The ‘CαNN’ motif: an intrinsic lover of sulfate and phosphate ions?
RSC Advances Pub Date: 2016-05-27 DOI: 10.1039/C6RA07012D
Abstract
The anion binding ‘CαNN’ motif, which is comprised of three consecutive amino acid residues, usually occurs in the protein loop regions preceding a helix. Recent computational work on the ‘CαNN’ motif present at the N-terminus of a series of context-free chimeric peptides hypothesizes that its interaction with anions (sulfate/phosphate), is locally-mediated. However, the effectiveness of the interaction depends on the sequence and the conformation of the motif as well as the nature of the anion. In order to substantiate the suppositions obtained from the in silico evidence regarding the affinity of the ‘CαNN’ motif towards anions, we have used complementary biophysical experiments to study the interaction of anions (sulfate and phosphate) with the ‘motif’ segments. Analyses of the results have clearly established that even in a non-proteinaceous, context-free system without any tertiary effect, the ‘CαNN’ motif can recognize the anions (both sulfate and phosphate) through local interactions along with augmentation of the helical conformation at the motif segment. However, the efficacy of the interaction depends on the motif sequence and the participating anion. These observations clearly establish the intrinsic affinity of the ‘CαNN’ motif for anions along with its sequence and conformational prerogatives towards recognition.
Recommended Literature
- [1] An amide probe as a selective Al3+ and Fe3+ sensor inside the HeLa and a549 cell lines: Pictet–Spengler reaction for the rapid detection of tryptophan amino acid? Bidyut Kumar Kundu,Rinky Singh,Ritudhwaj Tiwari,Debasis NayakNew J. Chem., 2019,43, 4867-4877 10.1039/C9NJ00138G
- [2] An aptasensor for detection of potassium ions based on RecJf exonuclease mediated signal amplification Bidou Wang,Xifeng ChenAnalyst, 2014,139, 5695-5699 10.1039/C4AN01350F
- [3] An approach to 7-aza-1-phosphanorbornane complexes: strain promoted rearrangement of 1-iminylphosphirane complexes and cycloaddition with olefins? Yang Xu,Min Wang,Donghui Wei,Rongqiang Tian,Zheng Duan,Fran?ois MatheyDalton Trans., 2019,48, 5523-5526 10.1039/C9DT00838A
- [4] An artificial enzyme cascade amplification strategy for highly sensitive and specific detection of breast cancer-derived exosomes? Huiying Xu,Lu Zheng,Yu Zhou,Bang-Ce YeAnalyst, 2021,146, 5542-5549 10.1039/D1AN01071A
- [5] An artificial CO-releasing metalloprotein built by histidine-selective metallation? Inês S. Albuquerque,Hélia F. Jeremias,Miguel Chaves-Ferreira,Dijana Matak-Vinkovic,Omar Boutureira,Carlos C. Rom?oChem. Commun., 2015,51, 3993-3996 10.1039/C4CC10204E
- [6] An anti-leakage liquid metal thermal interface material Kaiyuan Huang,Wangkang Qiu,Meilian Ou,Xiaorui Liu,Zenan Liao,Sheng ChuRSC Adv., 2020,10, 18824-18829 10.1039/D0RA02351E
- [7] Alt-proteins: A promising future 10.1002/fsat.3701_10.x
- [8] An approach for correlating the structural and electrical properties of Zr4+-modified SrBi4Ti4O15/SBT ceramic Priyambada Nayak,Tanmaya Badapanda,Anil Kumar Singh,Simanchalo PanigrahiRSC Adv., 2017,7, 16319-16331 10.1039/C7RA00366H
- [9] Acetyl group orientation modulates the electronic ground-state asymmetry of the special pair in purple bacterial reaction centers P. K. Wawrzyniak,M. T. P. Beerepoot,H. J. M. de Groot,F. BudaPhys. Chem. Chem. Phys., 2011,13, 10270-10279 10.1039/C1CP20213H
- [10] An assay for the enzyme N-acetyl-β-d-glucosaminidase (NAGase) based on electrochemical detection using screen-printed carbon electrodes (SPCEs) R. M. Pemberton,J. P. Hart,T. T. MottramAnalyst, 2001,126, 1866-1871 10.1039/B104874K
Journal Name:RSC Advances
research_products
-
CAS no.: 89640-58-4