Self-Assembling Peptide Systems in Biology, Medicine and Engineering

One ofthe major drivers in biological research is the establishment ofstructures and functions of the 50,000 or so proteins in our bodies. Each has a characteristic- dimensional structure, highly "ordered" yet "disordered"! This structure is essential for a protein's functio...

Πλήρης περιγραφή

Λεπτομέρειες βιβλιογραφικής εγγραφής
Κύριοι συγγραφείς: Aggeli, Amalia (Συγγραφέας), Boden, Neville (Συγγραφέας), Zhang, Shuguang (Συγγραφέας)
Συγγραφή απο Οργανισμό/Αρχή: SpringerLink (Online service)
Μορφή: Ηλεκτρονική πηγή Ηλ. βιβλίο
Γλώσσα:English
Έκδοση: Dordrecht : Springer Netherlands, 2002.
Θέματα:
Διαθέσιμο Online:Full Text via HEAL-Link
LEADER 05276nam a22005655i 4500
001 978-0-306-46890-2
003 DE-He213
005 20151204172532.0
007 cr nn 008mamaa
008 100301s2002 ne | s |||| 0|eng d
020 |a 9780306468902  |9 978-0-306-46890-2 
024 7 |a 10.1007/0-306-46890-5  |2 doi 
040 |d GrThAP 
050 4 |a QD431-431.7 
072 7 |a PSBC  |2 bicssc 
072 7 |a SCI007000  |2 bisacsh 
082 0 4 |a 572.6  |2 23 
100 1 |a Aggeli, Amalia.  |e author. 
245 1 0 |a Self-Assembling Peptide Systems in Biology, Medicine and Engineering  |h [electronic resource] /  |c by Amalia Aggeli, Neville Boden, Shuguang Zhang. 
264 1 |a Dordrecht :  |b Springer Netherlands,  |c 2002. 
300 |a XII, 364 p.  |b online resource. 
336 |a text  |b txt  |2 rdacontent 
337 |a computer  |b c  |2 rdamedia 
338 |a online resource  |b cr  |2 rdacarrier 
347 |a text file  |b PDF  |2 rda 
505 0 |a Exploiting Peptide Self-assembly to Engineer Novel Biopolymers: Tapes, Ribbons, Fibrils and Fibres -- Ribbon-Like Lamellar Structures from Chain-Folded Polypeptides -- Design of Self-Assembling Peptides as Catalyst Mimetics Using Synthetic Combinatorial Libraries -- Thermodynamics of Protein-Protein and Peptide Interactions -- The Mechanism of Amyloid Formation and Its Links to Human Disease and Biological Evolution -- Transgenic Plants for Large Scale Production of Peptides and Proteins -- Assembly Modulation of Channel-Forming Peptides -- Molecular Casting of Infectious Amyloids, Inorganic and Organic Replication: Nucleation, Conformational Change and Self-Assembly -- Structure and Stabilisation of Self-Assembling Peptide Filaments -- Designed Combinatorial Libraries of Novel Amyloid-Like Proteins -- Design of Synthetic Branched Chain Polymeric Polypeptides for Targeting/Delivering Bioactive Molecules -- Amyloid-Like Fibrils from a Peptide-Analogue of the Central Domain of Silkmoth Chorion Proteins -- Amyloidogenesis of Islet Amyloid Polypeptide (IAPP) -- Engineering Self-Assembly of Peptides by Amphiphilic 2D Motifs: ?-to-? Transitions of Peptides -- Model Signal Peptides: Probes of Molecular Interactions During Protein Secretion -- Structure, Folding and Assembly of Adenovirus Fibers -- Solving the Structure of Collagen -- Disulfide Bond Based Self-Assembly of Peptides Leading To Spheroidal Cyclic Trimers -- A New Circular Helicoid-Type Sequential Oligopeptide carrier for Assembling Multiple Antigenic Peptides -- Molecular Recognition in the Membrane: Role in the Folding of Membrane Proteins -- Novel Peptide Nucleic Acids with Improved Solubility and DNA-Binding Ability -- Chiral Lipid Tubules -- ?Tt-Mechanism in the Design of Self-Assembling Structures -- Self-assembling Peptide Systems in Biology and Biomedical Engineering. 
520 |a One ofthe major drivers in biological research is the establishment ofstructures and functions of the 50,000 or so proteins in our bodies. Each has a characteristic- dimensional structure, highly "ordered" yet "disordered"! This structure is essential for a protein's function and, significantly, it must be sustained in the competitive and complex environment of the living cell. It is now being recognised that when a cell loses control, proteins can se- assemble into more complex supermolecular structures such as the amyloid fibres and plaques associated with the pathogenesis of prion (CJD) or age-related (Alzheimer's) diseases. This is a pointer to the wider significance of the self-assembling properties of polypeptides. It has been long known that, in silk, polypeptides are assembled into- sheet structures which impart on the material its highly exploitable properties of flexibility combined with high tensile strength. But only now emerging is the recognition that peptides can Self-assemble into a wide variety of non-protein-like structures, including fibrils, fibres, tubules, sheets and monolayers. These are exciting observations and, more so, the potential for materials and medical exploitations is so wide ranging that over 80 scientists from Europe, USA, Japan and Israel. met 1-6 July 1999 in Crete, to discuss the wide-ranging implications of these novel developments. There was a spirit of excitement about the workshop indicative of an important new endeavor. The emerging perception is that of a new class of materials set to become commercially viable early in the 21st century. 
650 0 |a Life sciences. 
650 0 |a Biotechnology. 
650 0 |a Bioorganic chemistry. 
650 0 |a Polymers. 
650 0 |a Biochemistry. 
650 0 |a Proteins. 
650 0 |a Materials science. 
650 1 4 |a Life Sciences. 
650 2 4 |a Protein Science. 
650 2 4 |a Bioorganic Chemistry. 
650 2 4 |a Biochemistry, general. 
650 2 4 |a Polymer Sciences. 
650 2 4 |a Characterization and Evaluation of Materials. 
650 2 4 |a Biotechnology. 
700 1 |a Boden, Neville.  |e author. 
700 1 |a Zhang, Shuguang.  |e author. 
710 2 |a SpringerLink (Online service) 
773 0 |t Springer eBooks 
776 0 8 |i Printed edition:  |z 9780792370901 
856 4 0 |u http://dx.doi.org/10.1007/0-306-46890-5  |z Full Text via HEAL-Link 
912 |a ZDB-2-SBL 
912 |a ZDB-2-BAE 
950 |a Biomedical and Life Sciences (Springer-11642)