Effects of convective solute and impurity transport in protein crystal growth

被引:78
作者
Vekilov, PG [1 ]
Thomas, BR [1 ]
Rosenberger, F [1 ]
机构
[1] Univ Alabama, Ctr Micrograv & Mat Res, Huntsville, AL 35899 USA
关键词
D O I
10.1021/jp973123n
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
High-resolution optical interferometry was used to investigate the effects of forced solution convection on the crystal growth kinetics of the model protein lysozyme. Most experiments were conducted with 99.99% pure protein solutions. To study impurity effects, similar to 1% of lysozyme dimer (covalently bound) was added in some cases. We show that the unsteady kinetics, corresponding to bunching of growth steps, can be characterized by the Fourier components of time traces of the growth rate. Specific Fourier spectra are uniquely determined by the solution conditions (composition, temperature, and flow rate) and the growth layer source activity. We found that the average step velocity and growth rate increase by similar to 10% with increasing flow rate, as a result of the enhanced solute supply to the interface. More importantly, faster convective transport results in lower fluctuation amplitudes. This observation supports our rationale for system-dependent effects of transport on the structural perfection of protein crystals. We also found that solution flow rates >500 mu m/s result in stronger fluctuations while the average growth rate is decreased. This can lead to growth cessation at low supersaturations. With the intentionally contaminated solutions, these undesirable phenomena occurred at about half the flow rates required in pure solutions. Thus, we conclude that they are due to enhanced convective supply of impurities that are incorporated into the crystal during growth. Furthermore, we found that the impurity effects are reduced at higher crystal growth rates. Since the exposure time of terraces is inversely proportional to the growth rate, this observation suggests that the increased kinetics instability results from impurity adsorption on the interface. Finally, we provide evidence relating earlier observations of "slow protein crystal growth kinetics" to step bunch formation in response to nonsteady step generation.
引用
收藏
页码:5208 / 5216
页数:9
相关论文
共 52 条
[41]   Nonlinear response of layer growth dynamics in the mixed kinetics-bulk-transport regime [J].
Vekilov, PG ;
Alexander, JID ;
Rosenberger, F .
PHYSICAL REVIEW E, 1996, 54 (06) :6650-6660
[42]   Protein crystal growth under forced solution flow: experimental setup and general response of lysozyme [J].
Vekilov, PG ;
Rosenberger, F .
JOURNAL OF CRYSTAL GROWTH, 1998, 186 (1-2) :251-261
[43]   ELEMENTARY PROCESSES OF PROTEIN CRYSTAL-GROWTH [J].
VEKILOV, PG .
PROGRESS IN CRYSTAL GROWTH AND CHARACTERIZATION OF MATERIALS, 1993, 26 :25-49
[44]   HIGH-RESOLUTION INTERFEROMETRIC-TECHNIQUE FOR IN-SITU STUDIES OF CRYSTAL-GROWTH MORPHOLOGIES AND KINETICS [J].
VEKILOV, PG ;
MONACO, LA ;
ROSENBERGER, F .
JOURNAL OF CRYSTAL GROWTH, 1995, 148 (03) :289-296
[45]   GROWTH-PROCESSES OF PROTEIN CRYSTALS REVEALED BY LASER MICHELSON INTERFEROMETRY INVESTIGATION [J].
VEKILOV, PG ;
ATAKA, M ;
KATSURA, T .
ACTA CRYSTALLOGRAPHICA SECTION D-STRUCTURAL BIOLOGY, 1995, 51 :207-219
[46]   LASER MICHELSON INTERFEROMETRY INVESTIGATION OF PROTEIN CRYSTAL-GROWTH [J].
VEKILOV, PG ;
ATAKA, M ;
KATSURA, T .
JOURNAL OF CRYSTAL GROWTH, 1993, 130 (1-2) :317-320
[47]  
VEKILOV PG, UNPUB PHYS REV LETT
[48]  
VEKILOV PG, UNPUB
[49]  
Voronkov V. V., 1992, Soviet Physics - Crystallography, V37, P289
[50]   STEP KINETICS IN THE PRESENCE OF MOBILE ADSORBED IMPURITY [J].
VORONKOV, VV ;
RASHKOVICH, LN .
JOURNAL OF CRYSTAL GROWTH, 1994, 144 (1-2) :107-115