Structure-Based Design of Xe-129 NMR Biosensors for Multiplexed Cancer Detection
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1.129Xe BIOSENSORS AND THEIR USE
- 发明人:
- 授权日:}
- 专利
2.Protein Reporters for Ultrasensitive Detection Methods
- 发明人:
- 授权日:}
- 专利
3.Monomeric Cryptophane with Record-High Xe Affinity Gives Insights into Aggregation-Dependent Sensing
- Zemerov,Serge D;Lin,Yannan;Dmochowski,Ivan J;
- 《Anal Chem》
- 2021年
- 93卷
- 3期
- 期刊
4.Xe-129 NMR-Protein Sensor Reveals Cellular Ribose Concentration
- 关键词:
- Mammals ; Binding sites ; Cell culture ; Lanthanum compounds ; Proteins;Analytical method ; Background signals ; Biological fluids ; Biological samples ; Chemical exchange saturation transfer ; Concentration ranges ; Ribose;binding proteins ; Specific recognition
- ZemerovSergeD.;RooseBenjaminW.;FarenhemKelseyL.;ZhaoZhuangyu;StringerMadisonA.;GoldmanAaronR.;SpeicherDavidW.;DmochowskiIvanJ.
- 《Analytical Chemistry》
- 2020年
- 92卷
- 19期
- 期刊
Dysregulation of cellular ribose uptake can be indicative of metabolic abnormalities or tumorigenesis. However, analytical methods are currently limited for quantifying ribose concentration in complex biological samples. Here, we utilize the highly specific recognition of ribose by ribose-binding protein (RBP) to develop a single-protein ribose sensor detectable via a sensitive NMR technique known as hyperpolarized 129Xe chemical exchange saturation transfer (hyper-CEST). We demonstrate that RBP, with a tunable ribose-binding site and further engineered to bind xenon, enables the quantitation of ribose over a wide concentration range (nM to mM). Ribose binding induces the RBP "closed"conformation, which slows Xe exchange to a rate detectable by hyper-CEST. Such detection is remarkably specific for ribose, with the minimal background signal from endogenous sugars of similar size and structure, for example, glucose or ribose-6-phosphate. Ribose concentration was measured for mammalian cell lysate and serum, which led to estimates of low-mM ribose in a HeLa cell line. This highlights the potential for using genetically encoded periplasmic binding proteins such as RBP to measure metabolites in different biological fluids, tissues, and physiologic states. Copyright © 2020 American Chemical Society.
...5.Paramagnetic Organocobalt Capsule Revealing Xenon Host-Guest Chemistry
- Du,Kang;Zemerov,Serge D;Hurtado Parra,Sebastian;Kikkawa,James M;Dmochowski,Ivan J;
- 《Inorg Chem》
- 2020年
- 59卷
- 19期
- 期刊
6.Detecting protein-protein interactions by Xe-129 NMR
- Zhao,Zhuangyu;Roose,Benjamin W;Zemerov,Serge D;Stringer,Madison A;Dmochowski,Ivan J;
- 《Chem Commun》
- 2020年
- 56卷
- 75期
- 期刊
7.sup.129Xe biosensors and their use
- 发明人:UNIVERSITY OF PENNSYLVANIA;
- 授权日:}
- 专利
8.Tri-functionalized cryptophane biosensors
- 发明人:UNIVERSITY OF PENNSYLVANIA;
- 授权日:}
- 专利
9.Paramagnetic Shifts and Guest Exchange Kinetics in ConFe4-n Metal-Organic Capsules
- 关键词:
- XE-129 NMR-SPECTROSCOPY; SPIN-EXCHANGE; URATE OXIDASE; XENON; BIOSENSOR;MRI; BINDING; ADSORPTION; SEPARATION; COMPLEX
- Du, Kang;Zemerov, Serge D.;Carroll, Patrick J.;Dmochowski, Ivan J.
- 《INORGANIC CHEMISTRY》
- 2020年
- 59卷
- 17期
- 期刊
We investigate the magnetic resonance properties and exchange kinetics of guest molecules in a series of hetero-bimetallic capsules, [ConFe4-nL6](4-) (n = 1-3), where L2- = 4,4'-bis[(2-pyridinylmethylene)amino]-[1,1'-biphenyl]-2,2'-disulfonate. H bond networks between capsule sulfonates and guanidinium cations promote the crystallization of [ConFe4-nL6](4-). The following four isostructural crystals are reported: two guest-free forms, (C(NH2)(3))(4)[Co1.8Fe2.2L6]center dot 69H(2)O (1) and (C(NH2)(3))(4)[Co2.7Fe1.3L6]center dot 73H(2)O (2), and two Xe- and CFCl3-encapsulated forms, (C(NH2)(3))(4)[(Xe)(0.8)Co1.8Fe2.2L6]center dot 69H(2)O (3) and (C(NH2)(3))(4)[(CFCl3)Co2.0Fe2.0L6]center dot 73H(2)O (4), respectively. Structural analyses reveal that Xe induces negligible structural changes in 3, while the angles between neighboring phenyl groups expand by ca. 3 degrees to accommodate the much larger guest, CFCl3, in 4. These guest-encapsulated [ConFe4-nL6](4-) molecules reveal Xe-129 and F-19 chemical shift changes of ca. -22 and -10 ppm at 298 K, respectively, per substitution of low-spin Fe-II by high-spin Co-II. Likewise, the temperature dependence of the Xe-129 and F-19 NMR resonances increases by 0.1 and 0.06 ppm/K, respectively, with each additional paramagnetic Co-II center. The optimal temperature for hyperpolarized (hp) Xe-129 chemical exchange saturation transfer (hyper-CEST) with [ConFe4-nL6](4-) capsules was found to be inversely proportional to the number of Co-II centers, n, which is consistent with the Xe chemical exchange accelerating as the portals expand. The systematic study was facilitated by the tunability of the [M4L6](4-) capsules, further highlighting these metal-organic systems for developing responsive sensors with highly shifted Xe-129 resonances.
...10.A Structural Basis for 129 Xe Hyper-CEST Signal in TEM-1-Lactamase
- Roose,Benjamin W;Zemerov,Serge D;Wang,Yanfei;Kasimova,Marina A;Carnevale,Vincenzo;Dmochowski,Ivan J;
- 《Chemphyschem:a European journal of chemical physics and physical chemistry》
- 2019年
- 20卷
- 2期
- 期刊
