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Dive into the research topics where Asha A. Oroskar is active.

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Featured researches published by Asha A. Oroskar.


Nature Methods | 2015

Rapid, optimized interactomic screening

Zhanna Hakhverdyan; Michal Domanski; Loren E. Hough; Asha A. Oroskar; Anil Oroskar; Sarah Keegan; David J. Dilworth; Kelly R. Molloy; Vadim Sherman; John D. Aitchison; David Fenyö; Brian T. Chait; Torben Heick Jensen; Michael P. Rout; John LaCava

We must reliably map the interactomes of cellular macromolecular complexes in order to fully explore and understand biological systems. However, there are no methods to accurately predict how to capture a given macromolecular complex with its physiological binding partners. Here, we present a screening method that comprehensively explores the parameters affecting the stability of interactions in affinity-captured complexes, enabling the discovery of physiological binding partners in unparalleled detail. We have implemented this screen on several macromolecular complexes from a variety of organisms, revealing novel profiles for even well-studied proteins. Our approach is robust, economical and automatable, providing inroads to the rigorous, systematic dissection of cellular interactomes.


Langmuir | 2017

The Composition of the Mobile Phase Affects the Dynamic Chiral Recognition of Drug Molecules by the Chiral Stationary Phase

Binwu Zhao; Priyanka A. Oroskar; Xiaoyu Wang; David W. House; Anil Oroskar; Asha A. Oroskar; Cynthia J. Jameson; Sohail Murad

More than half of all pharmaceuticals are chiral compounds. Although the enantiomers of chiral compounds have the same chemical structure, they can exhibit marked differences in physiological activity; therefore, it is important to remove the undesirable enantiomer. Chromatographic separation of chiral enantiomers is one of the best available methods to get enantio-pure substances, but the optimization of the experimental conditions can be very time-consuming. One of the most widely used chiral stationary phases, amylose tris(3,5-dimethylphenyl carbamate) (ADMPC), has been extensively investigated using both experimental and computational methods; however, the dynamic nature of the interaction between enantiomers and ADMPC, as well as the solvent effects on the ADMPC-enantiomer interaction, are currently absent from models of the chiral recognition mechanism. Here we use QM/MM and molecular dynamics (MD) simulations to model the enantiomers of flavanone on ADMPC in either methanol or heptane/2-propanol (IPA) (90/10) to elucidate the chiral recognition mechanism from a new dynamic perspective. In atomistic MD simulations, the 12-mer model of ADMPC is found to hold the 4/3 left-handed helical structure in both methanol and heptane/IPA (90/10); however, the ADMPC polymer is found to have a more extended average structure in heptane/IPA (90/10) than in methanol. This results from the differences in the distribution of solvent molecules close to the backbone of ADMPC leads to changes in the distribution of the (φ, ψ) dihedral angles of the glycoside bond (between adjacent monomers) that define the structure of the polymer. Our simulations have shown that the lifetime of hydrogen bonds formed between ADMPC and flavanone enantiomers in the MD simulations are able to reproduce the elution order observed in experiments for both the methanol and the heptane/IPA solvent systems. Furthermore, the ratios of hydrogen-bonding-lifetime-related properties also capture the solvent effects, in that heptane/IPA (90/10) is found to make the separation between the two enantiomers of flavanone less effective than methanol, which agrees with the experimental separation factors of 0.9 versus 0.4 for R/S, respectively.


Archive | 2005

Valve and process for interrupted continuous flow chromatography

Anil Oroskar; Saurabh Paresh Parikh; Asha A. Oroskar; Kenneth U. Johnson; Anthony Joseph Escarcega


Archive | 2011

Apparatus and method for parallel collection and analysis of the proteome and complex compositions

Asha A. Oroskar; John LaCava; Michael P. Rout; Anil Oroskar


Archive | 2013

SUB-2 MICRON CHIRAL STATIONARY PHASE SEPARATION AGENTS FOR USE WITH SUPERCRITICAL FLUID CHROMATOGRAPHY

David W. House; Asha A. Oroskar


Archive | 2015

KRILL OIL REFINERY FOR PURIFICATION OF KRILL OIL EXTRACT

Anil Oroskar; Asha A. Oroskar; Alexander B. Smetana; Slobodan Milasinovic; Xuejun Zang


Archive | 2013

SUB-2 MICRON CHIRAL STATIONARY PHASE SEPARATION AGENT

David W. House; Asha A. Oroskar


Archive | 2009

HIGH-YIELD PRODUCTION OF ORGANIC NITRILES

Anil Oroskar; Paul Roman Kurek; Asha A. Oroskar


Archive | 2017

PROCESS FOR SEPARATING ASTAXANTHAN

Anil Oroskar; Asha A. Oroskar; Alexander B. Smetana; Slobodan Milasinovic; Xuejun Zang


Archive | 2016

SEPARATION OF POLAR LIPIDS FROM KRILL OIL EXTRACT

Anil Oroskar; Asha A. Oroskar; Alexander B. Smetana; Slobodan Milasinovic; Xuejun Zang

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John LaCava

Rockefeller University

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Cynthia J. Jameson

University of Illinois at Chicago

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Loren E. Hough

University of Colorado Boulder

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Priyanka A. Oroskar

University of Illinois at Chicago

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