4000-520-616
欢迎来到免疫在线!(蚂蚁淘生物旗下平台)  请登录 |  免费注册 |  询价篮
主营:主营:微管蛋白、肌动蛋白、小G蛋白、GAPs、GEFs
咨询热线电话
4000-520-616
当前位置: 首页 > 产品中心 > peptide > 细胞骨架/Rho激活剂II/3 x 20微克/CN03
商品详细细胞骨架/Rho激活剂II/3 x 20微克/CN03
细胞骨架/Rho激活剂II/3 x 20微克/CN03
细胞骨架/Rho激活剂II/3 x 20微克/CN03
商品编号: CN03
品牌: Cytoskeleton
市场价: ¥3980.00
美元价: 2388.00
产地: 美国(厂家直采)
公司:
产品分类: 多肽合成
公司分类: peptide
联系Q Q: 3392242852
电话号码: 4000-520-616
电子邮箱: info@ebiomall.com
商品介绍
Details

Product Uses Include

  • Activator for Rho pathway
  • Study the effects of Rho activation on cell motility
  • Study the effects of Rho activation on the rearrangement of the actin cytoskeleton
  • Investigate the effects of Rho activation with respect to cross talk with other signal transduction pathways
      G-Switch-Logo-_White-BG_

      The G-switch™ Direct Modulators have been developed with an emphasis on creating highly potent cell permeable reagents that directly target the Rho family of small G-proteins.  Our Direct Activator reagents are based on the catalytic domain of the bacterial CNF toxins, which are covalently attached to a proprietary cell penetrating moiety.  Rho Activator II (Cat# CN03) enters the cell and activates Rho GTPase isoforms by deamidating glutamine-63, which is located in the Switch II region of these GTPases (1).  This modification converts glutamine-63 to glutamate, which blocks intrinsic and GAP stimulated GTPase activity resulting in constitutively active Rho (2).  Rho Activator II robustly increases the level of GTP bound RhoA within 2-4 h after addition to the culture medium, providing a more rapid alternative to transfection based methods for introducing activators like GEFs into cells.  Moreover, the targeted action of Rho Activator II makes it far more attractive tool for the study of Rho GTPase signaling than classic indirect activators (e.g. LPA) that concomitantly activate other signaling pathways (e.g. Ras, PI3K and PLC).

       

      References

      • Schmidt, G., et al., Gln 63 of Rho is deamidated by Escherichia coli cytotoxic necrotizing factor-1. Nature, 1997. 387(6634): p. 725-9.
      • Flatau, G., et al., Toxin-induced activation of the G protein p21 Rho by deamidation of glutamine. Nature, 1997. 387(6634): p. 729-33.
      About

      For product Datasheets and MSDSs please click on the PDF links below. For additional information, click on the FAQs tab above or contact our Technical Support department at tservice@cytoskeleton.com

      Citations

      Thomas, M., Ladoux, B. & Toyama, Y. Desmosomal Junctions Govern Tissue Integrity and Actomyosin Contractility in Apoptotic Cell Extrusion. Curr. Biol. 30, 682-690.e5 (2020).

      Rong, Z. et al. Activation of FAK/Rac1/Cdc42‐GTPase signaling ameliorates impaired microglial migration response to Aβ 42 in triggering receptor expressed on myeloid cells 2 loss‐of‐function murine models. FASEB J. 34, 10984–10997 (2020).

      Miao, H., Vanderleest, T. E., Jewett, C. E., Loerke, D. & Todd Blankenship, J. Cell ratcheting through the Sbf RabGEF directs force balancing and stepped apical constriction. J. Cell Biol. 218, 3845–3860 (2019).

      Huang, Y., Yi, X., Kang, C. & Wu, C. Arp2/3-Branched Actin Maintains an Active Pool of GTP-RhoA and Controls RhoA Abundance. Cells 8, (2019).

      Huang, Y., Yi, X., Kang, C. & Wu, C. Arp2/3-Branched Actin Maintains an Active Pool of GTP-RhoA and Controls RhoA Abundance. Cells 8, 1264 (2019).

      Rafiq, N. B. M. et al. Forces and constraints controlling podosome assembly and disassembly. Philos. Trans. R. Soc. B Biol. Sci. 374, (2019).

      Rafiq, N. B. M. et al. A mechano-signalling network linking microtubules, myosin IIA filaments and integrin-based adhesions. Nat. Mater. 18, 638–649 (2019).

      Roxas, J. L. et al. Enteropathogenic Escherichia coli EspH-Mediated Rho GTPase Inhibition Results in Desmosomal Perturbations. CMGH 6, 163–180 (2018).

      Freeman, S. A. et al. Transmembrane Pickets Connect Cyto- and Pericellular Skeletons Forming Barriers to Receptor Engagement. Cell 172, 305-317.e10 (2018).

      J. Takito et al. 2015. Regulation of osteoclast multinucleation by the actin cytoskeleton signaling network. J. Cell. Physiol. 230, 395–405.

      S. Sun et al. 2014. Impact of oxidative stress on cellular biomechanics and rho signaling in C2C12 myoblasts. J. Biomech. 47, 3650–3656.

      M.J. Herr et al. 2014. Tetraspanin CD9 regulates cell contraction and actin arrangement via RhoA in human vascular smooth muscle cells. PLoS ONE. 9:e106999.

      Valtcheva et al. 2013. The orphan adhesion G protein coupled receptor GPR97 regulates migration of lymphatic endothelial cells via the small GTPases RhoA and Cdc42. J. Biol. Chem. doi: 10.1074/jbc.M113.512954.

      Iyer et al. 2012. Connective tissue growth factor-mediated upregulation of neuromedin-U expression in trabecular meshwork cells and its role in homeostasis of aqueous humor outflow. Invest. Ophthalmol. Vis. Sci. doi: 10.1167/iovs.12-9681.

      Kuang et al. 2012. Rare, nonsynonymous variant in the smooth muscle-specific isoform of myosin heavy chain, MYH11, R247C, alters force generation in the aorta and phenotype of smooth muscle cells. Circ. Res. 110, 1411-1422.

      Faqs

      Question 1: Can the direct Rho activator CN03 be used with cells growing in culture?

      Answer 1: Yes, CN03 is specifically designed to be used as a Rho activator with cultured cells. The active site of CN03 is based on the catalytic domain of the bacterial cytotoxic necrotizing factor (CNF) toxins. The catalytic domain of CN03 is covalently attached to a proprietary cell penetrating moiety. Upon entry into the cell, CN03 activates Rho GTPase isoforms by deamidating glutamine-63, which is located in the Switch II region of these GTPases. This modification converts glutamine-63 to glutamate, which blocks intrinsic and GAP-stimulated GTPase activity, resulting in constitutively active Rho. CN03 robustly increases the level of GTP-bound RhoA within 2-4 h after addition to the culture medium.

      Question 2: How can I assess whether Rho activity is changing in my cells following CN03 treatment?

      Answer 2: There are multiple ways to measure changes in Rho activity. To visualize a change in Rho activity, we recommend examining Rho-mediated stress fiber formation with fluorescently-labeled phalloidin (Cat. # PHDG1, PHDH1, PHDN1, PHDR1). These Acti-stain phalloidins label F-actin stress fibers. Activation of Rho can be directly quantified with one of our activation assays, either the traditional pull-down (Cat. # BK036) or the RhoA G-LISA activation assay (Cat. # BK124).

      If you have any questions concerning this product, please contact our Technical Service department at tservice@cytoskeleton.com.

      品牌介绍
      Cytoskeleton,Inc.成立于1993年。自成立以来,我们一直在不断扩大产品范围。Cytoskeleton,Inc.很高兴为药物筛选,信号转导和细胞骨架研究提供广泛的试剂盒和产品。我们专注于纯化蛋白的生产和易于使用的试剂盒,以研究生化和细胞过程。我们的试剂盒既可用于基础研究或小型筛查的少量样品,也可用于大型筛查的高通量规模除了我们现有的产品外,我们还提供产品系列中微管,微管蛋白,运动蛋白,小G蛋白效应物,GAP,GEF和其他几种蛋白的药物筛选服务。有关更多信息,请参见我们的药物筛选服务页面。如果您想从市场上购买到特定产品,请随时与我们联系。我们在这里为您提供帮助。由于我们的科学家在各自的专业领域都有多年的工作经验,因此我们能够提供高质量的产品。自1993年成立以来,我们以合理的价格生产优质的产品而闻名。