Results for 'bilayer'

36 found
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  1. Heads and Tails: Molecular Imagination and the Lipid Bilayer, 1917–1941.Daniel Liu - 2018 - In Karl Matlin, Jane Maienschein & Manfred Laubichler, Visions of Cell Biology: Reflections Inspired by Cowdry's General Cytology. University of Chicago Press. pp. 209-245.
    Today, the lipid bilayer structure is nearly ubiquitous, taken for granted in even the most rudimentary introductions to cell biology. Yet the image of the lipid bilayer, built out of lipids with heads and tails, went from having obscure origins deep in colloid chemical theory in 1924 to being “obvious to any competent physical chemist” by 1935. This chapter examines how this schematic, strictly heuristic explanation of the idea of molecular orientation was developed within colloid physical chemistry, and (...)
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  2.  18
    The fine‐tuning of cell membrane lipid bilayers accentuates their compositional complexity.Tamir Dingjan & Anthony H. Futerman - 2021 - Bioessays 43 (5):2100021.
    Cell membranes are now emerging as finely tuned molecular systems, signifying that re‐evaluation of our understanding of their structure is essential. Although the idea that cell membrane lipid bilayers do little more than give shape and form to cells and limit diffusion between cells and their environment is totally passé, the structural, compositional, and functional complexity of lipid bilayers often catches cell and molecular biologists by surprise. Models of lipid bilayer structure have developed considerably since the heyday of the (...)
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  3.  48
    Wrinkling of a bilayer resting on a soft substrate under in-plane compression.Fei Jia, Yan-Ping Cao, Tian-Shu Liu, Yi Jiang, Xi-Qiao Feng & Shou-Wen Yu - 2012 - Philosophical Magazine 92 (12):1554-1568.
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  4.  23
    Problems and paradigms: Dynamic lipid‐bilayer heterogeneity: A mesoscopic vehicle for membrane function?Ole G. Mouritsen & Kent Jørgensen - 1992 - Bioessays 14 (2):129-136.
    The lipid‐bilayer component of cell membranes is an aqueous bimolecular aggregate characterized by a heterogeneous lateral organization of its molecular constituents. The heterogeneity may be sustained statically as well as dynamically. On the basis of recent experimental and theoretical progress in the study of the physical properties of lipid‐bilayer membranes, it is proposed that the dynamically heterogeneous membrane states are important for membrane functions such as transport of matter across the membrane and enzymatic activity. The heterogeneous membrane states (...)
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  5.  29
    A theoretical model for the association probabilities of saturated phospholipids from two-component bilayer lipid membranes.Liviu Movileanu & Dumitru Popescu - 1998 - Acta Biotheoretica 46 (4):347-368.
    The non-random mixing of biomembrane components, especially saturated phospholipids, exhibits important consequences in molecular biology. Particularly, the distribution of lipids within natural and model membranes is strongly determined by the selective association processes. These processes of phospholipids take place due to the cooperative modes in multiparticle systems as well as the specific lipid-lipid interactions both in the hydrophobic core and in the region of the polar headgroups. We demonstrated that the investigation of the selective association processes of saturated phospholipids might (...)
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  6.  23
    Conductance of bilayer graphene nanoribbons with different widths.T. S. Li, Y. C. Huang, M. F. Lin & S. C. Chang - 2010 - Philosophical Magazine 90 (23):3177-3187.
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  7.  28
    Synthesis of monolayers and bilayers of cobalt oxyhydrates xyCoO2−δ.Chia-Jyi Liu, Chia-Yuan Liao, Jiunn-Yuan Lin & Jyh-Fu Lee - 2010 - Philosophical Magazine 90 (12):1585-1597.
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  8.  52
    Price Linkage Rumors in the Stock Market and Investor Risk Contagion on Bilayer-Coupled Networks.Yue Dong, Jiepeng Wang & Tingqiang Chen - 2019 - Complexity 2019:1-21.
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  9.  19
    Period-doubling and period-tripling in growing bilayered systems.Silvia Budday, Ellen Kuhl & John W. Hutchinson - 2015 - Philosophical Magazine 95 (28-30):3208-3224.
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  10.  33
    Physical study of dynamics in fully hydrated phospholipid bilayers.G. D’Angelo, U. Wanderlingh, V. C. Nibali, C. Crupi, C. Corsaro & G. Di Marco - 2008 - Philosophical Magazine 88 (33-35):4033-4046.
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  11.  45
    Effects of transverse electric fields on Landau subbands in bilayer zigzag graphene nanoribbons.Hsien-Ching Chung, Po-Hua Yang, To-Sing Li & Ming-Fa Lin - 2014 - Philosophical Magazine 94 (16):1859-1872.
  12.  18
    Recording ion channels across soy-extracted lecithin bilayer generated by water-soluble quantum dots.Runjun Sarma & Dambarudhar Mohanta - 2014 - Philosophical Magazine 94 (4):345-357.
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  13.  29
    Interface dislocation structures at the onset of coherency loss in nanoscale Ni–Cu bilayer films.D. Mitlin *, A. Misra, T. E. Mitchell, J. P. Hirth & R. G. Hoagland - 2005 - Philosophical Magazine 85 (28):3379-3392.
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  14.  28
    Effect of thermal annealing on disorder and optical properties of Cr/Si bilayer thin films.Kuna Lakshun Naidu & Mamidipudi Ghanashyam Krishna - 2014 - Philosophical Magazine 94 (30):3431-3444.
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  15.  30
    Destruction of Landau levels in asymmetric bilayer nanographene ribbons.M. H. Lee, H. C. Chung, C. Y. Lin & M. F. Lin - 2014 - Philosophical Magazine 94 (24):2812-2825.
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  16.  18
    Formation of misfit dislocations in nanoscale Ni–Cu bilayer films.David Mitlin, Amit Misra, Velimir Radmilovic, Michael Nastasi, Richard Hoagland, David J. Embury, J. P. Hirth & Terence E. Mitchell - 2004 - Philosophical Magazine 84 (7):719-736.
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  17.  22
    Absorption spectra of unequal width bilayer graphene nanoribbons in a spatially modulated electric field.T. S. Li - 2014 - Philosophical Magazine 94 (14):1588-1600.
  18.  19
    Flipping and other astonishing transporter dance moves in fungal drug resistance.Stefanie L. Raschka, Andrzej Harris, Ben F. Luisi & Lutz Schmitt - 2022 - Bioessays 44 (7):2200035.
    In all domains of life, transmembrane proteins from the ATP‐binding cassette (ABC) transporter family drive the translocation of diverse substances across lipid bilayers. In pathogenic fungi, the ABC transporters of the pleiotropic drug resistance (PDR) subfamily confer antibiotic resistance and so are of interest as therapeutic targets. They also drive the quest for understanding how ABC transporters can generally accommodate such a wide range of substrates. The Pdr5 transporter from baker's yeast is representative of the PDR group and, ever since (...)
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  19.  21
    Ductin – a proton pump component, a gap junction channel and a neurotransmitter release channel.Malcolm E. Finbow, Michael Harrison & Phillip Jones - 1995 - Bioessays 17 (3):247-255.
    Ductin is the highest conserved membrane protein yet found in eukaryotes. It is multifunctional, being the subunit c or proteolipid component of the vacuolar H+‐ATPase and at the same time the protein component of a form of gap junction in metazoan animals. Analysis of its structure shows it to be a tandem repeat of two 8‐kDa domains derived from the subunit c of the F0 proton pore from the F1F0 ATPase. Each domain contains two transmembrane α‐helices, which together may form (...)
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  20.  41
    An Emerging Group of Membrane Property Sensors Controls the Physical State of Organellar Membranes to Maintain Their Identity.Toni Radanović, John Reinhard, Stephanie Ballweg, Kristina Pesek & Robert Ernst - 2018 - Bioessays 40 (5):1700250.
    The biological membranes of eukaryotic cells harbor sensitive surveillance systems to establish, sense, and maintain characteristic physicochemical properties that ultimately define organelle identity. They are fundamentally important for membrane homeostasis and play active roles in cellular signaling, protein sorting, and the formation of vesicular carriers. Here, we compare the molecular mechanisms of Mga2 and Ire1, two sensors involved in the regulation of fatty acid desaturation and the response to unfolded proteins and lipid bilayer stress in order to identify their (...)
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  21. Regeneration of Hydra from aggregated cells.Alfred Gierer, S. Berking, H. Bode, C. N. David, K. Flick, G. Hansmann, H. Schaller & E. Trenkner - 1972 - Nature New Biology 239:98-101.
    • Aggregates of previously isolated cells of Hydra are capable, under suitable solvant conditions, of regeneration forming complete animals. In a first stage, ecto- and endodermal cells sort out, producing the bilayered hollow structure characteristic of Hydra tissue; thereafter, heads are formed (even if the original cell preparation contained no head cells), eventually leading to the separation of normal animals with head, body column and foot. Hydra appears to be the highest type of organism that allows for regeneration of the (...)
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  22.  42
    The mammalian acrosome reaction: Gateway to sperm fusion with the oocyte?Catherine A. Allen & David P. L. Green - 1997 - Bioessays 19 (3):241-247.
    Mammalian sperm undergo discharge of a single, anterior secretory granule following their attachment to the zona pellucida surrounding the oocyte. This secretory discharge is known for historical reasons as the acrosome reaction. It fulfils a number of purposes and without it, sperm are unable to penetrate the zona pellucida and fuse with the oocyte. In this review, we focus on the role of the acrosome reaction in the development of fusion competence in sperm. Any naturally occurring membrane fusion has two (...)
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  23.  14
    Membrane shaping proteins, lipids, and cytoskeleton: Recipe for nascent lipid droplet formation.Manasi S. Apte & Amit S. Joshi - 2022 - Bioessays 44 (9):2200038.
    Lipid droplets (LDs) are ubiquitous, neutral lipid storage organelles that act as hubs of metabolic processes. LDs are structurally unique with a hydrophobic core that mainly consists of neutral lipids, sterol esters, and triglycerides, enclosed within a phospholipid monolayer. Nascent LD formation begins with the accumulation of neutral lipids in the endoplasmic reticulum (ER) bilayer. The ER membrane proteins such as seipin, LDAF1, FIT, and MCTPs are reported to play an important role in the formation of nascent LDs. As (...)
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  24.  17
    Membrane protein insertion into the endoplasmic reticulum ‐ another channel tunnel?Stephen High - 1992 - Bioessays 14 (8):535-540.
    The synthesis of biological membranes requires the insertion of proteins into a lipid bilayer. The rough endoplasmic reticulum of eukaryotic cells is a principal site of membrane biogenesis. The insertion of proteins into the membrane of the endoplasmic reticulum is mediated by a resident proteinaceous machinery. Over the last five years several different experimental approaches have provided information about the components of the machinery and how it may function.
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  25.  32
    Targeting of proteins into the eukaryotic secretory pathway: Signal peptide structure/function relationships.Steven F. Nothwehr & Jeffrey I. Gordon - 1990 - Bioessays 12 (10):479-484.
    Much progress has been made in recent years regarding the mechanisms of targeting of secretory proteins to, and across, the endoplasmic reticulum (ER) membrane. Many of the cellular components involved in mediating translocation across this bilayer have been identified and characterized. Polypeptide domains of secretory proteins, termed signal peptides, have been shown to be necessary, and in most cases sufficient, for entry of preproteins into the lumen of the ER. These NH2‐ terminal segments appear to serve multiple roles in (...)
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  26.  19
    Brief Examination of Boscovichʼs Understanding of Space and Time.Roko Pešić - 2019 - Filozofska Istrazivanja 39 (3):605-616.
    From a more physicalistic point of view the paper gives a brief overview of Boscovich’s thought about the bilayer of space and time, real space and time, and mathematical space and time, without going into philosophical analysis in detail. The paper provides examples of possible correspondence between Boscovich’s thought and physicalist concepts in modern physics.
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  27.  11
    Membrane protein assembly: Rules of the game.Gunnar von Heijne - 1995 - Bioessays 17 (1):25-30.
    Integral membrane proteins are found in all cellular membranes and fulfil many of the functions that are central to life. A critical step in the biosynthesis of membrane proteins is their insertion into the lipid bilayer. The mechanisms of membrane protein insertion and folding are becoming increasingly better understood, and efficient methods for the ab initio prediction of three‐dimensional protein structure from the primary amino acid sequence may be within reach. Already, the basic tools needed for engineering and de (...)
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  28.  28
    Protein lateral mobility as a reflection of membrane microstructure.Fen Zhang, Greta M. Lee & Ken Jacobson - 1993 - Bioessays 15 (9):579-588.
    The lateral mobility of membrane lipids and proteins is presumed to play an important functional role in biomembranes. Photobleaching studies have shown that many proteins in the plasma membrane have diffusion coefficients at least an order of magnitude lower than those obtained when the same proteins are reconstituted in artificial bilayer membranes. Depending on the protein, it has been shown that either the cytoplasmic domain or the ectodomain is the key determinant of its lateral mobility. Single particle tracking microscopy, (...)
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  29.  30
    Scramblases and virus infection.Dan Tang, Yichang Wang, Xiuju Dong, Yiqiong Yuan, Fanchen Kang, Weidong Tian, Kunjie Wang, Hong Li & Shiqian Qi - 2022 - Bioessays 44 (12):2100261.
    The asymmetric distribution of lipids, maintained by flippases/floppases and scramblases, plays a pivotal role in various physiologic processes. Scramblases are proteins that move phospholipids between the leaflets of the lipid bilayer of the cellular membrane in an energy‐independent manner. Recent studies have indicated that viral infection is closely related to cellular lipid distribution. The level and distribution of phosphatidylserine (PtdSer) in cells have been demonstrated to be critical regulators of viral infections. Previous studies have supported that the infection of (...)
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  30.  17
    Amyloid fibrils act as a reservoir of soluble oligomers, the main culprits in protein deposition diseases.Alessandra Bigi, Roberta Cascella, Fabrizio Chiti & Cristina Cecchi - 2022 - Bioessays 44 (11):2200086.
    Amyloid fibril formation plays a central role in the pathogenesis of a number of neurodegenerative diseases, including Alzheimer and Parkinson diseases. Transient prefibrillar oligomers forming during the aggregation process, exhibiting a small size and a large hydrophobic surface, can aberrantly interact with a number of molecular targets on neurons, including the lipid bilayer of plasma membranes, resulting in a fatal outcome for the cells. By contrast, the mature fibrils, despite presenting generally a high hydrophobic surface, are endowed with a (...)
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  31.  3
    Targeting and insertion of nuclear‐encoded preproteins into the mitochondrial outer membrane.Katsuyoshi Mihara - 2000 - Bioessays 22 (4):364-371.
    Most mitochondrial proteins are synthesized in the cytosol as preproteins with a cleavable presequence and are delivered to the import receptors on the mitochondria by cytoplasmic import factors. The proteins are then imported to the intramitochondrial compartments by the import systems of the outer and inner membranes, TOM and TIM. Mitochondrial outer membrane proteins are synthesized without a cleavable presequence and most of them contain hydrophobic transmembrane domains, which, in conjunction with the flanking segments, function as the mitochondria import signals. (...)
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  32.  12
    Apoptotic mitochondrial poration by a growing list of pore‐forming BCL‐2 family proteins.Tudor Moldoveanu - 2023 - Bioessays 45 (3):2200221.
    The pore‐forming BCL‐2 family proteins are effectors of mitochondrial poration in apoptosis initiation. Two atypical effectors—BOK and truncated BID (tBID)—join the canonical effectors BAK and BAX. Gene knockout revealed developmental phenotypes in the absence the effectors, supporting their roles in vivo. During apoptosis effectors are activated and change shape from dormant monomers to dynamic oligomers that associate with and permeabilize mitochondria. BID is activated by proteolysis, BOK accumulates on inhibition of its degradation by the E3 ligase gp78, while BAK and (...)
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  33.  14
    Memory in Ion Channel Kinetics. [REVIEW]M. P. Silva, C. G. Rodrigues, W. A. Varanda & R. A. Nogueira - 2021 - Acta Biotheoretica 69 (4):697-722.
    Ion channels are transport proteins present in the lipid bilayers of biological membranes. They are involved in many physiological processes, such as the generation of nerve impulses, hormonal secretion, and heartbeat. Conformational changes in the ion channel-forming protein allow the opening or closing of pores to control the ionic flux through the cell membranes. The opening and closing of the ion channel have been classically treated as a random kinetic process, known as a Markov process. Here the time the channel (...)
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  34.  43
    Hydra and Niccolo Paganini (1782–1840)—two peas in a pod? The molecular basis of extracellular matrix structure in the invertebrate, Hydra[REVIEW]Michael P. Sarras & Rainer Deutzmann - 2001 - Bioessays 23 (8):716-724.
    The body wall of Hydra is organized as an epithelial bilayer with an intervening extracellular matrix (ECM). Molecular and biochemical analyses of Hydra ECM have established that it contains components similar to those seen in more complicated vertebrates such as human. In terms of biophysical parameters, Hydra ECM is highly flexible; a property that facilitates continuous movements along the organism's longitudinal and radial axis. A more rigid ECM, as in vertebrates, would not be compatible with this degree of movement. (...)
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  35.  23
    Application of molecular dynamics computer simulations in the design of a minimal self-replicating molecular machine.Paweł Weroński, Yi Jiang & Steen Rasmussen - 2008 - Complexity 13 (4):10-17.
  36.  17
    Novel Channels of the Outer Membrane of Mitochondria: Recent Discoveries Change Our View.Vanessa Checchetto & Ildiko Szabo - 2018 - Bioessays 40 (6):1700232.
    Ion channels mediate ion flux across biological membranes and regulate important organellar and cellular tasks. A recent study revealed the presence of four new proteins, the MIM complex (composed by Mim1 and Mim2), Ayr1, OMC7, and OMC8, that are able to form ion‐conducting channels in the outer mitochondria membrane (OMM). These findings strongly indicate that the OMM is endowed with many solute‐specific channels, in addition to porins and known channels mediating protein import into mitochondria. These solute‐specific channels provide essential pathways (...)
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