is essential for embryonic hematopoiesis but dispensable for adult hematopoiesis.   Blood. 116, 2921-2931.

 

17.   Singh, S. R., Liu, W., and Hou, S. X. (2007).  The adult Drosophila Malpiphian Tubules are maintained by multipotent stem cells.  Cell Stem Cell1(2), 191-203.

 

18.  Singh, S. R., Zhen, W., Zheng, Z. Y., Wang, H.,  Oh, S. W., Liu, W., Zbar, B., Schmidt, L. S., and Hou, S. X. (2006).The Drosophila homologue of the human tumor suppressor gene BHD interacts with the JAK-STAT and Dpp signaling pathways in regulating male germline stem cell maintenance. Oncogene 25, 5933-5941.

 

19.   Wang, H., Singh, S. R., Zheng, Z. Y., Oh, S. W., Chen, X., Edwards, K., and Hou, S. X. (2006).  A Rap-GEF/Rap GTPase signaling controls stem cell maintenance through regulating adherens  junction positioning and cell adhesion in Drosophila testis.  Dev. Cell 10, 117-126.

 

20.   Singh, S. R., Chen, X., and Hou, S. X. (2005).  JAK/STAT signaling regulates tissue outgrowth and male germline stem cell fate in Drosophila.  Cell Research 15(1), 1-5.

 

21.   Chen, X.,  Oh, S. W.,  Zheng, Z.,  Chen, H. W., Shin, H. H., and  Hou, S. X. (2003).Cyclin D-Cdk4 and Cyclin E-Cdk2 regulate the JAK/STAT signal transduction pathway in Drosophila.  Dev. Cell 4, 179-190.

 

22.   Hou, S. X., Zheng, Z., Chen, X., and Perrimon, N. (2002).  The JAK/STAT pathway in model organisms: Emerging roles in cell movement.  Dev. Cell  3,  765-778.

 

23.   Chen, H. W., Chen, X., Oh, S. W., Marrinissen, M. J., Gutkind, J. S., and Hou, S. X. (2002). mom identifies a receptor for the Drosophila JAK/STAT signal transduction pathway and encodes a protein distantly related to the mammalian cytokine receptor family. Genes Dev. 16, 388-398, 2002.

 

24.   Hou, S. X., Goldstein, E. S., and Perrimon, N. (1997). Drosophila Jun relays the JNK signal transduction pathway to the DPP signal transduction pathway in regulating epithelial cell sheet movement. Genes  Dev. 11, 1728-1737, 1997.

 

25.   Hou, S. X., Melnick, M. B., and Perrimon, N. (1996). Marelle acts downstream of the Drosophila Hop/JAK kinase and encodes a protein similar to the mammalian STATs.  Cell  84, 411-419.

 

26.   Hou, S. X., Chou, T. B., Melnick, M. B., and Perrimon, N.(1995).  The torso receptor tyrosine kinase activates raf in a Ras-independent pathway. Cell  81, 63-71.


杏鑫专业提供🪐:杏鑫🌗、等服务,提供最新官网平台、地址、注册、登陆、登录、入口、全站、网站、网页、网址、娱乐、手机版、app、下载、欧洲杯、欧冠、nba、世界杯、英超等,界面美观优质完美,安全稳定,服务一流,杏鑫欢迎您。 杏鑫官网xml地图
杏鑫 杏鑫 杏鑫 杏鑫 杏鑫 杏鑫 杏鑫 杏鑫 杏鑫 杏鑫