PERMEABILITY OF MEMBRANES TO AMINO-ACIDS AND MODIFIED AMINO-ACIDS - MECHANISMS INVOLVED IN TRANSLOCATION

被引:55
|
作者
CHAKRABARTI, AC
机构
[1] Section of Molecular and Cellular Biology, Storer Hall, University of California, Davis, 95616, California
关键词
AMINO ACID; MODIFIED AMINO ACID; PERMEABILITY; LIPOSOME; MEMBRANE;
D O I
10.1007/BF00813743
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 amino acid permeability of membranes is of interest because they are one of the key solutes involved in cell function. Membrane permeability coefficients (P) for amino acid classes, including neutral, polar, hydrophobic, and charged species, have been measured and compared using a variety of techniques. Decreasing lipid chain length increased permeability slightly (5-fold), while variations in pH had only minor effects on the permeability coefficients of the amino acids tested in liposomes. Increasing the membrane surface charge increased the permeability of amino acids of the opposite charge, while increasing the cholesterol content decreased membrane permeability. The permeability coefficients for most amino acids tested were surprisingly similar to those previously measured for monovalent cations such as sodium and potassium (approximately 10(-12)-10(-13) cm.s(-1)). This observation suggests that the permeation rates for the neutral, polar and charged amino acids are controlled by bilayer fluctuations and transient defects, rather than partition coefficients and Born energy barriers. Hydrophobic amino acids were 10(2) more permeable than the hydrophilic forms, reflecting their increased partition coefficient values. External pH had dramatic effects on the permeation rates for the modified amino acid lysine methyl ester in response to transmembrane pH gradients. It was established that lysine methyl ester and other modified short peptides permeate rapidly(P = 10(-2) cm.s(-1))as neutral (deprotonated) molecules. It was also shown that charge distributions dramatically alter permeation rates for modified di-peptides. These results may relate to the movement of peptides through membranes during protein translocation and to the origin of cellular membrane transport on the early Earth.
引用
收藏
页码:213 / 229
页数:17
相关论文
共 50 条
  • [31] DIGESTIBILITY OF CRYSTALLINE AMINO-ACIDS AND THE AMINO-ACIDS IN CORN AND POULTRY BLEND
    NELSON, TS
    KIRBY, LK
    HALLEY, JT
    NUTRITION REPORTS INTERNATIONAL, 1986, 34 (05): : 903 - 906
  • [32] SYNTHESIS OF AMINO-ACIDS WITH MODIFIED PRINCIPAL PROPERTIES .3. SULFUR-CONTAINING AMINO-ACIDS
    LARSSON, U
    CARLSON, R
    ACTA CHEMICA SCANDINAVICA, 1994, 48 (06): : 517 - 525
  • [33] CRYOPROTECTION OF PHOSPHOLIPID-MEMBRANES BY AMINO-ACIDS
    ANCHORDOGUY, T
    LOOMIS, SH
    CARPENTER, JF
    CROWE, JH
    BIOPHYSICAL JOURNAL, 1988, 53 (02) : A128 - A128
  • [34] RECEPTORS FOR AMINO-ACIDS
    PECK, EJ
    ANNUAL REVIEW OF PHYSIOLOGY, 1980, 42 : 615 - 627
  • [35] ELECTROCHEMISTRY OF AMINO-ACIDS
    VODRAZKA, I
    STIBOR, I
    JANDA, M
    CHEMICKE LISTY, 1984, 78 (08): : 803 - 833
  • [36] AMINO-ACIDS ON HANDS
    HAMILTON, PB
    NATURE, 1965, 205 (4968) : 284 - &
  • [37] AMINO-ACIDS AND INSULIN
    JACKSON, WPU
    TRANSACTIONS OF THE ROYAL SOCIETY OF SOUTH AFRICA, 1972, 40 : 93 - &
  • [38] AMINO-ACIDS AND RESPIRATION
    WEISSMAN, C
    ASKANAZI, J
    ROSENBAUM, S
    HYMAN, AI
    MILICEMILI, J
    KINNEY, JM
    ANNALS OF INTERNAL MEDICINE, 1983, 98 (01) : 41 - 44
  • [39] AMINO-ACIDS AND KWASHIORKOR
    HANSEN, JDL
    HOWE, EE
    BROCK, JF
    LANCET, 1956, 271 (NOV3): : 911 - 913
  • [40] PRODUCTION OF AMINO-ACIDS
    NAKAYAMA, K
    PROCESS BIOCHEMISTRY, 1976, 12 (02) : 4 - 9