Hiplok Z LOK COMBO Multi-use Security Tie & Bike Lock

£9.175
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Hiplok Z LOK COMBO Multi-use Security Tie & Bike Lock

Hiplok Z LOK COMBO Multi-use Security Tie & Bike Lock

RRP: £18.35
Price: £9.175
£9.175 FREE Shipping

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Miotto, B. & Struhl, K. HBO1 histone acetylase activity is essential for DNA replication licensing and inhibited by geminin. Mol. Cell 37, 57–66 (2010). Wang, H. & Hahn, K. M. LOVTRAP: a versatile method to control protein function with light. Curr. Protoc. Cell Biol. 73, 21.10.1–21.10.14 (2016). North, B. J., Marshall, B. L., Borra, M. T., Denu, J. M. & Verdin, E. The human Sir2 ortholog, SIRT2, is an NAD+-dependent tubulin deacetylase. Mol. Cell 11, 437–444 (2003).

Kawano, F., Aono, Y., Suzuki, H. & Sato, M. Fluorescence imaging-based high-throughput screening of fast- and slow-cycling LOV proteins. PLoS One 8, e82693 (2013). Beaty, B. T. et al. β1 integrin regulates Arg to promote invadopodial maturation and matrix degradation. Mol. Biol. Cell 24, 1661–75, S1 (2013).Oser, M. et al. Cortactin regulates cofilin and N-WASp activities to control the stages of invadopodium assembly and maturation. J. Cell Biol. 186, 571–587 (2009). Suhre, K. & Sanejouand, Y.-H. ElNemo: a normal mode web server for protein movement analysis and the generation of templates for molecular replacement. Nucleic Acids Res. 32, W610–W614 (2004). Leaver-Fay, A. et al. ROSETTA3: an object-oriented software suite for the simulation and design of macromolecules. Meth. Enzymol. 487, 545–574 (2011). Neri, A., Welch, D., Kawaguchi, T. & Nicolson, G. Development and biologic properties of malignant cell sublines and clones of a spontaneously metastasizing rat mammary adenocarcinoma. J. Natl. Cancer Inst. 68, 507–517 (1982). This sort of 'just leaving it for five minutes' is where I feel the Hiplok Z Lok Combo is suitable. It's adequate to deter the casual thief from making off with your bike and gives a little more peace of mind that your flat white (me again) won't cost you a bike.

Yi, J. J., Wang, H., Vilela, M., Danuser, G. & Hahn, K. M. Manipulation of endogenous kinase activity in living cells using photoswitchable inhibitory peptides. ACS Synth. Biol. 3, 788–795 (2014). Klejnot, M. et al. Analysis of the human cofilin 1 structure reveals conformational changes required for actin binding. Acta Crystallogr. D 69, 1780–1788 (2013). Weitzman, M. & Hahn, K. M. Optogenetic approaches to cell migration and beyond. Curr. Opin. Cell Biol. 30, 112–120 (2014).

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Shida, T., Cueva, J. G., Xu, Z., Goodman, M. B. & Nachury, M. V. The major alpha-tubulin K40 acetyltransferase alphaTAT1 promotes rapid ciliogenesis and efficient mechanosensation. Proc. Natl Acad. Sci. USA 107, 21517–21522 (2010). Chan, A. Y., Bailly, M., Zebda, N., Segall, J. E. & Condeelis, J. S. Role of cofilin in epidermal growth factor-stimulated actin polymerization and lamellipod protrusion. J. Cell Biol. 148, 531–542 (2000). There are three lengths, 100mm, 150mm and 200mm. The 150 length seems to be ideal during a 350 build, gives some room to still fit drivers above and below the gantry.

Yamaguchi, H. et al. Molecular mechanisms of invadopodium formation: the role of the N-WASP-Arp2/3 complex pathway and cofilin. J. Cell Biol. 168, 441–452 (2005). Wang, H. et al. LOVTRAP: an optogenetic system for photoinduced protein dissociation. Nat. Methods 13, 755–758 (2016). Eddy, R. J., Weidmann, M. D., Sharma, V. P. & Condeelis, J. S. Tumor cell invadopodia: invasive protrusions that orchestrate metastasis. Trends Cell Biol. 27, 595–607 (2017).

Wu, Y. I. et al. A genetically encoded photoactivatable Rac controls the motility of living cells. Nature 461, 104–108 (2009). Pope, B. & Weeds, A. G. Binding of pig plasma gelsolin to F-actin and partial fractionation into calcium-dependent and calcium-independent forms. Eur. J. Biochem. 161, 85–93 (1986). Zhou, X. X., Chung, H. K., Lam, A. J. & Lin, M. Z. Optical control of protein activity by fluorescent protein domains. Science 338, 810–814 (2012).



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