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by Shen, Y and Tao, J and Tao, H and Chen, S and Pan, L and Wang, T
Applied Physics Letters, ISSN 0003-6951, 01/2016, Volume 108, Issue 1, p. 16102
Journal Article
Bioorganic and Medicinal Chemistry Letters, ISSN 0960-894X, 12/2013, Volume 23, Issue 23, pp. 6360 - 6362
Spiromorpholinone derivatives were synthesized from androsterone or cyclohexanone in 6 or 3 steps, respectively, and these scaffolds were used for the... 
Hydrophobicity
Journal Article
Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 4/2013, Volume 110, Issue 16, pp. 6608 - 6608
Journal Article
Science, ISSN 0036-8075, 08/2018, Volume 361, Issue 6405, p. eaar7949
Best et al. claim that we provide no convincing basis to assert that a discrepancy remains between FRET and SAXS results on the dimensions of disordered... 
Proteins | Hydrophobicity
Journal Article
Science, ISSN 0036-8075, 08/2018, Volume 361, Issue 6405, p. eaar7101
Riback et al. (Reports, 13 October 2017, p. 238) used small-angle x-ray scattering (SAXS) experiments to infer a degree of compaction for unfolded proteins in... 
Proteins | Hydrophobicity
Journal Article
Science, ISSN 0036-8075, 08/2018, Volume 361, Issue 6405, p. eaau8230
Editors at Science requested our input on the above discussion (comment by Best et al. and response by Riback et al.) because both sets of authors use our data... 
Proteins | Hydrophobicity
Journal Article
Protein Science, ISSN 0961-8368, 12/2002, Volume 11, Issue 12, pp. 2774 - 2791
Methods that predict membrane helices have become increasingly useful in the context of analyzing entire proteomes, as well as in everyday sequence analysis.... 
acetyl‐amino‐acid amides (Fauchere and Pliska 1983) | Av‐Cid, normalized average hydrophobicity scale (Cid 1992) | PSI‐BLAST, position‐specific iterated database search (Altschul et al. 1997) | TrEMBL, translation of the EMBL‐nucleotide database coding DNA to protein sequences (Bairoch and Apweiler 2000) | TopPred2, hydrophobicity‐based membrane helix prediction (von Heijne 1992; Cserzö et al. 1997) | BIG, nonidentical merger of SWISS‐PROT (Bairoch and Apweiler 2000) and TrEMBL (Bairoch and Apweiler 2000) and PDB (Berman et al. 2000) | PHDhtm, profile‐based neural network prediction of transmembrane helices (Rost 1996; Rost et al. 1996b) | Eisenberg, normalized consensus hydrophobicity scale (Eisenberg et al. 1984) | TM, transmembrane | MEMSAT, dynamic‐programming based prediction of transmembrane helices (Jones et al. 1994) | PDB, Protein Data Bank of experimentally determined 3D structures of proteins (Bernstein et al. 1977; Berman et al. 2000) | A‐Cid, normalized hydrophobicity scale for α‐proteins (Cid 1992) | GES, hydrophobicity property (Engelman et al. 1986; Prabhakaran 1990) | MaxHom, dynamic programming algorithm for conservation weight‐based multiple sequence alignment (Sander and Schneider 1991) | EM, Solvation free energy (Eisenberg and McLachlan 1986) | bioinformatics | SignalP, signal peptide prediction (Nielsen et al. 1997a) | Ben‐Tal, hydrophobicity scale representing the free energy of transferring an amino acid from water into the center of the hydrocarbon region of a lipid bilayer (Kessel and Ben‐Tal 2002) | TMHMM, transmembrane prediction using cyclic hidden Markov models (Sonnhammer et al. 1998; Krogh et al. 2001) | computational biology | Roseman, solvation‐corrected side‐chain hydropathy (Roseman 1988) | KD, Kyte–Doolittle hydropathy index (Kyte and Doolittle 1982) | PHDpsihtm, divergent profile (PSI‐BLAST)‐based neural network prediction 2002 | Radzicka, transfer free energy from 1‐octanol to water (Radzicka and Wolfenden 1988) | Sweet, optimal matching hydrophobicity (Sweet and Eisenberg 1983) | HMM, hidden Markov model | Fauchere, hydrophobic parameter π from the partitioning of | SWISS‐PROT, database of protein sequences (Bairoch and Apweiler 2000) | TMAP, alignment‐based prediction of transmembrane helices (Persson and Argos 1996) | Wolfenden, hydration potential (Wolfenden et al. 1981) | BLAST, fast sequence alignment method (Altschul and Gish 1996) | Levitt, hydrophobic parameter (Levitt 1976) | multiple alignments, predicting transmembrane helices | proteomes | Lawson, transfer free energy (Lawson et al. 1984) | WW, Wimley–White hydrophobicity scale‐based method (Wimley et al. 1996a,b; White and Wimley 1999; White 2001) | Nakashima, normalized composition of membrane proteins (Nakashima et al. 1990) | SOSUI, hydrophobicity‐ and amphiphilicity‐based transmembrane helix prediction (Hirokawa et al. 1998) | Bull‐Breese, Bull‐Breese hydrophobicity scale (Bull 1974) | SPLIT, transmembrane helix prediction (Juretic et al. 1998) | EVA, server automatically evaluating structure prediction methods (Eyrich et al. 2001a,b) | comparing genomes | TMpred, prediction of transmembrane helices (Hofmann and Stoffel 1993) | Heijne, transfer free energy to lipophilic phase (von Heijne and Blomberg 1979) | TMH, transmembrane helix | HMMTOP, hidden Markov model predicting transmembrane helices (Tusnady and Simon 1998) | Sequence analysis | protein structure prediction | DSSP, program assigning secondary structure (Kabsch and Sander 1983) | META‐PP, internet service allowing access to a variety of bioinformatics tools through one single interface (Eyrich and Rost 2000) | Hopp‐Woods, Hopp‐Woods hydrophilicity value (Hopp and Woods 1981) | Protein structure prediction | Multiple alignments, predicting transmembrane helices | Proteomes | Bioinformatics | Comparing genomes | Computational biology | PROTEIN SECONDARY STRUCTURE | predicting transmembrane helices | BIOCHEMISTRY & MOLECULAR BIOLOGY | ESCHERICHIA-COLI | multiple alignments | ACID SIDE-CHAINS | TOPOLOGY PREDICTION | INTEGRAL MEMBRANE-PROTEINS | BACTERIAL OUTER-MEMBRANE | SARCOPLASMIC-RETICULUM CA2+-ATPASE | STRUCTURAL CLASSIFICATION | sequence analysis | C-TERMINAL DOMAIN | MITOCHONDRIAL PROTEINS | Computational Biology - methods | Algorithms | Animals | Membrane Proteins - chemistry | Protein Structure, Secondary | Sensitivity and Specificity | Models, Molecular | Software | Protein Folding | Index Medicus
Journal Article
Food and Nutrition Sciences, ISSN 2157-944X, 2013, Volume 4, Issue 3, pp. 299 - 304
The surface energy characteristics of uncoated (clean) and coated stainless steel with UHT milk at various contact time (5 min, 30 min, 1 hours, 3 hours, 6... 
Hydrophobicity
Journal Article
Advanced Materials, ISSN 0935-9648, 12/2017, Volume 29, Issue 45, p. n/a
Beihang University has achieved great progress in superwettability systems inspired by natural biological surfaces. The four intrinsic states of... 
Philosophy | Hydrophobicity
Journal Article
Chemical Engineering Science, ISSN 0009-2509, 11/2019, Volume 207, pp. 527 - 541
The prediction of the superhydrophobic/superhydrophilic behavior from the characteristics of post impinged droplet on a surface with the alteration of physical... 
Hydrophobicity | Hydrophilicity | Spreading | Recoiling
Journal Article
Chemical Communications : Chem Comm, ISSN 1359-7345, 01/2019, Volume 55, Issue 55, pp. 8001 - 8004
We report the first method to introduce differential functionalities in the interior pore walls and exterior surface of highly stable thermally hydrocarbonised... 
Silicon | Hydrophobicity | Porous silicon
Journal Article
Dalton Transactions, ISSN 1477-9226, 01/2019, Volume 48, Issue 24, pp. 8725 - 8730
A molecular tweezer incorporating two acridinium moieties linked by a 1,3-dipyridylbenzene spacer was synthesized in three steps. The formation of its... 
Dimers | Narcissism | Hydrophobicity
Journal Article
Journal of Materials Chemistry. A, Materials for Energy and Sustainability, ISSN 2050-7488, 01/2018, Volume 6, Issue 40, pp. 19353 - 19357
While anti-icing research has been the focus of much interest, the approaches developed so far suffer from inherent limitations, which restrict their... 
Deicing | Hydrophobicity | Coatings
Journal Article
Nature communications, ISSN 2041-1723, 02/2018, Volume 9, Issue 1, pp. 668 - 1
The original version of this Article contained an error in Fig. 2b. The y-axis label in Fig. 2b was incorrectly labelled 'Snap-in force (μN)'. In the correct... 
Butterflies | Wings | Hydrophobicity
Journal Article
Cytoskeleton, ISSN 1949-3584, 09/2017, Volume 74, Issue 9, pp. C4 - C4
The cover image, by Shohei Iwase and Shoichiro Ono, is based on the Research Article Conserved hydrophobic residues in the CARP/b-sheet domain of... 
Layouts | Actin | Hydrophobicity
Journal Article
Journal of Clinical Periodontology, ISSN 0303-6979, 06/2018, Volume 45, Issue S19, pp. 321 - 321
Journal Article
06/2007
Antimicrobial action of silanols, a new class of antimicrobials, was investigated by transmission electron microscopy and fluorescent dye studies.... 
hydrophobicity | antimicrobials | organosilicon compounds
Web Resource
Chemistry - A European Journal, ISSN 0947-6539, 02/2018, Volume 24, Issue 7, p. 1463
Invited for the cover of this issue is the group of Michael D. Ward at the Universities of Warwick and Sheffield. The image depicts the 'hydrophobic effect'... 
Binding | Colleges & universities | Hydrophobicity
Journal Article
Scientific Reports, ISSN 2045-2322, 12/2018, Volume 8, Issue 1, pp. 1 - 11
The 129Xe chemical shift in an aqueous solution exhibits a non-monotonic temperature dependence, featuring a maximum at 311 K. This is in contrast to most... 
Molecular dynamics | Temperature effects | Hydrophobicity
Journal Article
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