Ionic interactions in crystalline bovine pancreatic ribonuclease A

被引:50
作者
Fedorov, AA
JosephMcCarthy, D
Fedorov, E
Sirakova, D
Graf, I
Almo, SC
机构
[1] ALBERT EINSTEIN COLL MED, DEPT BIOCHEM, BRONX, NY 10461 USA
[2] HARVARD UNIV, SCH MED, DEPT BIOL CHEM & MOL PHARMACOL, BOSTON, MA 02115 USA
关键词
D O I
10.1021/bi961533g
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Isomorphous crystals (space group P3(2)21) of bovine pancreatic ribonuclease A (RNase A) were prepared at a pH of 5.5 in a series of high salt conditions. where both the nature of the ions and the ionic strength varied: 80% ammonium sulfate (mu = 12.5); 8 M sodium formate (mu = 8.0); 3 M NaCl, 30% ammonium sulfate (mu = 7.0); 3 M CsCl, 30% ammonium sulfate (mu = 7.0); and 3.5 M NaCl, 3.3 M sodium formate (mu = 5.8). These structures were independently refined to a resolution of 2.0 Angstrom or better with R-factors that range from 16.1% to 17.5%. A comparison of these six structures and the monoclinic crystal form of RNase A grown from alcohol shows that changes in ionic strength do not alter the secondary or tertiary sturcture and that there are no significant changes in intramolecular salt bridges. These findings support the notion that structures determined from crystals grown in high salt are representative of the overall structural and electrostatic features present under physiological conditions. While little effect was observed on the main chain conformation, several residues adapted different side chain conformations and altered hydrogen-bonding patterns, either as result of direct anion binding or more subtle indirect effects, Changes in the ionic composition of the mother liquor allowed for the occupancy of the active site with different anions, The direct observation of active site-bound chloride and formate anions supports the proposal that these species act as true competitive inhibitors of RNase A and not through nonspecific electrostatic effects, The identification of bound formate anions allowed for an experimental validation of computational-based functional group mapping techniques and suggests a useful modification to these approaches. Electrostatic surface potential calculations identify a nearly continuous band of positive potential, consistent with an extended binding site for polynucleotide ligands and substrates. The majority of these residues are not involved in salt bridges, which may facilitate binding to extended polynucleotide substrates. Selection of the appropriate solvent conditions results in an unoccupied active site, which will allow this crystal form to be used for the crystallographic study of productive ligand-binding modes.
引用
收藏
页码:15962 / 15979
页数:18
相关论文
共 87 条
[1]   NEWLY OBSERVED BINDING MODE IN PANCREATIC RIBONUCLEASE [J].
AGUILAR, CF ;
THOMAS, PJ ;
MILLS, A ;
MOSS, DS ;
PALMER, RA .
JOURNAL OF MOLECULAR BIOLOGY, 1992, 224 (01) :265-267
[2]   NOVEL NON-PRODUCTIVELY BOUND RIBONUCLEASE INHIBITOR COMPLEXES - HIGH-RESOLUTION X-RAY REFINEMENT STUDIES ON THE BINDING OF RNASE-A TO CYTIDYLYL-2',5'-GUANOSINE (2',5'CPG) AND DEOXYCYTIDYLYL-3',5'-GUANOSINE (3',5'DCPDG) [J].
AGUILAR, CF ;
THOMAS, PJ ;
MOSS, DS ;
MILLS, A ;
PALMER, RA .
BIOCHIMICA ET BIOPHYSICA ACTA, 1991, 1118 (01) :6-20
[3]  
ALBER T, 1973, CIBA F S, V93, P4
[4]   An experimental approach to mapping the binding surfaces of crystalline proteins [J].
Allen, KN ;
Bellamacina, CR ;
Ding, XC ;
Jeffery, CJ ;
Mattos, C ;
Petsko, GA ;
Ringe, D .
JOURNAL OF PHYSICAL CHEMISTRY, 1996, 100 (07) :2605-2611
[5]  
BALL JA, 1991, PROTEIN-STRUCT FUNCT, V10, P10
[6]   CRYSTAL-STRUCTURE OF A FLUORESCENT DERIVATIVE OF RNASE-A [J].
BAUDETNESSLER, S ;
JULLIEN, M ;
CROSIO, MP ;
JANIN, J .
BIOCHEMISTRY, 1993, 32 (33) :8457-8464
[7]   MOLECULAR EVOLUTION OF THE RIBONUCLEASE SUPERFAMILY [J].
BEINTEMA, JJ ;
SCHULLER, C ;
IRIE, M ;
CARSANA, A .
PROGRESS IN BIOPHYSICS & MOLECULAR BIOLOGY, 1988, 51 (03) :165-192
[8]   PROTEIN DATA BANK - COMPUTER-BASED ARCHIVAL FILE FOR MACROMOLECULAR STRUCTURES [J].
BERNSTEIN, FC ;
KOETZLE, TF ;
WILLIAMS, GJB ;
MEYER, EF ;
BRICE, MD ;
RODGERS, JR ;
KENNARD, O ;
SHIMANOUCHI, T ;
TASUMI, M .
JOURNAL OF MOLECULAR BIOLOGY, 1977, 112 (03) :535-542
[9]  
Blackburn P, 1982, ENZYMES, VXV, P317
[10]   CRYSTAL-STRUCTURE ANALYSIS AND REFINEMENT OF 2 VARIANTS OF TRIGONAL TRYPSINOGEN - TRIGONAL TRYPSIN AND PEG (POLYETHYLENE-GLYCOL) TRYPSINOGEN AND THEIR COMPARISON WITH ORTHORHOMBIC TRYPSIN AND TRIGONAL TRYPSINOGEN [J].
BODE, W ;
HUBER, R .
FEBS LETTERS, 1978, 90 (02) :265-269