Poly-proline-based chiral stationary phases: A molecular dynamics study of triproline, tetraproline, pentaproline and hexaproline interfaces

被引:14
作者
Ashtari, M. [1 ]
Cann, N. M. [1 ]
机构
[1] Queens Univ, Dept Chem, Kingston, ON K7L 3N6, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
Poly-proline; Molecular dynamics simulation; Chiral stationary phase; HPLC; Chiral chromatography; DENSITY-FUNCTIONAL THEORY; UNITED-ATOM DESCRIPTION; HYDROGEN-BOND DYNAMICS; TRANSFERABLE POTENTIALS; II CONFORMATION; NUCLEIC-ACIDS; POLYPROLINE; PROTEINS; PERFORMANCE; SIMULATION;
D O I
10.1016/j.chroma.2012.09.075
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Poly-proline chains and derivatives have been recently examined as the basis for new chiral stationary phases in high performance liquid chromatography [1-5]. The selectivity of poly-proline has been measured for peptides with up to ten praline units [1]. In this article, we employ molecular dynamics simulations to examine the interfacial structure and salvation of surface-bound poly-proline chiral selectors. Specifically, we study the interfacial structure of trimethylacetyl-terminated poly-proline chains with three-to-six prolines. The surface includes silanol groups and end-caps, to better capture the characteristics of the stationary phase, and the solvent is either a polar water/methanol or a relatively apolar n-hexane/2-propanol mixture. we begin with a comprehensive ab initio study of the conformers, their energies, and an assessment of conformer flexibility. Force fields have been developed for each poly-proline selector. Molecular dynamics simulations are employed to study the preferred backbone conformations and solvent hydrogen bonding for different poly-proline/solvent interfaces. For triproline, the effect of two different terminal groups, trimethylacetyl and t-butyl carbamate are compared. (C) 2012 Elsevier B.V. All rights reserved.
引用
收藏
页码:70 / 87
页数:18
相关论文
共 68 条
[1]   LEFT-HANDED POLYPROLINE-II HELICES COMMONLY OCCUR IN GLOBULAR-PROTEINS [J].
ADZHUBEI, AA ;
STERNBERG, MJE .
JOURNAL OF MOLECULAR BIOLOGY, 1993, 229 (02) :472-493
[2]   PROTEINS AND PEPTIDES AS CHIRAL SELECTORS IN LIQUID-CHROMATOGRAPHY [J].
ALLENMARK, SG ;
ANDERSSON, S .
JOURNAL OF CHROMATOGRAPHY A, 1994, 666 (1-2) :167-179
[4]   Proline-based chiral stationary phases: A molecular dynamics study of the interfacial structure [J].
Ashtari, M. ;
Cann, N. M. .
JOURNAL OF CHROMATOGRAPHY A, 2011, 1218 (37) :6331-6347
[5]   Evaluation of pentaproline-based chiral stationary phase by LC [J].
Bao, Ye ;
Huang, Junmin ;
Li, Tingyu ;
Armstrong, Daniel W. .
CHROMATOGRAPHIA, 2008, 67 (Suppl 1) :S13-S32
[6]   Polyproline II structure in proteins: Identification by chiroptical spectroscopies, stability, and functions [J].
Bochicchio, B ;
Tamburro, AM .
CHIRALITY, 2002, 14 (10) :782-792
[7]   Effects of H2O and D2O polyproline lane II helical structure [J].
Chellgren, BW ;
Creamer, TP .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2004, 126 (45) :14734-14735
[8]   Monte Carlo calculations for alcohols and their mixtures with alkanes. Transferable potentials for phase equilibria. 5. United-atom description of primary, secondary, and tertiary alcohols [J].
Chen, B ;
Potoff, JJ ;
Siepmann, JI .
JOURNAL OF PHYSICAL CHEMISTRY B, 2001, 105 (15) :3093-3104
[9]   A 2ND GENERATION FORCE-FIELD FOR THE SIMULATION OF PROTEINS, NUCLEIC-ACIDS, AND ORGANIC-MOLECULES [J].
CORNELL, WD ;
CIEPLAK, P ;
BAYLY, CI ;
GOULD, IR ;
MERZ, KM ;
FERGUSON, DM ;
SPELLMEYER, DC ;
FOX, T ;
CALDWELL, JW ;
KOLLMAN, PA .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1995, 117 (19) :5179-5197
[10]  
Cressman E., UNPUB