Structural Change in Dimyristoyl Phosphatidyl Choline (DMPC) Molecule Alkyl Chains on the Addition of Cholesterol to DMPC Monolayer: Specific Addition Effect of Cholesterol
We have investigated the morphology of dimyristoyl phosphatidyl choline
(DMPC)—cholesterol mixed monolayer formed on
the water surface by dropping method using surface tension measurement
(STm), Brewster angle microscopy (BAM), and infrared external reflection
spectroscopy (IERS). STm results showed negative deviation of the limiting
molecular area (A0) of cholesterol
occurred when cholesterol was added to the DMPC monolayer. BAM images showed
the expandable DMPC monolayer changed to the condensed rigid monolayer at more
than cholesterol mole fraction (xChol)
0.4. IERS recordings showed that the addition of cholesterol at xChol = 0.4 occurred structural
change from gauche- to trans-conformation
of two DMPC molecule alkyl chains. From these
results, it is found that cholesterol molecule has specific properties
that cause structural transition of DMPC molecule alkyl chains.
References
[1]
Shimabayashi, S., Terada, H. and Okabayashi, H. (1990) Biocolloid 1 & 2. Hirokawa Publishing, Tokyo.
[2]
Gennis, R.G. (1990) Biomembrane, Molecular Structure and Function. Springer, New York.
[3]
Kawai, T. (2005) Interfaces and Surfactants—Fundamentals and Applications. Japan Oil Chemists’ Society, Tokyo.
[4]
Suezaki, Y. (2007) Physics of lipid membrane. Kyushu University Press, Fukuoka.
[5]
Mabrey, S., Mateo, P.L. and Sturtevant, J.M. (1978) High-Sensitivity Scanning Calorimetric Study of Mixtures of Cholesterol with Dimyristoyl- and Dipalmitoyl-Phosphatidylcholine. Biochemistry, 17, 2464-2468.
https://doi.org/10.1021/bi00605a034
[6]
Finegold, L. (1993) Cholesterol and Membrane Models. CRC Press, Inc., Boca Raton, FL.
[7]
Takahashi, H., Yasue, T., Ohki, K. and Hatta, I. (1996) Structure and Phase Behaviour of Dimyristoylphosphatidic Acid/Poly(L-Lysine) Systems. Molecular Membrane Biology, 13, 233-240. https://doi.org/10.3109/09687689609160601
[8]
McMullen, T.P.W. and McElhaney, R.N. (1996) Physical Studies of Cholesterol-Phospholipid Interactions. Current Opinion in Colloid Interface Science, 1, 83-90.
https://doi.org/10.1016/S1359-0294(96)80048-3
[9]
Hatta, I. and Murata, M. (2000) Dynamics of Biomembrane. Kyoritsu Shuppan Co., Tokyo.
[10]
Quinn, P.J. and Wolf, C. (2009) The Liquid-Ordered Phase in Membranes. Biochimica Biophysica Acta, 1788, 33-46. https://doi.org/10.1016/j.bbamem.2008.08.005
[11]
Yokoyama, T., Yoshida, D., Mori, H., Okabe, M., Shervani, Z., Taga, K., Yamamoto, Y., Sumino, A., Dewa, T., Nango, M. and Yamamoto, M. (2016) Morphological Observation of Specific Condensation Effect of Cholesterol on Dipalmitoyl Phosphatidyl Choline (DPPC) Monolayer by Dropping Method. Journal of Biophysical Chemistry, 7, 98-109. https://doi.org/10.4236/jbpc.2016.74009
[12]
Almeida, P.F.F., Vaz, W.L.C. and Thompson, T.E. (1992) Lateral Diffusion in the Liquid Phases of Dimyristoylphosphatidylcholine/Cholesterol Lipid Bilayers: A Free Volume Analysis. Biochemistry, 31, 6739-6747.
https://doi.org/10.1021/bi00144a013
[13]
Trandum, C., Westh, P., Jorgensen, K. and Mouritsen, O.G. (2000) A Thermodynamic Study of the Effects of Cholesterol on the Interaction between Liposomes and Ethanol. Biophysical Journal, 78, 2486-2492.
https://doi.org/10.1016/S0006-3495(00)76793-2
[14]
Arsov, Z. and Quaroni, L. (2007) Direct Interaction between Cholesterol and Phosphatidylcholines in Hydrated Membranes Revealed by ATR-FTIR Spectroscopy. Chemistry and Physics of Lipids, 150, 35-48.
https://doi.org/10.1016/j.chemphyslip.2007.06.215
[15]
Urbina, J.A., Pekerar, S., Le, H., Patterson, J., Montez, B. and Oldfield, E. (1995) Molecular Order and Dynamics of Phosphatidylcholine Bilayers Membranes in the Presence of Cholesterol, Ergosterol and Lanosterol: A Comparative Study Using 2H-, 13C- and 31P-NMR Spectroscopy. Biochimica et Biophysica Acta, 1238, 163-176.
https://doi.org/10.1016/0005-2736(95)00117-L
[16]
Meyer, F.J.M., Benjamini, A., Rodgers, J.M., Misteli, Y. and Smit, B. (2010) Molecular Simulation of the DMPC-Cholesterol Phase Diagram. Journal of Physical Chemistry B, 114, 10451-10461. https://doi.org/10.1021/jp103903s
[17]
Yoshida, D., Yokoyama, T., Shimoaki, T., Tomita, T., Yoshida, T., Yamamoto, Y., Taga, K., Sumino, A., Dewa, T., Nango, M., Yamamoto, M. and Sheravani, Z. (2013) Morphology Observation of Dipalmitoyl Phosphatidyl Choline (DPPC) Monolayer on Water Surface by Dropping Method. Journal of Biophysical Chemistry, 4, 115-121.
https://doi.org/10.4236/jbpc.2013.44016
[18]
Yamamoto, M., Suzuki, M., Kimura, T. and Itoh, K. (2008) Molecular Structures at Free Surfaces of Liquid n-Heptadecane Investigated by Infrared External Reflection Spectroscopy. The Journal of Physical Chemistry C, 112, 13232-13239.
https://doi.org/10.1021/jp801414t
[19]
Yamamoto, Y., Yokoyama, T., Yoshida, D., Mori, H., Sekiguchi, K., Shimoaki, T., Yoshio, A., Taga, K., Shervani, Z. and Yamamoto, M. (2015) Interactions between Phospholipid Monolayers (DPPC and DMPC) and Anesthetic Isoflurane Observed by Quartz Crystal Oscillator. Journal of Biophysical Chemistry, 6, 42-53.
https://doi.org/10.4236/jbpc.2015.62005
[20]
Yamamoto, Y. and Taga, K. (2016) Lipid Monolayer and Interaction with Anesthetics. Encyclopedia of Biocolloid and Biointerface Science, 1, 36-58.
https://doi.org/10.1002/9781119075691.ch3
[21]
Nakagaki, M., Tomita, K. and Handa, T. (1985) Interaction of Differently Oriented Lipids in Monolayer: Mixed Monolayers of 16-(9-Anthroyloxy)Palmitic Acid with Phosphatidylcholine and Cholesterol. Biochemistry, 24, 4619-4624.
https://doi.org/10.1021/bi00338a021
[22]
Mingotaud, A.F., Mingotaud, C. and Patterson, L.K. (1993) Handbook of Monolayers, Volumes 1 and 2. Academic Press, San Diego, CA.
[23]
Janout, V., Turkyilmaz, S., Wang, M., Wang, Y., Manaka, Y. and Regen, S.L. (2010) An Upside down View of Cholesterol’s Condensing Effect: Does Surface Occupancy Play a Role? Langmuir, 26, 5316-5318. https://doi.org/10.1021/la100878s
[24]
Kim, K., Kim, C. and Byun, Y. (2001) Preparation of a Dipalmitoyl Phosphatidyl choline/Cholesterol Langmuir-Blodgett Monolayer That Suppresses Protein Adsorption. Langmuir, 17, 5066-5070. https://doi.org/10.1021/la0102096
[25]
Ohe, C., Sasaki, T., Noi, M., Goto, Y. and Itoh, K. (2007) Sum Frequency Generation Spectroscopic Study of the Condensation Effect of Cholesterol on a Lipid Monolayer. Analytical and Bioanalytical Chemistry, 308, 73-39.
https://doi.org/10.1007/s00216-006-1030-0
[26]
Chapman, D., Owens, N.F., Phillip, M.C. and Walker, D.A. (1969) Mixed Monolayers of Phospholipids and Cholesterol. Biochimica et Biophysica Acta, 183, 458-465.
https://doi.org/10.1016/0005-2736(69)90160-6
[27]
Worthman, L.A.D., Nag, K., Davis, P.J. and Keough, K.M. (1997) Cholesterol in Condensed and Fluid Phosphatidylcholine Monolayers Studied by Epifluorescence Microscopy. Biophysical Journal, 72, 2569-2580.
https://doi.org/10.1016/S0006-3495(97)78900-8
[28]
Yassine, W., Milochau, A., Buchoux, S., Lang, J., Desbat, B. and Oda, R. (2010) Effect of Monolayer Lipid Charges on the Structure and Orientation of Protein VAMP1 at the Air-Water Interface. Biochimica et Biophysica Acta, 1798, 928-937.
https://doi.org/10.1016/j.bbamem.2010.01.009
[29]
Flach, C.R., Mendelsohn, R., Rerek, M.E. and Moore, D.J. (2000) Biophysical Studies of Model Stratum Corneum Lipid Monolayers by Infrared Reflection-Absorption Spectroscopy and Brewster Angle Microscopy. The Journal of Physical Chemistry B, 104, 2159-2165. https://doi.org/10.1021/jp9936805
[30]
Seoane, R., Mi.ones, J., Conde, O., Mi.ones Jr., J., Casas, M. and Iribarnegaray, E. (2000) Thermodynamic and Brewster Angle Microscopy Studies of Fatty Acid/Cholesterol Mixtures at the Air/Water Interface. The Journal of Physical Chemistry B, 104, 7735-7744. https://doi.org/10.1021/jp001133+
[31]
Mascetti, J., Castano, S., Cavagnat, D. and Desbat, B. (2008) Organization of β-Cyclodextrin under Pure Cholesterol, DMPC, or DMPG and Mixed Cholesterol/Phospholipid Monolayers. Langmuir, 24, 9616-9622.
https://doi.org/10.1021/la8004294
[32]
Snyder, R.G. and Strauss, H.L. (1982) C-H Stretching Modes and the Structure of n-Alkyl Chains. 1. Long, Disordered Chains. Journal of Physical Chemistry, 86, 5145-5150. https://doi.org/10.1021/j100223a018
[33]
Maroncelli, M., Strauss, H.L. and Snyder, R.G. (1984) The Distribution of Conformational Disorder in the High-Temperature Phases of the Crystalline n-Alkanes. Journal of Chemical Physics, 82, 2811-2824. https://doi.org/10.1063/1.448280