Position and ionization state of Asp in the core of membrane-inserted α helices control both the equilibrium between transmembrane and nontransmembrane helix topography and transmembrane helix positioning

被引:55
作者
Caputo, GA
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/bi049696p
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
The behavior of model-membrane-inserted polyLeu-rich peptides containing Asp residues located at various positions in their hydrophobic core was investigated. The topography of the bilayer-inserted a helices formed by these peptides was evaluated by measuring the emission lambda(max) and quenching the fluorescence of a Trp at the center of the peptide sequence. When Asp residues were protonated (at low pH), peptides that were incorporated into vesicles composed of dioleoylphosphatidylcholine (DOPC) adopted a topography in which the polyLeu sequence predominantly formed a normal transmembrane (TM) helix. When Asp residues were ionized (at neutral or high pH), topography was altered in a manner that would allow the charged Asp residues to reside near the bilayer surface. In DOPC vesicles, most peptides repositioned so that the longest segment of consecutive hydrophobic residues (12 residue minimum) formed a truncated/shifted TM structure. However, peptides with one or two charged Asp residues close to the center of the hydrophobic sequence and thus lacking even a 12-residue continuous hydrophobic segment, formed a helical non-TM state locating near the bilayer surface. At low pH, incorporation of the peptides into thicker bilayers composed of dierucoylphosphatidylcholine (DEuPC) resulted in the formation of a mixture of the normal TM state and the non-TM helical state located near the bilayer surface. In DEuPC vesicles at high pH, the non-TM state tended to predominate. How Asp-ionization-dependent shifts in helix topography may regulate the function of membrane proteins exposed to environments with differing pH in vivo (e.g., endosomes) is discussed.
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页码:8794 / 8806
页数:13
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共 48 条
[1]   Determination of the border between the transmembrane and cytoplasmic domains of human integrin subunits [J].
Armulik, A ;
Nilsson, I ;
von Heijne, G ;
Johansson, S .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (52) :37030-37034
[2]   Site-directed spin labeling of a bacterial chemoreceptor reveals a dynamic, loosely packed transmembrane domain [J].
Barnakov, A ;
Altenbach, C ;
Barnakova, L ;
Hubbell, WL ;
Hazelbauer, GL .
PROTEIN SCIENCE, 2002, 11 (06) :1472-1481
[3]   Mutational analysis of a transmembrane segment in a bacterial chemoreceptor [J].
Baumgartner, JW ;
Hazelbauer, GL .
JOURNAL OF BACTERIOLOGY, 1996, 178 (15) :4651-4660
[4]   Signalling substitutions in the periplasmic domain of chemoreceptor Trg induce or reduce helical sliding in the transmembrane domain [J].
Beel, BD ;
Hazelbauer, GL .
MOLECULAR MICROBIOLOGY, 2001, 40 (04) :824-834
[5]   Using a novel dual fluorescence quenching assay for measurement of tryptophan depth within lipid Bilayers to determine hydrophobic α-helix locations within membranes [J].
Caputo, GA ;
London, E .
BIOCHEMISTRY, 2003, 42 (11) :3265-3274
[6]   Cumulative effects of amino acid substitutions and hydrophobic mismatch upon the transmembrane stability and conformation of hydrophobic α-helices [J].
Caputo, GA ;
London, E .
BIOCHEMISTRY, 2003, 42 (11) :3275-3285
[7]   LOCK ON OFF DISULFIDES IDENTIFY THE TRANSMEMBRANE SIGNALING HELIX OF THE ASPARTATE RECEPTOR [J].
CHERVITZ, SA ;
FALKE, JJ .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1995, 270 (41) :24043-24053
[8]   TRANSMEMBRANE SIGNALING BY THE ASPARTATE RECEPTOR - ENGINEERED DISULFIDES REVEAL STATIC REGIONS OF THE SUBUNIT INTERFACE [J].
CHERVITZ, SA ;
LIN, CM ;
FALKE, JJ .
BIOCHEMISTRY, 1995, 34 (30) :9722-9733
[9]   Charge pair interactions in a model transmembrane helix in the ER membrane [J].
Chin, CN ;
von Heijne, G .
JOURNAL OF MOLECULAR BIOLOGY, 2000, 303 (01) :1-5
[10]   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