STRUCTURE-ASSISTED REDESIGN OF A PROTEIN-ZINC-BINDING SITE WITH FEMTOMOLAR AFFINITY

被引:60
作者
IPPOLITO, JA
BAIRD, TT
MCGEE, SA
CHRISTIANSON, DW
FIERKE, CA
机构
[1] DUKE UNIV,MED CTR,DEPT BIOCHEM,DURHAM,NC 27710
[2] UNIV PENN,DEPT CHEM,PHILADELPHIA,PA 19104
关键词
PROTEIN CRYSTALLOGRAPHY; PROTEIN ENGINEERING; ENZYMOLOGY; METALLO ENZYME;
D O I
10.1073/pnas.92.11.5017
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
We have inserted a fourth protein ligand into the zinc coordination polyhedron of carbonic anhydrase II (CAII) that increases metal affinity 200-fold (K-d = 20 fM). The three-dimensional structures of threonine-199 --> aspartate (T199D) and threonine-199 --> glutamate (T199E) CAIIs, determined by x-ray crystallographic methods to resolutions of 2.35 Angstrom and 2.2 Angstrom respectively, reveal a tetrahedral metal-binding site consisting of H94, H96, H119, and the engineered carboxylate side chain, which displaces zinc-bound hydroxide. Although the stereochemistry of neither engineered carboxylate-zinc interaction is comparable to that found in naturally occurring protein zinc-binding sites, protein-zinc affinity is enhanced in T199E CAII demonstrating that ligand-metal separation is a significant determinant of carboxylate-zinc affinity. In contrast, the three dimensional structure of threonine-199 --> histidine (T199H) CAII, determined to 2.25-Angstrom resolution, indicates that the engineered imidazole side chain rotates away from the metal and does not coordinate to zinc; this results in a weaker zinc-binding site. All three of these substitutions nearly obliterate CO2 hydrase activity, consistent with the role of zinc-bound hydroxide as catalytic nucleophile. The engineering of an additional protein ligand represents a general approach for increasing protein-metal affinity if the side chain can adopt a reasonable conformation and achieve inner-sphere zinc coordination. Moreover, this structure-assisted design approach may be effective in the development of high-sensitivity metal ion biosensors.
引用
收藏
页码:5017 / 5021
页数:5
相关论文
共 35 条
[11]   DENOVO DESIGN OF A ZN-2+-BINDING PROTEIN [J].
HANDEL, T ;
DEGRADO, WF .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1990, 112 (18) :6710-6711
[12]  
HENDRICKSON WA, 1985, METHOD ENZYMOL, V115, P252
[13]   THE USE OF 4-(2-PYRIDYLAZO)RESORCINOL IN STUDIES OF ZINC RELEASE FROM ESCHERICHIA-COLI ASPARTATE TRANSCARBAMOYLASE [J].
HUNT, JB ;
NEECE, SH ;
GINSBURG, A .
ANALYTICAL BIOCHEMISTRY, 1985, 146 (01) :150-157
[14]   STRUCTURE OF AN ENGINEERED HIS3CYS ZINC-BINDING SITE IN HUMAN CARBONIC ANHYDRASE-II [J].
IPPOLITO, JA ;
CHRISTIANSON, DW .
BIOCHEMISTRY, 1993, 32 (38) :9901-9905
[15]  
IPPOLITO JA, 1994, BIOCHEMISTRY-US, V33, P15421
[16]   METALLOANTIBODIES [J].
IVERSON, BL ;
IVERSON, SA ;
ROBERTS, VA ;
GETZOFF, ED ;
TAINER, JA ;
BENKOVIC, SJ ;
LERNER, RA .
SCIENCE, 1990, 249 (4969) :659-662
[17]   IMPROVED METHODS FOR BUILDING PROTEIN MODELS IN ELECTRON-DENSITY MAPS AND THE LOCATION OF ERRORS IN THESE MODELS [J].
JONES, TA ;
ZOU, JY ;
COWAN, SW ;
KJELDGAARD, M .
ACTA CRYSTALLOGRAPHICA SECTION A, 1991, 47 :110-119
[18]  
KHALIFAH RG, 1971, J BIOL CHEM, V246, P2561
[19]   ENGINEERING A CYSTEINE LIGAND INTO THE ZINC-BINDING SITE OF HUMAN CARBONIC ANHYDRASE-II [J].
KIEFER, LL ;
KREBS, JF ;
PATERNO, SA ;
FIERKE, CA .
BIOCHEMISTRY, 1993, 32 (38) :9896-9900
[20]   FUNCTIONAL-CHARACTERIZATION OF HUMAN CARBONIC-ANHYDRASE-II VARIANTS WITH ALTERED ZINC-BINDING SITES [J].
KIEFER, LL ;
FIERKE, CA .
BIOCHEMISTRY, 1994, 33 (51) :15233-15240