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Limitations of Electronic Energy Transfer in the Determination of Lipid Nanodomain Sizes

机译:脂质纳米域尺寸测定中电子能量转移的局限性

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摘要

Even though superresolution microscopy indicates that size of plasma membrane rafts is <20 nm, those structures have never been observed. Förster resonance energy transfer (FRET) is therefore still the most powerful optical method for characterization of such domains. In this letter we investigate relation between nanodomain affinity of a donor-acceptor (D/A) pair and the detectable nanodomain size/area. We show that probes with high affinity to the liquid-ordered (Lo) phase are required for detecting domain sizes of a few nanometers, and/or domains that occupy a few percent of the bilayer area. A combination of donors and acceptors that prefer different phases is the more favorable approach. For instance, a D/A pair with the distribution constant of donors KD = 5 and acceptors KA = 0.01 can resolve a broad spectrum of nanodomain sizes. On the other hand, currently available donors and acceptors that prefer the same phase, either the liquid-disordered (Ld) or Lo phase, are not so convenient for determining domain sizes <20 nm. Here the detection limits of FRET experiments employing several commonly used D/A pairs have been investigated.
机译:即使超分辨率显微镜显示质膜筏的尺寸小于20 nm,也从未观察到这些结构。因此,福斯特共振能量转移(FRET)仍然是表征此类畴的最强大的光学方法。在这封信中,我们研究了供体-受体(D / A)对的纳米域亲和力与可检测的纳米域大小/面积之间的关系。我们显示,对于检测几纳米的域大小和/或占据双层面积百分之几的域,需要对液相有序(Lo)相具有高亲和力的探针。倾向于不同阶段的捐助者和接受者的结合是更有利的方法。例如,供体KD = 5且受体KA = 0.01的分布常数的D / A对可以解析宽范围的纳米域尺寸。另一方面,目前倾向于使用相同相(无序液相(Ld)或Lo相)的现有供体和受体对于确定<20 nm的畴尺寸并不方便。在这里,已经研究了采用几种常用D / A对的FRET实验的检测限。

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