Bodman Samantha E, Breen Colum, Kirkland Sam, Wheeler Simon, Robertson Erin, Plasser Felix, Butler Stephen J
Department of Chemistry, Loughborough University Epinal Way Loughborough LE11 3TU UK
Chem Sci. 2022 Feb 11;13(12):3386-3394. doi: 10.1039/d1sc05377a. eCollection 2022 Mar 24.
The design of molecular receptors that bind and sense anions in biologically relevant aqueous solutions is a key challenge in supramolecular chemistry. The recognition of inorganic phosphate is particularly challenging because of its high hydration energy and pH dependent speciation. Adenosine monophosphate (AMP) represents a valuable but elusive target for supramolecular detection because of its structural similarity to the more negatively charged anions, ATP and ADP. We report two new macrocyclic Eu(iii) receptors capable of selectively sensing inorganic phosphate and AMP in water. The receptors contain a sterically demanding 8-(benzyloxy)quinoline pendant arm that coordinates to the metal centre, creating a binding pocket suitable for phosphate and AMP, whilst excluding potentially interfering chelating anions, in particular ATP, bicarbonate and lactate. The sensing selectivity of our Eu(iii) receptors follows the order AMP > ADP > ATP, which represents a reversal of the order of selectivity observed for most reported nucleoside phosphate receptors. We have exploited the unique host-guest induced changes in emission intensity and lifetime for the detection of inorganic phosphate in human serum samples, and for monitoring the enzymatic production of AMP in real-time.
在具有生物相关性的水溶液中,设计能够结合并识别阴离子的分子受体是超分子化学中的一项关键挑战。由于无机磷酸具有较高的水合能以及pH依赖性形态,对其进行识别尤其具有挑战性。由于单磷酸腺苷(AMP)与带更多负电荷的阴离子ATP和ADP在结构上相似,因此它是超分子检测中一个有价值但难以捉摸的目标。我们报道了两种新型大环铕(III)受体,它们能够在水中选择性地识别无机磷酸和AMP。这些受体含有一个空间位阻较大的8-(苄氧基)喹啉侧链臂,该侧链臂与金属中心配位,形成一个适合磷酸和AMP结合的口袋,同时排除了潜在干扰性的螯合阴离子,特别是ATP、碳酸氢根和乳酸根。我们的铕(III)受体的传感选择性顺序为AMP > ADP > ATP,这与大多数已报道的核苷磷酸受体所观察到的选择性顺序相反。我们利用了主客体相互作用引起的发射强度和寿命的独特变化,用于检测人血清样本中的无机磷酸,并实时监测AMP的酶促生成。