ENGINEERING PROTEIN-LIPID INTERACTIONS - TARGETING OF HISTIDINE-TAGGED PROTEINS TO METAL-CHELATING LIPID MONOLAYERS

被引:75
作者
NG, K [1 ]
PACK, DW [1 ]
SASAKI, DY [1 ]
ARNOLD, FH [1 ]
机构
[1] CALTECH,DIV CHEM & CHEM ENGN 21041,PASADENA,CA 91125
关键词
D O I
10.1021/la00010a069
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
In an effort to devise simple and robust systems that can reproduce in synthetic membranes important features of biological targeting and surface assembly, a versatile system for targeting proteins to lipid membranes has been developed. This system utilizes metal-chelating iminodiacetate (IDA) lipids loaded with divalent metal ions (Cu2+ or Ni2+) to target proteins genetically modified with a poly(histidine) fusion peptide. The new pyrene-labeled iminodiacetate lipid 2 can be used for fluorescence imaging and spectroscopic studies of lipid reorganization induced by protein binding and assembly on lipid membranes. Metal-chelating IDA lipids 1 and 2 target the soluble domain of cytochrome b(5) to lipid assemblies by sharing the metal ion with a six-histidine sequence appended to the protein C-terminus. Protein binding to Langmuir monolayers containing the IDA-Cu2+ lipids 1 and 2 is observed by monitoring increases in the monolayer area at a surface pressure high enough to block nonspecific protein insertion (25 mN/m). The His-tagged cytochrome b(5) binds the Cu2+-loaded 2 monolayer with high affinity (K-d < 50 nM). No binding is observed in the absence of metal ions or for cytochrome b(5) without the 6-His fusion peptide. Specific protein targeting to the monolayer loaded with Ni2+ is confirmed by fluorescence microscopy of fluorescein-labeled 6-His cytochrome b(5). The poly(histidine) fusion peptide, widely used for recombinant protein purification, makes this targeting approach applicable to a large number of proteins.
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页码:4048 / 4055
页数:8
相关论文
共 41 条
[11]  
Gaines G. L., 1966, INSOLUBLE MONOLAYERS
[12]   THE MECHANISM OF PROTEIN CRYSTAL-GROWTH FROM LIPID LAYERS [J].
HEMMING, SA ;
BOCHKAREV, A ;
DARST, SA ;
KORNBERG, RD ;
ALA, P ;
YANG, DSC ;
EDWARDS, AM .
JOURNAL OF MOLECULAR BIOLOGY, 1995, 246 (02) :308-316
[13]   INNOVATIVE MATERIALS PROCESSING STRATEGIES - A BIOMIMETIC APPROACH [J].
HEUER, AH ;
FINK, DJ ;
LARAIA, VJ ;
ARIAS, JL ;
CALVERT, PD ;
KENDALL, K ;
MESSING, GL ;
BLACKWELL, J ;
RIEKE, PC ;
THOMPSON, DH ;
WHEELER, AP ;
VEIS, A ;
CAPLAN, AI .
SCIENCE, 1992, 255 (5048) :1098-1105
[14]   BIOMINERALIZATION - NEW DIRECTIONS IN CRYSTAL SCIENCE [J].
HEYWOOD, BR .
MICROSCOPY RESEARCH AND TECHNIQUE, 1994, 27 (05) :376-388
[15]   GENETIC APPROACH TO FACILITATE PURIFICATION OF RECOMBINANT PROTEINS WITH A NOVEL METAL CHELATE ADSORBENT [J].
HOCHULI, E ;
BANNWARTH, W ;
DOBELI, H ;
GENTZ, R ;
STUBER, D .
BIO-TECHNOLOGY, 1988, 6 (11) :1321-1325
[16]   A COOH-TERMINAL PEPTIDE CONFERS REGIOSPECIFIC ORIENTATION AND FACILITATES ATOMIC FORCE MICROSCOPY OF AN IGG(1) [J].
ILL, CR ;
KEIVENS, VM ;
HALE, JE ;
NAKAMURA, KK ;
JUE, RA ;
CHENG, S ;
MELCHER, ED ;
DRAKE, B ;
SMITH, MC .
BIOPHYSICAL JOURNAL, 1993, 64 (03) :919-924
[17]   2-DIMENSIONAL CRYSTALLIZATION OF HISTIDINE-TAGGED, HIV-1 REVERSE-TRANSCRIPTASE PROMOTED BY A NOVEL NICKEL-CHELATING LIPID [J].
KUBALEK, EW ;
LEGRICE, SFJ ;
BROWN, PO .
JOURNAL OF STRUCTURAL BIOLOGY, 1994, 113 (02) :117-123
[18]  
MALLIK S, 1994, NEW J CHEM, V18, P299
[19]   CRYSTALLIZATION AT INORGANIC-ORGANIC INTERFACES - BIOMINERALS AND BIOMIMETIC SYNTHESIS [J].
MANN, S ;
ARCHIBALD, DD ;
DIDYMUS, JM ;
DOUGLAS, T ;
HEYWOOD, BR ;
MELDRUM, FC ;
REEVES, NJ .
SCIENCE, 1993, 261 (5126) :1286-1292
[20]   3-DIMENSIONAL FOURIER SYNTHESIS OF CALF LIVER CYTOCHROME B5 AT 2.8 A RESOLUTION [J].
MATHEWS, FS ;
ARGOS, P ;
LEVINE, M .
JOURNAL OF MOLECULAR BIOLOGY, 1972, 64 (02) :449-&