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Page 1
How capture affects polymer translocation in a solitary nanopore.
Seth S, Bhattacharya A. Seth S, et al. J Chem Phys. 2022 Jun 28;156(24):244902. doi: 10.1063/5.0094221. J Chem Phys. 2022. PMID: 35778106 Free PMC article.
Our in silico studies identify and differentiate characteristic distributions of the mean first passage time due to single file translocation from those due to translocation of different types of folds and provide direct evidence of the interpretation of the experimentally observ …
Our in silico studies identify and differentiate characteristic distributions of the mean first passage time due to single file translocatio …
Effects of antibody binding on structural transitions of the nicotinic acetylcholine receptor.
Tamamizu S, Butler DH, Lasalde JA, McNamee MG. Tamamizu S, et al. Biochemistry. 1996 Sep 10;35(36):11773-81. doi: 10.1021/bi960369u. Biochemistry. 1996. PMID: 8794758
The rat anti-Torpedo nAChR mAbs examined here are known to inhibit ligand binding to either the high-affinity (mAb 247) or both the high- and low-affinity binding sites (mAb 370 and mAb 387) [Mihovilovic, M. & Richman, D. P. (1984) J. Biol. Chem. 259, 15051-1505 …
The rat anti-Torpedo nAChR mAbs examined here are known to inhibit ligand binding to either the high-affinity (mAb 247) or both the high- an …
Precision Determination of the Neutral Weak Form Factor of ^{48}Ca.
Adhikari D, Albataineh H, Androic D, Aniol KA, Armstrong DS, Averett T, Ayerbe Gayoso C, Barcus SK, Bellini V, Beminiwattha RS, Benesch JF, Bhatt H, Bhatta Pathak D, Bhetuwal D, Blaikie B, Boyd J, Campagna Q, Camsonne A, Cates GD, Chen Y, Clarke C, Cornejo JC, Covrig Dusa S, Dalton MM, Datta P, Deshpande A, Dutta D, Feldman C, Fuchey E, Gal C, Gaskell D, Gautam T, Gericke M, Ghosh C, Halilovic I, Hansen JO, Hassan O, Hauenstein F, Henry W, Horowitz CJ, Jantzi C, Jian S, Johnston S, Jones DC, Kakkar S, Katugampola S, Keppel C, King PM, King DE, Kumar KS, Kutz T, Lashley-Colthirst N, Leverick G, Liu H, Liyanage N, Mammei J, Mammei R, McCaughan M, McNulty D, Meekins D, Metts C, Michaels R, Mihovilovic M, Mondal MM, Napolitano J, Narayan A, Nikolaev D, Owen V, Palatchi C, Pan J, Pandey B, Park S, Paschke KD, Petrusky M, Pitt ML, Premathilake S, Quinn B, Radloff R, Rahman S, Rashad MNH, Rathnayake A, Reed BT, Reimer PE, Richards R, Riordan S, Roblin YR, Seeds S, Shahinyan A, Souder P, Thiel M, Tian Y, Urciuoli GM, Wertz EW, Wojtsekhowski B, Yale B, Ye T, Yoon A, Xiong W, Zec A, Zhang W, Zhang J, Zheng X; CREX Collaboration. Adhikari D, et al. Phys Rev Lett. 2022 Jul 22;129(4):042501. doi: 10.1103/PhysRevLett.129.042501. Phys Rev Lett. 2022. PMID: 35939025
Monoclonal antibodies as probes of the alpha-bungarotoxin and cholinergic binding regions of the acetylcholine receptor.
Mihovilovic M, Richman DP. Mihovilovic M, et al. J Biol Chem. 1987 Apr 15;262(11):4978-86. J Biol Chem. 1987. PMID: 3558382 Free article.
The effect of mAbs on the alpha BgTx and cholinergic ligand binding properties of the AcChR molecule defined three major categories of mAbs: those that block alpha BgTx and carbamylcholine (agonist) binding, but do not block d-tubocurarine (antagonist) binding (383C, 572C, 370C a …
The effect of mAbs on the alpha BgTx and cholinergic ligand binding properties of the AcChR molecule defined three major categories of mAbs: …
Mutations Increasing Cofactor Affinity, Improve Stability and Activity of a Baeyer-Villiger Monooxygenase.
Mansouri HR, Gracia Carmona O, Jodlbauer J, Schweiger L, Fink MJ, Breslmayr E, Laurent C, Feroz S, P Goncalves LC, Rial DV, Mihovilovic MD, Bommarius AS, Ludwig R, Oostenbrink C, Rudroff F. Mansouri HR, et al. ACS Catal. 2022 Oct 7;12(19):11761-11766. doi: 10.1021/acscatal.2c03225. Epub 2022 Sep 13. ACS Catal. 2022. PMID: 36249873 Free PMC article.
We developed variants with improved activity (1.5- to 2.5-fold) and increased thermodynamic (+5 C T (m)) and kinetic stability (8-fold). Our analysis revealed a crucial position in the cofactor binding domain, responsible for an 11-fold increase in affinity to the flavin c …
We developed variants with improved activity (1.5- to 2.5-fold) and increased thermodynamic (+5 C T (m)) and kinetic stability (8-fol …
Interaction of nicotinic acetylcholine receptor with two monoclonal antibodies recognizing different epitopes.
Chinchetru MA, Marquez J, Garcia-Borron JC, Richman DP, Martinez-Carrion M. Chinchetru MA, et al. Biochemistry. 1989 May 16;28(10):4222-9. doi: 10.1021/bi00436a015. Biochemistry. 1989. PMID: 2475163
The interactions of nicotinic acetylcholine receptor (nAChR) with two monoclonal antibodies (mAb370A and mAb371A) which block the agonist-induced ion flux into nicotinic acetylcholine receptor vesicles [Donnelly, D., Mihovilovic, M., Gonzalez-Ros, J. M., Ferr …
The interactions of nicotinic acetylcholine receptor (nAChR) with two monoclonal antibodies (mAb370A and mAb371A) which block the agonist-in …
Measurement of the Nucleon F_{2}^{n}/F_{2}^{p} Structure Function Ratio by the Jefferson Lab MARATHON Tritium/Helium-3 Deep Inelastic Scattering Experiment.
Abrams D, Albataineh H, Aljawrneh BS, Alsalmi S, Androic D, Aniol K, Armstrong W, Arrington J, Atac H, Averett T, Gayoso CA, Bai X, Bane J, Barcus S, Beck A, Bellini V, Bhatt H, Bhetuwal D, Biswas D, Blyth D, Boeglin W, Bulumulla D, Butler J, Camsonne A, Carmignotto M, Castellanos J, Chen JP, Cohen EO, Covrig S, Craycraft K, Cruz-Torres R, Dongwi B, Duran B, Dutta D, Fuchey E, Gal C, Gautam TN, Gilad S, Gnanvo K, Gogami T, Gomez J, Gu C, Habarakada A, Hague T, Hansen JO, Hattawy M, Hauenstein F, Higinbotham DW, Holt RJ, Hughes EW, Hyde C, Ibrahim H, Jian S, Joosten S, Karki A, Karki B, Katramatou AT, Keith C, Keppel C, Khachatryan M, Khachatryan V, Khanal A, Kievsky A, King D, King PM, Korover I, Kulagin SA, Kumar KS, Kutz T, Lashley-Colthirst N, Li S, Li W, Liu H, Liuti S, Liyanage N, Markowitz P, McClellan RE, Meekins D, Beck SM, Meziani ZE, Michaels R, Mihovilovic M, Nelyubin V, Nguyen D, Nuruzzaman, Nycz M, Obrecht R, Olson M, Owen VF, Pace E, Pandey B, Pandey V, Paolone M, Papadopoulou A, Park S, Paul S, Petratos GG, Petti R, Piasetzky E, Pomatsalyuk R, Premathilake S, Puckett AJR, Punjabi V, Ransome RD, Rashad MNH, Reimer PE, Riordan S, Roche J, Salmè G, Santiesteban N, Sawa… See abstract for full author list ➔ Abrams D, et al. Phys Rev Lett. 2022 Apr 1;128(13):132003. doi: 10.1103/PhysRevLett.128.132003. Phys Rev Lett. 2022. PMID: 35426713
Investigation of a New Type I Baeyer-Villiger Monooxygenase from Amycolatopsis thermoflava Revealed High Thermodynamic but Limited Kinetic Stability.
Mansouri HR, Mihovilovic MD, Rudroff F. Mansouri HR, et al. Chembiochem. 2020 Apr 1;21(7):971-977. doi: 10.1002/cbic.201900501. Epub 2020 Jan 9. Chembiochem. 2020. PMID: 31608538 Free PMC article.
The thermodynamic stability, as represented by the melting temperature, resulted in a T(m) value of 53.1 C for BVMO(Flava) , which was comparable to the T(m) of TmCHMO (deltaT(m) =1 C) and significantly higher than the T(m) value for CHMO(Acineto) ((de …
The thermodynamic stability, as represented by the melting temperature, resulted in a T(m) value of 53.1 C for BVMO(Flava) , which wa …
Probing Few-Body Nuclear Dynamics via ^{3}H and ^{3}He (e,e^{'}p)pn Cross-Section Measurements.
Cruz-Torres R, Nguyen D, Hauenstein F, Schmidt A, Li S, Abrams D, Albataineh H, Alsalmi S, Androic D, Aniol K, Armstrong W, Arrington J, Atac H, Averett T, Ayerbe Gayoso C, Bai X, Bane J, Barcus S, Beck A, Bellini V, Benmokhtar F, Bhatt H, Bhetuwal D, Biswas D, Blyth D, Boeglin W, Bulumulla D, Camsonne A, Castellanos J, Chen JP, Cohen EO, Covrig S, Craycraft K, Dongwi B, Duer M, Duran B, Dutta D, Fuchey E, Gal C, Gautam TN, Gilad S, Gnanvo K, Gogami T, Golak J, Gomez J, Gu C, Habarakada A, Hague T, Hansen O, Hattawy M, Hen O, Higinbotham DW, Hughes E, Hyde C, Ibrahim H, Jian S, Joosten S, Kamada H, Karki A, Karki B, Katramatou AT, Keppel C, Khachatryan M, Khachatryan V, Khanal A, King D, King P, Korover I, Kutz T, Lashley-Colthirst N, Laskaris G, Li W, Liu H, Liyanage N, Markowitz P, McClellan RE, Meekins D, Mey-Tal Beck S, Meziani ZE, Michaels R, Mihovilovič M, Nelyubin V, Nuruzzaman N, Nycz M, Obrecht R, Olson M, Ou L, Owen V, Pandey B, Pandey V, Papadopoulou A, Park S, Patsyuk M, Paul S, Petratos GG, Piasetzky E, Pomatsalyuk R, Premathilake S, Puckett AJR, Punjabi V, Ransome R, Rashad MNH, Reimer PE, Riordan S, Roche J, Sargsian M, Santiesteban N, Sawatzky B, Segarra EP, Schmoo… See abstract for full author list ➔ Cruz-Torres R, et al. Phys Rev Lett. 2020 May 29;124(21):212501. doi: 10.1103/PhysRevLett.124.212501. Phys Rev Lett. 2020. PMID: 32530643
Piperine Congeners as Inhibitors of Vascular Smooth Muscle Cell Proliferation.
Mair CE, Liu R, Atanasov AG, Wimmer L, Nemetz-Fiedler D, Sider N, Heiss EH, Mihovilovic MD, Dirsch VM, Rollinger JM. Mair CE, et al. Planta Med. 2015 Aug;81(12-13):1065-74. doi: 10.1055/s-0035-1546165. Epub 2015 Jul 1. Planta Med. 2015. PMID: 26132851
Piperine inhibited vascular smooth muscle cell proliferation with an IC50 of 21.6 M, as quantified by a resazurin conversion assay. Investigations of ten piperamides isolated from black pepper fruits and 15 synthesized piperine derivatives resulted in the identification of …
Piperine inhibited vascular smooth muscle cell proliferation with an IC50 of 21.6 M, as quantified by a resazurin conversion assay. I …
18 results