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TAL effectors: function structure engineering and applications

机译:TaL效应:功能结构工程和应用

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摘要

TAL effectors are proteins secreted by bacterial pathogens into plant cells, where they enter the nucleus and activate expression of individual genes. TAL effectors display a modular architecture that includes a central DNA-binding region comprising a tandem array of nearly identical repeats that are almost all 34 residues long. Residue number 13 in each TAL repeat (one of two consecutive polymorphic amino acids that are termed ‘repeat variable diresidues’, or ‘RVDs’) specifies the identity of a single base; collectively the sequential repeats and their RVDs dictate the recognition of sequential bases along one of the two DNA strands. The modular architecture of TAL effectors has facilitated their extremely rapid development and application as artificial gene targeting reagents, particularly in the form of site-specific nucleases. Recent crystallographic and biochemical analyses of TAL effectors have established the structural basis of their DNA recognition properties and provide clear directions for future research.
机译:TAL效应子是细菌病原体分泌到植物细胞中的蛋白质,它们进入细胞核并激活单个基因的表达。 TAL效应子展示了一个模块化的结构,该结构包括一个中央DNA结合区,该区域包含一个几乎相同的重复序列,几乎全部34个残基长。每个TAL重复序列中的13号残基(两个连续的多态性氨基酸之一,称为“重复可变双残基”或“ RVD”)指定了一个碱基的身份;顺序重复和它们的RVD共同决定了沿着两条DNA链之一的顺序碱基的识别。 TAL效应子的模块化结构促进了它们作为人工基因靶向试剂的发展和应用,特别是以位点特异性核酸酶的形式迅速发展和应用。 TAL效应子的最新晶体学和生化分析已建立了其DNA识别特性的结构基础,并为今后的研究提供了明确的方向。

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