Literature DB >> 20660779

Native-sized recombinant spider silk protein produced in metabolically engineered Escherichia coli results in a strong fiber.

Xiao-Xia Xia1, Zhi-Gang Qian, Chang Seok Ki, Young Hwan Park, David L Kaplan, Sang Yup Lee.   

Abstract

Spider dragline silk is a remarkably strong fiber that makes it attractive for numerous applications. Much has thus been done to make similar fibers by biomimic spinning of recombinant dragline silk proteins. However, success is limited in part due to the inability to successfully express native-sized recombinant silk proteins (250-320 kDa). Here we show that a 284.9 kDa recombinant protein of the spider Nephila clavipes is produced and spun into a fiber displaying mechanical properties comparable to those of the native silk. The native-sized protein, predominantly rich in glycine (44.9%), was favorably expressed in metabolically engineered Escherichia coli within which the glycyl-tRNA pool was elevated. We also found that the recombinant proteins of lower molecular weight versions yielded inferior fiber properties. The results provide insight into evolution of silk protein size related to mechanical performance, and also clarify why spinning lower molecular weight proteins does not recapitulate the properties of native fibers. Furthermore, the silk expression, purification, and spinning platform established here should be useful for sustainable production of natural quality dragline silk, potentially enabling broader applications.

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Year:  2010        PMID: 20660779      PMCID: PMC2922564          DOI: 10.1073/pnas.1003366107

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  30 in total

1.  Hypotheses that correlate the sequence, structure, and mechanical properties of spider silk proteins.

Authors:  C Y Hayashi; N H Shipley; R V Lewis
Journal:  Int J Biol Macromol       Date:  1999 Mar-Apr       Impact factor: 6.953

2.  Isolation of a clone encoding a second dragline silk fibroin. Nephila clavipes dragline silk is a two-protein fiber.

Authors:  M B Hinman; R V Lewis
Journal:  J Biol Chem       Date:  1992-09-25       Impact factor: 5.157

3.  A conserved spider silk domain acts as a molecular switch that controls fibre assembly.

Authors:  Franz Hagn; Lukas Eisoldt; John G Hardy; Charlotte Vendrely; Murray Coles; Thomas Scheibel; Horst Kessler
Journal:  Nature       Date:  2010-05-13       Impact factor: 49.962

4.  Self-assembly of spider silk proteins is controlled by a pH-sensitive relay.

Authors:  Glareh Askarieh; My Hedhammar; Kerstin Nordling; Alejandra Saenz; Cristina Casals; Anna Rising; Jan Johansson; Stefan D Knight
Journal:  Nature       Date:  2010-05-13       Impact factor: 49.962

5.  Assembly mechanism of recombinant spider silk proteins.

Authors:  S Rammensee; U Slotta; T Scheibel; A R Bausch
Journal:  Proc Natl Acad Sci U S A       Date:  2008-04-29       Impact factor: 11.205

6.  Synthetic spider dragline silk proteins and their production in Escherichia coli.

Authors:  S R Fahnestock; S L Irwin
Journal:  Appl Microbiol Biotechnol       Date:  1997-01       Impact factor: 4.813

Review 7.  Microbial production of spider silk proteins.

Authors:  S R Fahnestock; Z Yao; L A Bedzyk
Journal:  J Biotechnol       Date:  2000-08       Impact factor: 3.307

8.  A protocol for the production of recombinant spider silk-like proteins for artificial fiber spinning.

Authors:  Florence Teulé; Alyssa R Cooper; William A Furin; Daniela Bittencourt; Elibio L Rech; Amanda Brooks; Randolph V Lewis
Journal:  Nat Protoc       Date:  2009       Impact factor: 13.491

Review 9.  The mechanical design of spider silks: from fibroin sequence to mechanical function.

Authors:  J M Gosline; P A Guerette; C S Ortlepp; K N Savage
Journal:  J Exp Biol       Date:  1999-12       Impact factor: 3.312

10.  Engineering the Salmonella type III secretion system to export spider silk monomers.

Authors:  Daniel M Widmaier; Danielle Tullman-Ercek; Ethan A Mirsky; Rena Hill; Sridhar Govindarajan; Jeremy Minshull; Christopher A Voigt
Journal:  Mol Syst Biol       Date:  2009-09-15       Impact factor: 11.429

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  92 in total

1.  Biomaterials: spider strength and stretchability.

Authors:  Wolfgang A Linke
Journal:  Nat Chem Biol       Date:  2010-10       Impact factor: 15.040

2.  Tunable self-assembly of genetically engineered silk--elastin-like protein polymers.

Authors:  Xiao-Xia Xia; Qiaobing Xu; Xiao Hu; Guokui Qin; David L Kaplan
Journal:  Biomacromolecules       Date:  2011-09-30       Impact factor: 6.988

3.  Silk-Its Mysteries, How It Is Made, and How It Is Used.

Authors:  Davoud Ebrahimi; Olena Tokareva; Nae Gyune Rim; Joyce Y Wong; David L Kaplan; Markus J Buehler
Journal:  ACS Biomater Sci Eng       Date:  2015-08-24

Review 4.  Systems metabolic engineering of microorganisms for natural and non-natural chemicals.

Authors:  Jeong Wook Lee; Dokyun Na; Jong Myoung Park; Joungmin Lee; Sol Choi; Sang Yup Lee
Journal:  Nat Chem Biol       Date:  2012-05-17       Impact factor: 15.040

5.  Combining flagelliform and dragline spider silk motifs to produce tunable synthetic biopolymer fibers.

Authors:  Florence Teulé; Bennett Addison; Alyssa R Cooper; Joel Ayon; Robert W Henning; Chris J Benmore; Gregory P Holland; Jeffery L Yarger; Randolph V Lewis
Journal:  Biopolymers       Date:  2011-10-20       Impact factor: 2.505

6.  Hanging on a thread.

Authors:  Laura DeFrancesco
Journal:  Nat Biotechnol       Date:  2017-06-07       Impact factor: 54.908

7.  Biomimetic spinning of artificial spider silk from a chimeric minispidroin.

Authors:  Marlene Andersson; Qiupin Jia; Ana Abella; Xiau-Yeen Lee; Michael Landreh; Pasi Purhonen; Hans Hebert; Maria Tenje; Carol V Robinson; Qing Meng; Gustavo R Plaza; Jan Johansson; Anna Rising
Journal:  Nat Chem Biol       Date:  2017-01-09       Impact factor: 15.040

Review 8.  A review of combined experimental and computational procedures for assessing biopolymer structure-process-property relationships.

Authors:  Greta Gronau; Sreevidhya T Krishnaji; Michelle E Kinahan; Tristan Giesa; Joyce Y Wong; David L Kaplan; Markus J Buehler
Journal:  Biomaterials       Date:  2012-08-28       Impact factor: 12.479

9.  Native-sized spider silk proteins synthesized in planta via intein-based multimerization.

Authors:  Valeska Hauptmann; Nicola Weichert; Matthias Menzel; Dominic Knoch; Norman Paege; Jürgen Scheller; Uwe Spohn; Udo Conrad; Mario Gils
Journal:  Transgenic Res       Date:  2012-09-22       Impact factor: 2.788

10.  Uncovering changes in spider orb-web topology owing to aerodynamic effects.

Authors:  Ramón Zaera; Alejandro Soler; Jaime Teus
Journal:  J R Soc Interface       Date:  2014-09-06       Impact factor: 4.118

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