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Fluorescence resonance energy transfer from tryptophan in human serum albumin to a bioactive indoloquinolizine system

机译:荧光共振能量从人血清白蛋白中的色氨酸转移到生物活性吲哚喹啉系统

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摘要

The interaction between a bioactive molecule, 3-acetyl-4-oxo-6,7-dihydro-12H indolo-[2,3-a] quinolizine (AODIQ), with human serum albumin (HSA) has been studied using steady-state absorption and fluorescence techniques. A 1:1 complex formation has been established and the binding constant (K) and free energy change for the process have been reported. The AODIQ-HSA complex results in fluorescence resonance energy transfer (FRET) from the tryptophan moiety of HSA to the probe. The critical energy-transfer distance (R 0) for FRET and the Stern-Volmer constant (K sv) for the fluorescence quenching of the donor in the presence of the acceptor have been determined. Importantly, K SV has been shown to be equal to the binding constant itself, implying that the fluorescence quenching arises only from the FRET process. The study suggests that the donor and the acceptor are bound to the same protein at different locations but within the quenching distance.
机译:已使用稳态研究了生物活性分子3-乙酰基-4-氧代-6,7-二氢-12H吲哚-[2,3-a]喹诺嗪(AODIQ)与人血清白蛋白(HSA)之间的相互作用吸收和荧光技术。已经建立了1:1的络合物形成,并且已经报道了该过程的结合常数(K)和自由能变化。 AODIQ-HSA复合物导致从HSA色氨酸部分到探针的荧光共振能量转移(FRET)。确定了在存在受体的情况下,FRET的临界能量转移距离(R 0 )和施主荧光猝灭的Stern-Volmer常数(K sv )。重要的是,已证明K SV 等于结合常数本身,这意味着荧光猝灭仅由FRET过程引起。研究表明,供体和受体在不同的位置但在淬灭距离之内结合相同的蛋白质。

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