Literature DB >> 1366613

Genetic engineering of structural protein polymers.

J Cappello1, J Crissman, M Dorman, M Mikolajczak, G Textor, M Marquet, F Ferrari.   

Abstract

Genetic and protein engineering are components of a new polymer chemistry that provide the tools for producing macromolecular polyamide copolymers of diversity and precision far beyond the current capabilities of synthetic polymer chemistry. The genetic machinery allows molecular control of chemical and physical chain properties. Nature utilizes this control to formulate protein polymers into materials with extraordinary mechanical properties, such as the strength and toughness of silk and the elasticity and resilience of mammalian elastin. The properties of these materials have been attributed to the presence of short repeating oligopeptide sequences contained in the proteins, fibroin, and elastin. We have produced homoblock protein polymers consisting exclusively of silk-like crystalline blocks and elastin-like flexible blocks. We have demonstrated that each homoblock polymer as produced by microbial fermentation exhibits measurable properties of crystallinity and elasticity. Additionally, we have produced alternating block copolymers of various amounts of silk-like and elastin-like blocks, ranging from a ratio of 1:4 to 2:1, respectively. The crystallinity of each copolymer varies with the amount of crystalline block interruptions. The production of fiber materials with custom-engineered mechanical properties is a potential outcome of this technology.

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Year:  1990        PMID: 1366613     DOI: 10.1021/bp00003a006

Source DB:  PubMed          Journal:  Biotechnol Prog        ISSN: 1520-6033


  66 in total

Review 1.  Spider silk proteins: recent advances in recombinant production, structure-function relationships and biomedical applications.

Authors:  Anna Rising; Mona Widhe; Jan Johansson; My Hedhammar
Journal:  Cell Mol Life Sci       Date:  2010-07-29       Impact factor: 9.261

2.  Materials science: Muscle mimic.

Authors:  Elliot L Chaikof
Journal:  Nature       Date:  2010-05-06       Impact factor: 49.962

Review 3.  Silk-based delivery systems of bioactive molecules.

Authors:  Keiji Numata; David L Kaplan
Journal:  Adv Drug Deliv Rev       Date:  2010-03-16       Impact factor: 15.470

4.  High yield recombinant silk-like protein production in transgenic plants through protein targeting.

Authors:  Jianjun Yang; Leslie A Barr; Stephen R Fahnestock; Zhan-Bin Liu
Journal:  Transgenic Res       Date:  2005-06       Impact factor: 2.788

5.  Temperature triggered self-assembly of polypeptides into multivalent spherical micelles.

Authors:  Matthew R Dreher; Andrew J Simnick; Karl Fischer; Richard J Smith; Anand Patel; Manfred Schmidt; Ashutosh Chilkoti
Journal:  J Am Chem Soc       Date:  2007-12-18       Impact factor: 15.419

6.  Intelligent biosynthetic nanobiomaterials (IBNs) for hyperthermic gene delivery.

Authors:  Tze-Haw Howard Chen; Younsoo Bae; Darin Y Furgeson
Journal:  Pharm Res       Date:  2007-08-29       Impact factor: 4.200

7.  Self-Assembly of Thermoresponsive Recombinant Silk-Elastinlike Nanogels.

Authors:  Kyle J Isaacson; Mark Martin Jensen; Alexandre H Watanabe; Bryant E Green; Marcelo A Correa; Joseph Cappello; Hamidreza Ghandehari
Journal:  Macromol Biosci       Date:  2017-09-04       Impact factor: 4.979

8.  In situ gelling silk-elastinlike protein polymer for transarterial chemoembolization.

Authors:  Azadeh Poursaid; Robert Price; Andrea Tiede; Erik Olson; Eugene Huo; Lawrence McGill; Hamidreza Ghandehari; Joseph Cappello
Journal:  Biomaterials       Date:  2015-04-28       Impact factor: 12.479

Review 9.  Biomaterials for vascular tissue engineering.

Authors:  Swathi Ravi; Elliot L Chaikof
Journal:  Regen Med       Date:  2010-01       Impact factor: 3.806

10.  Effect of shear on physicochemical properties of matrix metalloproteinase responsive silk-elastinlike hydrogels.

Authors:  Robert Price; Azadeh Poursaid; Joseph Cappello; Hamidreza Ghandehari
Journal:  J Control Release       Date:  2014-08-02       Impact factor: 9.776

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