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Cyanobacterial phycobilisomes: Selective dissociation monitored by fluorescence and circular dichroism

机译:蓝藻藻胆体:通过荧光和圆二色性监测选择性解离

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摘要

Phycobilisomes are supramolecular assemblies of phycobiliproteins responsible for photosynthetic light collection in red algae and cyanobacteria. They can be selectively dissociated by reduction of temperature and buffer concentration. Phycobilisomes isolated from Fremyella diplosiphon transfer energy collected by C-phycoerythrin and C-phycocyanin to allophycocyanin. The energy transfer to allophycocyanin is nearly abolished at 2°C, as indicated by a blue shift in fluorescence emission, and is accompanied by a decrease in the circular dichroism in the region of allophycocyanin absorbance. Further dissociation of the phycobilisomes can be attained by reduction of buffer concentration and holding at 2°C. Energy transfer to C-phycocyanin is nearly abolished, and decreases occur in the circular dichroism in the region of C-phycocyanin and C-phycoerythrin absorbance. Complete dissociation of the phycobilisomes at low buffer concentration and 2°C requires extended time. Energy transfer to C-phycocyanin is further reduced and the circular dichroism maximum of C-phycoerythrin at 575 nm is lost. Circular dichroism provides information on the hexamer-monomer transitions of the phycobiliproteins, whereas fluorescence is indicative of hexamer-hexamer interactions. We consider that hydrophobic interactions are fundamental to the maintenance of the structure and function of phycobilisomes.
机译:藻胆小体是藻胆蛋白的超分子组装体,负责红藻和蓝藻中的光合光收集。它们可以通过降低温度和缓冲液浓度来选择性地解离。从双孢霉菌分离的藻胆体将C-藻红蛋白和C-藻蓝蛋白收集的能量转移至别藻蓝蛋白。如在荧光发射中的蓝移所示,在2℃下几乎没有消除向别藻蓝蛋白的能量转移,并且伴随着别藻蓝蛋白吸收区域中的圆二色性降低。藻胆体的进一步解离可以通过降低缓冲液浓度并保持在2°C来实现。向C-藻蓝蛋白的能量转移几乎被消除,并且在C-藻蓝蛋白和C-藻红蛋白吸收区域中的圆二色性降低。在低缓冲液浓度和2°C下完全解离藻胆体需要较长的时间。进一步减少了向C-藻蓝蛋白的能量转移,并且丢失了575 nm处C-藻红蛋白的最大圆二色性。圆二色性提供了藻胆蛋白的六聚体-单体转变的信息,而荧光指示六聚体-六聚体的相互作用。我们认为疏水相互作用是维持藻胆体结构和功能的基础。

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