Control of the transmembrane orientation and interhelical interactions within membranes by hydrophobic helix length

被引:113
作者
Ren, JH
Lew, S
Wang, JY
London, E [1 ]
机构
[1] SUNY Stony Brook, Dept Biochem & Cell Biol, Stony Brook, NY 11794 USA
[2] SUNY Stony Brook, Dept Chem, Stony Brook, NY 11794 USA
关键词
D O I
10.1021/bi982942a
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
We examined the effect of the length of the hydrophobic core of Lys-flanked poly(Leu) peptides on their behavior when inserted into model membranes. Peptide structure and membrane location were assessed by the fluorescence emission lambda(max) of a Trp residue in the center of the peptide sequence, the quenching of Trp fluorescence by nitroxide-labeled lipids (parallax analysis), and circular dichroism. Peptides in which the hydrophobic core varied in length from 11 to 23 residues were found to be largely alpha-helical when inserted into the bilayer. In dioleoylphosphatidylcholine (diC(18:1)PC) bilayers, a peptide with a 19-residue hydrophobic core exhibited highly blue-shifted fluorescence, an indication of Trp location in a nonpolar environment, and quenching localized the Trp to the bilayer center, an indication of transmembrane structure. A peptide with an 11-residue hydrophobic core exhibited emission that was red-shifted, suggesting a more polar Trp environment, and quenching showed the Trp was significantly displaced from the bilayer center, indicating that this peptide formed a nontransmembranous structure. A peptide with a 23-residue hydrophobic core gave somewhat red-shifted fluorescence, but quenching demonstrated the Trp was still close to the bilayer center, consistent with a transmembrane structure. Analogous behavior was observed when the behavior of individual peptides was examined in model membranes with various bilayer widths. Other experiments demonstrated that in diC(18:1)PC bilayers the dilution of the membrane concentration of the peptide with a 23-residue hydrophobic core resulted in a blue shift of fluorescence, suggesting the red-shifted fluorescence at higher peptide concentrations was due to helix oligomerization. The intermolecular self-quenching of rhodamine observed when the peptide was rhodamine-labeled, and the concentration dependence of self-quenching, supported this conclusion. These studies indicate that the mismatch between helix length and bilayer width can control membrane location, orientation, and helix-helix interactions, and thus may mismatch control both membrane protein folding and the interactions between membrane proteins.
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页码:5905 / 5912
页数:8
相关论文
共 36 条
[1]   On the origin of sphingolipid/cholesterol-rich detergent-insoluble cell membranes: Physiological concentrations of cholesterol and sphingolipid induce formation of a detergent-insoluble, liquid-ordered lipid phase in model membranes [J].
Ahmed, SN ;
Brown, DA ;
London, E .
BIOCHEMISTRY, 1997, 36 (36) :10944-10953
[2]   LOCAL-ANESTHETIC BENZYL ALCOHOL INCREASES MEMBRANE THICKNESS [J].
ASHCROFT, RG ;
COSTER, HGL ;
SMITH, JR .
NATURE, 1977, 269 (5631) :819-820
[3]   QUENCHING OF TRYPTOPHAN FLUORESCENCE BY BROMINATED PHOSPHOLIPID [J].
BOLEN, EJ ;
HOLLOWAY, PW .
BIOCHEMISTRY, 1990, 29 (41) :9638-9643
[4]   Helix packing in membrane proteins [J].
Bowie, JU .
JOURNAL OF MOLECULAR BIOLOGY, 1997, 272 (05) :780-789
[5]   CHOLESTEROL AND THE GOLGI-APPARATUS [J].
BRETSCHER, MS ;
MUNRO, S .
SCIENCE, 1993, 261 (5126) :1280-1281
[6]   Structure and origin of ordered lipid domains in biological membranes [J].
Brown, DA ;
London, E .
JOURNAL OF MEMBRANE BIOLOGY, 1998, 164 (02) :103-114
[7]   FLUORESCENCE QUENCHING IN MODEL MEMBRANES .3. RELATIONSHIP BETWEEN CALCIUM ADENOSINE-TRIPHOSPHATASE ENZYME-ACTIVITY AND THE AFFINITY OF THE PROTEIN FOR PHOSPHATIDYLCHOLINES WITH DIFFERENT ACYL CHAIN CHARACTERISTICS [J].
CAFFREY, M ;
FEIGENSON, GW .
BIOCHEMISTRY, 1981, 20 (07) :1949-1961
[8]   Design of membrane-inserting peptides: Spectroscopic characterization with and without lipid bilayers [J].
Chung, LA ;
Thompson, TE .
BIOCHEMISTRY, 1996, 35 (35) :11343-11354
[9]   FLUORESCENCE STUDIES OF THE SECONDARY STRUCTURE AND ORIENTATION OF A MODEL ION CHANNEL PEPTIDE IN PHOSPHOLIPID-VESICLES [J].
CHUNG, LA ;
LEAR, JD ;
DEGRADO, WF .
BIOCHEMISTRY, 1992, 31 (28) :6608-6616
[10]  
CHUNG LL, 1988, THESIS STATE U NEW Y