Hydrogelation and Self-Assembly of Fmoc-Tripeptides: Unexpected Influence of Sequence on Self-Assembled Fibril Structure, and Hydrogel Modulus and Anisotropy

被引:117
作者
Cheng, G. [1 ]
Castelletto, V. [1 ]
Moulton, C. M. [1 ]
Newby, G. E. [1 ]
Hamley, I. W. [1 ,2 ]
机构
[1] Univ Reading, Dept Chem, Reading RG6 6AD, Berks, England
[2] Diamond Light Source, Didcot OX11 0DE, Oxon, England
基金
英国工程与自然科学研究理事会;
关键词
SUPRAMOLECULAR HYDROGELS; ENZYMATIC FORMATION; PH-RESPONSIVENESS; PEPTIDE NANOTUBES; DIPHENYLALANINE; AGGREGATION; INHIBITORS; MOLECULES; PROTEIN; DESIGN;
D O I
10.1021/la903678e
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The self-assembly and hydrogelation properties of two Fmoc-tripeptides [Fmoc = N-(fluorenyl-9-methoxycarbonyl)] are investigated, in borate buffer and other basic solutions. A remarkable difference in self-assembly properties is observed comparing Fmoc-VLK(Boc) with Fmoc-K(Boc)LV, both containing K protected by N-epsilon-tert-butyloxycarbonate (Boc). In borate buffer, the former peptide forms highly anisotropic fibrils which show local alignment, and the hydrogels show flow-aligning properties. In contrast, Fmoc-K(Boc)LV forms highly branched fibrils that produce isotropic hydrogels with a much higher modulus (G' > 10(4) Pa), and lower concentration for hydrogel formation. The distinct self-assembled structures are ascribed to conformational differences, as revealed by secondary structure probes (CD, FTIR, Raman spectroscopy) and X-ray diffraction. Fmoc-VLK(Boc) forms well-defined beta-sheets with a cross-beta X-ray diffraction pattern, whereas Fmoc-KLV(Boc) forms unoriented assemblies with multiple stacked sheets. Interchange of the K and V residues when inverting the tripeptide sequence thus leads to substantial differences in self-assembled structures, suggesting a promising approach to control hydrogel properties.
引用
收藏
页码:4990 / 4998
页数:9
相关论文
共 53 条
[1]   A new method for maintaining homogeneity during liquid-hydrogel transitions using low molecular weight hydrogelators [J].
Adams, Dave J. ;
Butler, Michael F. ;
Frith, William J. ;
Kirkland, Mark ;
Mullen, Leanne ;
Sanderson, Paul .
SOFT MATTER, 2009, 5 (09) :1856-1862
[2]   Hierarchical self-assembly of chiral rod-like molecules as a model for peptide β-sheet tapes, ribbons, fibrils, and fibers [J].
Aggeli, A ;
Nyrkova, IA ;
Bell, M ;
Harding, R ;
Carrick, L ;
McLeish, TCB ;
Semenov, AN ;
Boden, N .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2001, 98 (21) :11857-11862
[3]   Fast Dynamics of Semiflexible Chain Networks of Self-Assembled Peptides [J].
Branco, Monica C. ;
Nettesheim, Florian ;
Pochan, Darrin J. ;
Schneider, Joel P. ;
Wagner, Norman J. .
BIOMACROMOLECULES, 2009, 10 (06) :1374-1380
[4]   Self-assembly in aqueous solution of a modified amyloid beta peptide fragment [J].
Castelletto, V. ;
Hamley, I. W. ;
Harris, P. J. F. .
BIOPHYSICAL CHEMISTRY, 2008, 138 (1-2) :29-35
[5]   Capillary flow behavior of worm-like micelles studied by small-angle X-ray scattering and small angle light scattering [J].
Castelletto, V. ;
Hamley, I. W. .
POLYMERS FOR ADVANCED TECHNOLOGIES, 2006, 17 (03) :137-144
[6]   Helical-Ribbon Formation by a β-Amino Acid Modified Amyloid β-Peptide Fragment [J].
Castelletto, Valeria ;
Hamley, Ian W. ;
Hule, Rohan A. ;
Pochan, Darrin .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2009, 48 (13) :2317-2320
[7]   Templating Molecular Arrays in Amyloid's Cross-β Grooves [J].
Childers, W. Seth ;
Mehta, Anil K. ;
Lu, Kun ;
Lynn, David G. .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2009, 131 (29) :10165-10172
[8]   Exploiting enzymatic (reversed) hydrolysis in directed setf-assembly of peptide nanostructures [J].
Das, Apurba K. ;
Collins, Richard ;
Ulijn, Rein V. .
SMALL, 2008, 4 (02) :279-287
[9]   The role of protecting groups in the formation of organogels through a nano-fibrillar network formed by self-assembling terminally protected tripeptides [J].
Das, Apurba K. ;
Bose, Partha Pratim ;
Drew, Michael G. B. ;
Banerjee, Arindam .
TETRAHEDRON, 2007, 63 (31) :7432-7442
[10]   The structure of nanotubes formed by diphenylalanine, the core recognition motif of Alzheimer's β-amyloid polypeptide [J].
Goerbitz, Carl Henrik .
CHEMICAL COMMUNICATIONS, 2006, (22) :2332-2334