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一种用于R-藻红蛋白荧光响应的多状态模型。

A multistate model for the fluorescence response of R-phycoerythrin.

作者信息

Gaigalas A, Gallagher T, Cole K D, Singh T, Wang Lili, Zhang Yu-Zhong

机构信息

National Institute of Standards and Technology, Gaithersburg, MD, USA.

出版信息

Photochem Photobiol. 2006 May-Jun;82(3):635-44. doi: 10.1562/2005-05-26-RA-544.

DOI:10.1562/2005-05-26-RA-544
PMID:16420100
Abstract

Although strong fluorescence makes the R-phycoerythrin (R-PE) proteins increasingly useful in biological and clinical assays, they are subject to nonlinear effects including transitions to collective dark states and photodegradation, which complicate quantitative applications. We report measurements of R-PE fluorescence intensity as a function of incident power, duration of illumination and temperature. Emission intensity in the band at 570 nm is proportional to incident power for low power levels. At higher incident power, the emission at 570 nm is smaller than expected from a linear dependence on power. We propose that R-PE undergoes both reversible emission cessation on a millisecond time scale attributed to transitions to a collective dark state, and irreversible photodegradation on a time scale of minutes. Singlet oxygen scavengers such as dithiothreitol and n-propyl gallate have protective effects against the latter effect but not the former. Electrophoretic analysis of irradiated solutions of R-PE indicates that significant noncovalent aggregation is correlated with photodegradation. A multistate model based on fluorescence measurements and geometric analysis is proposed for the fluorophores in R-PE. The phycobilin fluorophores are partitioned into three groups: the phycourobilins (PUB) absorbing at 490 nm, one group of phycoerythobilins (PEB) absorbing at 530 nm (PEB-530) and another group of PEB absorbing at 560 nm (PEB-560). The two processes that result in the loss of fluorescence intensity are most likely associated with the PEB-560 group.

摘要

尽管强荧光使得R-藻红蛋白(R-PE)在生物学和临床检测中越来越有用,但它们会受到非线性效应的影响,包括转变为集体暗态和光降解,这使得定量应用变得复杂。我们报告了R-PE荧光强度随入射功率、光照持续时间和温度的测量结果。在低功率水平下,570nm波段的发射强度与入射功率成正比。在较高的入射功率下,570nm处的发射小于功率线性依赖所预期的值。我们提出,R-PE在毫秒时间尺度上经历可逆的发射停止,这归因于转变为集体暗态,并且在分钟时间尺度上经历不可逆的光降解。二硫苏糖醇和没食子酸正丙酯等单线态氧清除剂对后一种效应有保护作用,但对前一种效应没有保护作用。对R-PE辐照溶液的电泳分析表明,显著的非共价聚集与光降解相关。基于荧光测量和几何分析,为R-PE中的荧光团提出了一个多态模型。藻胆素荧光团被分为三组:在490nm处吸收的藻尿胆素(PUB)、一组在530nm处吸收的藻红胆素(PEB-530)和另一组在560nm处吸收的PEB(PEB-560)。导致荧光强度损失的两个过程最有可能与PEB-560组相关。

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