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1.
Science ; 358(6369)2017 12 15.
Artigo em Inglês | MEDLINE | ID: mdl-29242318

RESUMO

Self-folding of an information-carrying polymer into a defined structure is foundational to biology and offers attractive potential as a synthetic strategy. Although multicomponent self-assembly has produced complex synthetic nanostructures, unimolecular folding has seen limited progress. We describe a framework to design and synthesize a single DNA or RNA strand to self-fold into a complex yet unknotted structure that approximates an arbitrary user-prescribed shape. We experimentally construct diverse multikilobase single-stranded structures, including a ~10,000-nucleotide (nt) DNA structure and a ~6000-nt RNA structure. We demonstrate facile replication of the strand in vitro and in living cells. The work here thus establishes unimolecular folding as a general strategy for constructing complex and replicable nucleic acid nanostructures, and expands the design space and material scalability for bottom-up nanotechnology.


Assuntos
DNA de Cadeia Simples/química , Nanoestruturas/química , Nanotecnologia/métodos , Dobramento de RNA , RNA/química , Replicação do DNA , DNA de Cadeia Simples/genética , Escherichia coli , Nucleotídeos/química
2.
ACS Synth Biol ; 6(12): 2362-2365, 2017 12 15.
Artigo em Inglês | MEDLINE | ID: mdl-29020772

RESUMO

Genetic Constructor is a cloud Computer Aided Design (CAD) application developed to support synthetic biologists from design intent through DNA fabrication and experiment iteration. The platform allows users to design, manage, and navigate complex DNA constructs and libraries, using a new visual language that focuses on functional parts abstracted from sequence. Features like combinatorial libraries and automated primer design allow the user to separate design from construction by focusing on functional intent, and design constraints aid iterative refinement of designs. A plugin architecture enables contributions from scientists and coders to leverage existing powerful software and connect to DNA foundries. The software is easily accessible and platform agnostic, free for academics, and available in an open-source community edition. Genetic Constructor seeks to democratize DNA design, manufacture, and access to tools and services from the synthetic biology community.


Assuntos
DNA/genética , Engenharia Genética/instrumentação , Software
3.
ACS Synth Biol ; 6(1): 167-171, 2017 01 20.
Artigo em Inglês | MEDLINE | ID: mdl-27529358

RESUMO

Wet Lab Accelerator (WLA) is a cloud-based tool that allows a scientist to conduct biology via robotic control without the need for any programming knowledge. A drag and drop interface provides a convenient and user-friendly method of generating biological protocols. Graphically developed protocols are turned into programmatic instruction lists required to conduct experiments at the cloud laboratory Transcriptic. Prior to the development of WLA, biologists were required to write in a programming language called "Autoprotocol" in order to work with Transcriptic. WLA relies on a new abstraction layer we call "Omniprotocol" to convert the graphical experimental description into lower level Autoprotocol language, which then directs robots at Transcriptic. While WLA has only been tested at Transcriptic, the conversion of graphically laid out experimental steps into Autoprotocol is generic, allowing extension of WLA into other cloud laboratories in the future. WLA hopes to democratize biology by bringing automation to general biologists.


Assuntos
Automação Laboratorial/métodos , Software , Biologia Sintética/métodos , Automação Laboratorial/estatística & dados numéricos , Computação em Nuvem , Gráficos por Computador , Internet , Linguagens de Programação , Robótica , Biologia Sintética/estatística & dados numéricos
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