Mart Robert J, Liem Kwan Ping, Wang Xi, Webb Simon J
Manchester Interdisciplinary Biocentre and the School of Chemistry, University of Manchester, 131 Princess St, Manchester M1 7DN, UK.
J Am Chem Soc. 2006 Nov 15;128(45):14462-3. doi: 10.1021/ja0657612.
As part of our studies into how the localization of cell adhesion molecules into lipid rafts may affect cell adhesion, we developed Cu(1), a synthetic copper(iminodiacetate)-capped receptor able to phase separate from fluid phospholipid bilayers. The extent to which Cu(1) clustered into adhesive patches on the surface of vesicles could be controlled by changing vesicle composition. Extensive receptor phase separation significantly enhanced vesicle-vesicle adhesion; only vesicles with adhesive patches (blue fluorescence) adhered to their conjugate histidine-coated vesicles (red fluorescence) to form large vesicle aggregates (shown).
作为我们关于细胞粘附分子在脂筏中的定位如何影响细胞粘附的研究的一部分,我们开发了Cu(1),一种合成的铜(亚氨基二乙酸)封端受体,它能够与流体磷脂双层发生相分离。通过改变囊泡组成,可以控制Cu(1)聚集在囊泡表面粘附斑中的程度。广泛的受体相分离显著增强了囊泡-囊泡粘附;只有带有粘附斑(蓝色荧光)的囊泡粘附到其共轭的组氨酸包被的囊泡(红色荧光)上,形成大的囊泡聚集体(如图所示)。