Membrane permeation of arginine-rich cell-penetrating peptides independent of transmembrane potential as a function of lipid composition and membrane fluidity

被引:59
作者
Wallbrecher, Rike [1 ]
Ackels, Tobias [2 ,6 ]
Olea, R. Alis [1 ]
Klein, Marco J. [3 ]
Caillon, Lucie [3 ]
Schiller, Juergen [4 ]
Bovee-Geurts, Petra H. [1 ]
van Kuppevelt, Toin H. [1 ]
Ulrich, Anne S. [3 ,5 ]
Spehr, Marc [2 ]
Adjobo-Hermans, Merel J. W. [1 ]
Brock, Roland [1 ]
机构
[1] Radboud Univ Nijmegen, Radboud Inst Mol Life Sci, Dept Biochem, Med Ctr, Geert Grootepl 28, NL-6525 GA Nijmegen, Netherlands
[2] Rhein Westfal TH Aachen, Inst Biol 2, Dept Chemosensat, D-52074 Aachen, Germany
[3] KIT, Inst Biol Interfaces IBG 2, POB 3640, D-76021 Karlsruhe, Germany
[4] Univ Leipzig, Med Dept, Inst Med Phys & Biophys, Hartelstr 16-18, D-04107 Leipzig, Germany
[5] KIT, Inst Organ Chem, Fritz Haber Weg 6, D-76131 Karlsruhe, Germany
[6] Francis Crick Inst, Neurophysiol Behav Lab, London, England
关键词
Cell-penetrating peptides; Membrane potential; Lipid composition; Drug delivery; Ceramide; Sphingomyelin; PLASMA-MEMBRANE; ACID SPHINGOMYELINASE; PROTEOGLYCANS; DELIVERY; TRANSLOCATION; CONSEQUENCES; ENDOCYTOSIS; PROTEINS; HYPERPOLARIZATION; INTERNALIZATION;
D O I
10.1016/j.jconrel.2017.04.013
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Cell-penetrating peptides (CPPs) are prominent delivery vehicles to confer cellular entry of (bio-) macromolecules. Internalization efficiency and uptake mechanism depend, next to the type of CPP and cargo, also on cell type. Direct penetration of the plasma membrane is the preferred route of entry as this circumvents endolysosomal sequestration. However, the molecular parameters underlying this import mechanism are still poorly defined. Here, we make use of the frequently used HeLa and HEK cell lines to address the role of lipid composition and membrane potential. In HeLa cells, at low concentrations, the CPP nona-arginine (R9) enters cells by endocytosis. Direct membrane penetration occurs only at high peptide concentrations through a mechanism involving activation of sphingomyelinase which converts sphingomyelin into ceramide. In HEK cells, by comparison, R9 enters the cytoplasm through direct membrane permeation already at low concentrations. This direct permeation is strongly reduced at room temperature and upon cholesterol depletion, indicating a complex dependence on membrane fluidity and microdomain organisation. Lipidomic analyses show that in comparison to HeLa cells HEK cells have an endogenously low sphingomyelin content. Interestingly, direct permeation in HEK cells and also in HeLa cells treated with exogenous sphingomyelinase is independent of membrane potential. Membrane potential is only required for induction of sphingomyelinase-dependent uptake which is then associated with a strong hyperpolarization of membrane potential as shown by whole-cell patch clamp recordings. Next to providing new insights into the interplay of membrane composition and direct permeation, these results also refute the long-standing paradigm that transmembrane potential is a driving force for CPP uptake.
引用
收藏
页码:68 / 78
页数:11
相关论文
共 45 条
  • [1] Cell surface binding and uptake of arginine- and lysine-rich penetratin peptides in absence and presence of proteoglycans
    Amand, Helene L.
    Rydberg, Hanna A.
    Fornander, Louise H.
    Lincoln, Per
    Norden, Bengt
    Esbjorner, Elin K.
    [J]. BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES, 2012, 1818 (11): : 2669 - 2678
  • [2] Massive glycosaminoglycan-dependent entry of Trp-containing cell-penetrating peptides induced by exogenous sphingomyelinase or cholesterol depletion
    Bechara, Cherine
    Pallerla, Manjula
    Burlina, Fabienne
    Illien, Francoise
    Cribier, Sophie
    Sagan, Sandrine
    [J]. CELLULAR AND MOLECULAR LIFE SCIENCES, 2015, 72 (04) : 809 - 820
  • [3] The Uptake of Arginine-Rich Cell-Penetrating Peptides: Putting the Puzzle Together
    Brock, Roland
    [J]. BIOCONJUGATE CHEMISTRY, 2014, 25 (05) : 863 - 868
  • [4] Heparan sulfate proteoglycan as a cell-surface endocytosis receptor
    Christianson, Helena C.
    Belting, Mattias
    [J]. MATRIX BIOLOGY, 2014, 35 : 51 - 55
  • [5] Formation of transmembrane ionic channels of primary amphipathic cell-penetrating peptides.: Consequences on the mechanism of cell penetration
    Deshayes, Sebastien
    Plenat, Thomas
    Charner, Pierre
    Divita, Gilles
    Molle, Gerard
    Heitz, Frederic
    [J]. BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES, 2006, 1758 (11): : 1846 - 1851
  • [6] Functional consequences of sphingomyelinase-induced changes in erythrocyte membrane structure
    Dinkla, S.
    Wessels, K.
    Verdurmen, W. P. R.
    Tomelleri, C.
    Cluitmans, J. C. A.
    Fransen, J.
    Fuchs, B.
    Schiller, J.
    Joosten, I.
    Brock, R.
    Bosman, G. J. C. G. M.
    [J]. CELL DEATH & DISEASE, 2012, 3 : e410 - e410
  • [7] DIVIRGILIO F, 1987, J BIOL CHEM, V262, P4574
  • [8] A comprehensive model for the cellular uptake of cationic cell-penetrating peptides
    Duchardt, Falk
    Fotin-Mleczek, Mariola
    Schwarz, Heinz
    Fischer, Rainer
    Brock, Roland
    [J]. TRAFFIC, 2007, 8 (07) : 848 - 866
  • [9] A Cell-penetrating Peptide Derived from Human Lactoferrin with Conformation-dependent Uptake Efficiency
    Duchardt, Falk
    Ruttekolk, Ivo R.
    Verdurmen, Wouter P. R.
    Lortat-Jacob, Hugues
    Buerck, Jochen
    Hufnagel, Hansjoerg
    Fischer, Rainer
    van den Heuvel, Maaike
    Loewik, Dennis W. P. M.
    Vuister, Geerten W.
    Ulrich, Anne
    de Waard, Michel
    Brock, Roland
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2009, 284 (52) : 36099 - 36108
  • [10] Identification of a signal peptide for unconventional secretion
    Dupont, Edmond
    Prochiantz, Alain
    Joliot, Alain
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2007, 282 (12) : 8994 - 9000