Malikidogo Kyangwi P, Pallier Agnès, Szeremeta Frédéric, Bonnet Célia S, Sénèque Olivier
Univ. Grenoble Alpes, CNRS, CEA, IRIG, LCBM (UMR 5249), F-38000 Grenoble, France.
Centre de Biophysique Moléculaire, CNRS (UPR 4301), Université d'Orléans, F-45041 Orléans, France.
Dalton Trans. 2023 May 16;52(19):6260-6266. doi: 10.1039/d3dt00728f.
Two zinc finger peptides, namely ZFQD and ZFQE (Ln = Tb or Gd), with an appended Ln chelate and a phosphoserine able to coordinate the Ln ion are presented. The two peptides differ by the amino acid anchorage of the chelate, either aspartate (D) or glutamate (E). Both peptides are able to bind Zn and adopt the ββα fold. Interestingly, ZFQE shows a decrease in sensitized Tb luminescence upon Zn binding whereas ZFQD does not. The luminescence change upon Zn binding is attributed to a change in hydration number () of the Tb ion due to the decoordination of the phosphoserine from the Ln ion upon Zn binding and peptide folding. This process is highly sensitive to the length of the linker between the Ln chelate and the peptidic backbone. The magnetic properties of the gadolinium analogue ZFQE were studied. An impressive relaxivity increase of 140% is observed at 60 MHz and 25 °C upon Zn binding. These changes can be attributed to a combined increase effect of the hydration number of Gd and of the rigidity of the system upon Zn binding. Phantom MR images at 9.4 T show a clear signal enhancement in the presence of Zn. These zinc finger peptides offer a unique platform to design such Zn-responsive probes.
本文介绍了两种锌指肽,即ZFQD和ZFQE(Ln = Tb或Gd),它们带有一个附加的Ln螯合物和一个能够与Ln离子配位的磷酸丝氨酸。这两种肽在螯合物的氨基酸锚定方面有所不同,分别为天冬氨酸(D)或谷氨酸(E)。两种肽都能够结合Zn并采用ββα折叠结构。有趣的是,ZFQE在结合Zn后敏化Tb发光强度降低,而ZFQD则没有。结合Zn后发光强度的变化归因于Zn结合和肽折叠时磷酸丝氨酸与Ln离子解配位导致Tb离子水合数()的变化。这个过程对Ln螯合物和肽主链之间连接子的长度高度敏感。研究了钆类似物ZFQE的磁性。在60 MHz和25 °C下,结合Zn后观察到弛豫率显著增加140%。这些变化可归因于结合Zn后Gd水合数和体系刚性的综合增加效应。9.4 T下的体模磁共振图像显示在存在Zn的情况下信号明显增强。这些锌指肽为设计这种Zn响应探针提供了一个独特的平台。