Abstract
The highly organized structure of M13 bacteriophage was used as an evolved biological template for the nucleation and orientation of semiconductor nanowires. To create this organized template, peptides were selected by using a pIII phage display library for their ability to nucleate ZnS or CdS nanocrystals. The successful peptides were expressed as pVIII fusion proteins into the crystalline capsid of the virus. The engineered viruses were exposed to semiconductor precursor solutions, and the resultant nanocrystals that were templated along the viruses to form nanowires were extensively characterized by using high-resolution analytical electron microscopy and photoluminescence. ZnS nanocrystals were well crystallized on the viral capsid in a hexagonal wurtzite or a cubic zinc blende structure, depending on the peptide expressed on the viral capsid. Electron diffraction patterns showed single-crystal type behavior from a polynanocrystalline area of the nanowire formed, suggesting that the nanocrystals on the virus were preferentially oriented with their [001] perpendicular to the viral surface. Peptides that specifically directed CdS nanocrystal growth were also engineered into the viral capsid to create wurtzite CdS virus-based nanowires. Lastly, heterostructured nucleation was achieved with a dual-peptide virus engineered to express two distinct peptides within the same viral capsid. This work represents a genetically controlled biological synthesis route to a semiconductor nanoscale heterostructure.
MeSH Terms
Bacteriophage M13/genetics,metabolism,ultrastructure
Cadmium Compounds/chemistry,metabolism
Capsid Proteins/genetics,metabolism,ultrastructure
Crystallization
Genetic Engineering
Microscopy, Electron, Scanning Transmission
Nanotechnology
Peptide Library
Semiconductors
Sulfides/chemistry,metabolism
Zinc Compounds/chemistry,metabolism
Chemicals
Cadmium Compounds
Capsid Proteins
Peptide Library
Sulfides
Zinc Compounds
cadmium sulfide
zinc sulfide
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Mao Chuanbin
Department of Chemistry and Biochemistry, Institute for Cellular and Molecular Biology, Center for Nano- and Molecular Science and Technology, and Texas Materials Institute, University of Texas, Austin, TX 78712, USA.
Flynn Christine E
Hayhurst Andrew
Sweeney Rozamond
Qi Jifa
Georgiou George
Iverson Brent
Belcher Angela M
References (17)
17 references, click to expand
-
Reliable cloning of functional antibody variable domains from hybridomas and spleen cell repertoires employing a reengineered phage display system.
J Immunol Methods. 1997 Feb 14;201(1):35-55
PMID: 9032408
-
Metal-recognition by repeating polypeptides.
Nat Biotechnol. 1997 Mar;15(3):269-72
PMID: 9062928
-
Modifying filamentous phage capsid: limits in the size of the major capsid protein.
J Mol Biol. 1995 May 12;248(4):835-44
PMID: 7752244
-
Simultaneous display of different peptides on the surface of filamentous bacteriophage.
Nucleic Acids Res. 1997 Feb 15;25(4):915-6
PMID: 9016648
-
Silicatein filaments and subunits from a marine sponge direct the polymerization of silica and silicones in vitro.
Proc Natl Acad Sci U S A. 1999 Jan 19;96(2):361-5
PMID: 9892638
-
Ordering of quantum dots using genetically engineered viruses.
Science. 2002 May 3;296(5569):892-5
PMID: 11988570
-
Atomic-scale imaging of individual dopant atoms and clusters in highly n-type bulk Si.
Nature. 2002 Apr 25;416(6883):826-9
PMID: 11976677
-
New vectors for peptide display on the surface of filamentous bacteriophage.
Gene. 1996 May 24;171(1):49-51
PMID: 8675029
-
Homodimeric peptides displayed by the major coat protein of filamentous phage.
J Mol Biol. 2000 Jul 7;300(2):307-20
PMID: 10873467
-
Selection of peptides with semiconductor binding specificity for directed nanocrystal assembly.
Nature. 2000 Jun 8;405(6787):665-8
PMID: 10864319
-
The morphology of murine oncornaviruses following different methods of preparation for electron microscopy.
Cancer Res. 1975 Mar;35(3):740-9
PMID: 46780
-
Self-assembly and mineralization of peptide-amphiphile nanofibers.
Science. 2001 Nov 23;294(5547):1684-8
PMID: 11721046
-
Growth of nanowire superlattice structures for nanoscale photonics and electronics.
Nature. 2002 Feb 7;415(6872):617-20
PMID: 11832939
-
Highly polarized photoluminescence and photodetection from single indium phosphide nanowires.
Science. 2001 Aug 24;293(5534):1455-7
PMID: 11520977
-
The wrapping phenomenon in air-dried and negatively stained preparations.
Ultramicroscopy. 1982;9(1-2):139-50
PMID: 6182666
-
The rational design of a 'type 88' genetically stable peptide display vector in the filamentous bacteriophage fd.
Nucleic Acids Res. 2001 May 15;29(10):E50-0
PMID: 11353095
-
Calcitic microlenses as part of the photoreceptor system in brittlestars.
Nature. 2001 Aug 23;412(6849):819-22
PMID: 11518966