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Journal ArticleDOI

Breaking the Code of DNA Binding Specificity of TAL-Type III Effectors

TLDR
The functionality of a distinct type of DNA binding domain is described and allows the design ofDNA binding domains for biotechnology.
Abstract
The pathogenicity of many bacteria depends on the injection of effector proteins via type III secretion into eukaryotic cells in order to manipulate cellular processes. TAL (transcription activator-like) effectors from plant pathogenic Xanthomonas are important virulence factors that act as transcriptional activators in the plant cell nucleus, where they directly bind to DNA via a central domain of tandem repeats. Here, we show how target DNA specificity of TAL effectors is encoded. Two hypervariable amino acid residues in each repeat recognize one base pair in the target DNA. Recognition sequences of TAL effectors were predicted and experimentally confirmed. The modular protein architecture enabled the construction of artificial effectors with new specificities. Our study describes the functionality of a distinct type of DNA binding domain and allows the design of DNA binding domains for biotechnology.

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Citations
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Journal ArticleDOI

Mouse genetics: Catalogue and scissors

TL;DR: The recent achievement of IKMC is introduced, the significance of ZFN/TALEN technology in mouse genetics is evaluated, and new technologies, adopting zinc-finger nucleases (ZFNs) or Transcription Activator-Like Effector (TALE) Nucleases (TALens) to edit the mouse genome are evaluated.
Journal ArticleDOI

Engineering Therapeutic T Cells: From Synthetic Biology to Clinical Trials.

TL;DR: Challenges in the development of engineered T cell therapies requires advances in immunology, synthetic biology, manufacturing processes, and government regulation are outlined.
Patent

Modified dna-binding proteins and uses thereof

TL;DR: In this paper, enhanced polypeptides, polynucleotides, cells and organisms comprising novel DNA-binding domains, including TALE DNA binding domains, are described.
Book ChapterDOI

Gene Drive Strategies for Population Replacement

TL;DR: This work assesses the alignment ofGene drive systems with design criteria for their safety and efficacy and concludes that systems such as Medea, which use combinations of toxins and antidotes to favor their own inheritance, are highly stable and suitable for replacing mosquito populations with disease-refractory varieties.
Journal ArticleDOI

TALENs-directed knockout of the full-length transcription factor Nrf1α that represses malignant behaviour of human hepatocellular carcinoma (HepG2) cells.

TL;DR: The full-length Nrf1α is processed into distinct isoforms, which together regulate genes essential for maintaining cellular homeostasis and organ integrity, and liver-specific loss of NRF1 in mice results in spontaneous hepatoma, to report that the human constitutive Nrf 1α expression is attenuated or abolished in the case of low-differentiated high-metastatic hepatocellular carcinomas.
References
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Journal ArticleDOI

The plant immune system

TL;DR: A detailed understanding of plant immune function will underpin crop improvement for food, fibre and biofuels production and provide extraordinary insights into molecular recognition, cell biology and evolution across biological kingdoms.
Journal ArticleDOI

Activation Tagging Identifies a Conserved MYB Regulator of Phenylpropanoid Biosynthesis

TL;DR: A novel approach for enhancing the accumulation of natural products based on activation tagging by Agrobacterium-mediated transformation with a T-DNA that carries cauliflower mosaic virus 35S enhancer sequences at its right border is reported.
Journal ArticleDOI

Innate immunity in plants : an arms race between pattern recognition receptors in plants and effectors in microbial pathogens

TL;DR: It turns out that the important contribution of PTI to disease resistance is masked by pathogen virulence effectors that have evolved to suppress it.
Journal ArticleDOI

High-frequency modification of plant genes using engineered zinc-finger nucleases

TL;DR: High-frequency ZFN-stimulated gene targeting at endogenous plant genes, namely the tobacco acetolactate synthase genes (ALS SuRA and SuRB), for which specific mutations are known to confer resistance to imidazolinone and sulphonylurea herbicides are demonstrated.
Journal ArticleDOI

A bacterial effector acts as a plant transcription factor and induces a cell size regulator.

TL;DR: It is shown that AvrBs3 induces the expression of a master regulator of cell size, upa20, which encodes a transcription factor containing a basic helix-loop-helix domain that provokes developmental reprogramming of host cells by mimicking eukaryotic transcription factors.
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