• Title/Summary/Keyword: Lipid membrane

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Growth Temperature-Dependent Conversion of De novo-Synthesized Unsaturated Fatty Acids into Polyhydroxyalkanoic Acid and Membrane Cyclopropane Fatty Acids in the Psychrotrophic Bacterium Pseudomonas fluorescens BM07

  • LEE , HO-JOO;RHO, JONG-KOOK;YOON, SUNG-CHUL
    • Journal of Microbiology and Biotechnology
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    • v.14 no.6
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    • pp.1217-1226
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    • 2004
  • A psychrotrophic bacterial strain, Pseudomonas fluorescens BM07, synthesized unsaturated fatty acids (UFA) from fructose in response to lowering of growth temperature, and incorporated them into both polyhydroxyalkanoic acid (PHA) and membrane lipid. The blocking of PHA synthesis by adding 5 mM 2-bromooctanoic acid to the growth medium, containing 70 mM fructose, was found to be a useful means to profile the composition of membrane lipid by gas chromatography. As the growth temperature changed from 35 to $50^{\circ}C$, the total content of two UFA, 3-hydroxy-cis-5­dodecenoic acid ($C_{12:1}$) and 3-hydroxy-cis-7-tetradecenoic acid ($C_{14:1}$), in PHA increased from 31 to 44 $mol\%$. The growth at lower temperatures also led to an increase in the level of two major UFA, palmitoleic acid (C16:1 cis9) and cis-vaccenic acid (C18:1 cis11), in membrane lipid. A fraction of these membrane-lipid UFA was converted to their corresponding cyclopropane fatty acids (CFA). The CFA conversion was a function of culture time, exhibiting biphasic increase before and after entering the stationary phase. However, pH changes in growth media had no effect on the CFA conversion, which is contrary to the case of E. coli reported. The cells grown at $30^{\circ}C$ responded to a cold shock (lowering the medium temperature down to $10^{\circ}C$) by increasing the level of C16:1 cis9 and C 18: I cis II up to that of $10^{\circ}C$-grown control cells and concomitantly decreasing the relative level of cis-9,10­methylenehexadecanoic acid (the CFA converted from C16:1 cis9) from 14 to 8 $mol\%$, whereas the 10-grown cells exhibited little change in the lipid composition when exposed to a warmer environment of $30^{\circ}C$ for 12 h. Based on this one- way response, we suggest that this psychrotrophic strain responds more efficiently and sensitively to a cold shock than to a hot shock. It is also suggested that BM07 strain is a good producer of two unsaturated 3-hydroxyacids, $C_{12:1}\;and\;C_{141:1}$.

Lipid Peroxidation Product-Mediated DNA Damage and Mutagenicity

  • Koh, Young-Ho;Yoon, Seon-Joo;Park, Jeen-Woo
    • BMB Reports
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    • v.30 no.3
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    • pp.188-193
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    • 1997
  • Membrane lipid peroxidation processes yield products that may react with DNA to cause mutations. Lipid hydroperoxides from linoleic acid in the presence of transition metal ions caused strand breaks in plasmid DNA. DNA damage induced by reactive aldehydes known to be produced by decomposition of lipid hydroperoxides, such as 4-hydroxynonenal or rnalondialdehyde, was repaired by endonucleases and exonuclease III which resulted in the increase of single strand breaks in DNA. Lipid hydroperoxides as well as malondialdehyde and 4-hydroxynonenal also caused mutations in the pUC18 lacZ' gene when measured as a loss of ${\alpha}-cornplementation$. In conclusion. the lipid peroxidation could be an important intermediary event in DNA damage and mutation by oxidative stress.

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The role of lipid binding for the targeting of synaptic proteins into synaptic vesicles

  • Jang, Deok-Jin;Park, Soo-Won;Kaang, Bong-Kiun
    • BMB Reports
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    • v.42 no.1
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    • pp.1-5
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    • 2009
  • Synaptic vesicles (SVs) are key structures for synaptic transmission in neurons. Numerous membrane-associated proteins are sorted from the Golgi complex to the axon and the presynaptic terminal. Protein-protein and protein-lipid interactions are involved with SV targeting in neurons. Interestingly, many SV proteins have lipid binding capability, primarily with either cholesterol or phosphoinositides (PIs). As examples, the major SV protein synaptophysin can bind to cholesterol, a major lipid component in SVs, while several other SV proteins, including synaptotagmin, can bind to PIs. Thus, lipid-protein binding plays a key role for the SV targeting of synaptic proteins. In addition, numerous SV proteins can be palmitoylated. Palmitoylation is thought to be another synaptic targeting signal. Here, we briefly describe the relationship between lipid binding and SV targeting.

Age Related Changes of Microsomal Fatty Acid Composition and Lipid Peroxidation in 2-acetylaminofluorene Treated rats. (2-Acetylaminofluorene의 투여와 나이에 따른 쥐의 세포막 지방산 조성 및 지질과산화물 생성의 변화)

  • 윤은영;최혜미;김현아;김숙희
    • Environmental Mutagens and Carcinogens
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    • v.15 no.2
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    • pp.140-147
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    • 1995
  • For studying the effect of different dietary fats on carcinogenesis, fatty acid composition of membrane and lipid peroxidation were measured. Male Sprague-Dawley rats were fed on diet containing 15%(w/w) beef tallow or soybean oil. A single dose of 50 mg 2-AAF/kg B.W. was injected i.p. in each diet group 10 times. Rats were sacrifled after 1, 5, 10, and 15 weeks from the first injection. By 2-AAF injection, !ipid peroxidation increased slightly compared to control group. The rats fed on different fats had similar MDA production and those fed on soybean oil had slightly higher free radical concentration measured by ESR. In young rats, iipid peroxidation level was high and hydroxy radical production was higher in soybean oil group than in beef tallow group. With age, the lipid peroxidation values were decreased initially then increased. The fatty acid composition in microsomal membrane was reflected by dietary fatty acid composition. In soybean oil group, monoenoic acid was lower and polyunsaturated fatty acid was higher than beef tallow group. Linoleic acid contents showed the most discrepancy among groups. By 2-AAF treatment, iinoleic acid content and unsaturation index increased in soybean oil group. But in beef tallow group, there was no difference in fatty acid contents.

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Effects of glycyrrhizinic acid, menthol and GA: Mt (2: 1), GA: Mt (4: 1) and GA: Mt (9: 1) supramolecular compounds on mitochondrial functional activity IN VITRO experiments.

  • L. A., Еttibaeva;U. K., Abdurahmonova;A.D., Matchanov;S., Karshiboev
    • Journal of Integrative Natural Science
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    • v.15 no.4
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    • pp.137-144
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    • 2022
  • This paper presents the effect of the supramolecular complex of GA (Glycyrrhizic acid) and Mt(menthol) and GA: Mt (4: 1) obtained on their basis can restore functional dysfunction of the liver mitochondria in alloxan diabetes, ie, inhibit lipid peroxidation. The hypoglycemic activity and mitochondrial membrane stabilizing properties of the supramolecular compound GA: Mt (4: 1) in alloxan diabetes were more pronounced than those of menthol, GA and its GK: Mt (2: 1) and GA: Mt (9: 1) compounds. According to the results obtained, the concentration of GA did not affect the peroxidation of lipid membranes of the liver mitochondria. However, a concentration of 15 μM of GA was found to reduce LPO (lipid peroxidation) formed by the effect of Fe2+ / ascorbate on the mitochondrial membrane by 58.0 ± 5.0% relative to control. The inhibitory effect of GA and its supramolecular compounds in different proportions with menthol on the peroxidation of lipids in rat heart and brain tissue has been studied

Distribution of Lipid and Lipase in Lipid-and Starch-Rich Seeds (지질 및 전분성 종자에서 지질 및 지질가수분해효소의 분포)

  • 김우갑
    • Journal of Plant Biology
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    • v.35 no.3
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    • pp.219-227
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    • 1992
  • Formation, cellular distribution and structural changes of storage lipid, and active site and cellular localization of lipase in endosperms and cotyledons of lipid-rich seeds such as Helianthus annuus, Ricinus communis and Pinus koraiensis, and in those of starch-rich seeds such as Pisum sativum and Zea mays were investigated in relation to the seed development by cytochemical methods. In endosperms and storage cotyledons of lipid- and starch-rich seeds after seed-gathering, there were widely distributed storage material which was composed of spherical protein bodies, spherosomes, and starch granules. But cellular organelles were hardly observed in the cytoplasm. Staining pattern of vesicles released from SER, and of low electron dense membraneous granules, which were perhaps at an early stage of spherosomes, were the same as in the spherosome. Electrondense granules released from RER were observed in the vicinity of plasma membrane. As a result of lipid staining, the spherosomes were more electron dense and were uniform as compared with the protein matrix within the protein body and cytoplasmic proteinaceous granules. The major component of the spherosome was determinated to be lipid. Spherosomes and vesicles containing SER-released materials showed the same as in the electron density. Lipase activity was especially strong in the inner region and on the surface of decomposed spherosomes and near the plasma membrane.mbrane.

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A Study on Change of Excess Volume in Membrane of Holobacterium Holobium (Halobacterium Halobium의 Membrane에서 잉여부피 변화에 관한 연구)

  • Kim, Ki-Jun;Lee, Joo-Youb
    • Journal of the Korean Applied Science and Technology
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    • v.28 no.2
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    • pp.247-250
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    • 2011
  • The excess volumes of mixing of benzyl alcohol and halothane in vesicle and in suspensions of several lipids have been determined at $25^{\circ}C$ it using a excess volume dilatometer. The potency of general anesthetics has long been known to correlate with lipid solubility. Denaturations of the vesicle, which is a sole membrane protein in the purple membrane of Halobacteriun Halobium, were studied by absorption changes at 280 nm and fluorescence changes at 330 nm and excess volume dilatometer. The particle size analysis of viscous polymer solutions by diffusional interchange is the key step by measurement. The excess volume of mixing in chitosan was found to be negative, whereas them of purple membrane, Halobacteriun Halobium and red membrane were positive in benzyl alcohol and halothane. This result was confirmed as Miller's supposition.

Mechanisms of Selective Antimicrobial Activity of Gaegurin 4

  • Kim, Hee-Jeong;Lee, Byeong-Jae;Lee, Mun-Han;Hong, Seong-Geun;Ryu, Pan-Dong
    • The Korean Journal of Physiology and Pharmacology
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    • v.13 no.1
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    • pp.39-47
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    • 2009
  • Gaegurin 4(GGN 4), an antimicrobial peptide isolated from a Korean frog, is five times more potent against Gram-positive than Gram-negative bacteria, but has little hemolytic activity. To understand the mechanism of such cell selectivity, we examined GGN4-induced $K^+$ efflux from target cells, and membrane conductances in planar lipid bilayers. The $K^+$ efflux from Gram-positive M. luteus(2.5 ${\mu}g/ml$) was faster and larger than that from Gram-negative E. coli(75 ${\mu}g/ml$), while that from RBC was negligible even at higher concentration(100 ${\mu}g/ml$). GGN4 induced larger conductances in the planar bilayers which were formed with lipids extracted from Gram-positive B. subtilis than in those from E. coli(p<0.01), however, the effects of GGN4 were not selective in the bilayers formed with lipids from E. coli and red blood cells. Addition of an acidic phospholipid, phosphatidylserine to planar bilayers increased the GGN4-induced membrane conductance(p<0.05), but addition of phosphatidylcholine or cholesterol reduced it(p<0.05). Transmission electron microscopy revealed that GGN4 induced pore-like damages in M. luteus and dis-layering damages on the outer wall of E. coli. Taken together, the present results indicate that the selectivity of GGN4 toward Gram-positive over Gram-negative bacteria is due to negative surface charges, and interaction of GGN4 with outer walls. The selectivity toward bacteria over RBC is due to the presence of phosphatidylcholine and cholesterol, and the trans-bilayer lipid asymmetry in RBC. The results suggest that design of selective antimicrobial peptides should be based on the composition and topology of membrane lipids in the target cells.