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Engineering rules that minimize germline silencing of transgenes in simple extrachromosomal arrays in C. elegans

机译:在C.秀丽隐杆上的简单rollacromosomal阵列中最小化转基因的种质沉默的工程规则

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Transgenes are prone to progressive silencing due to their structure, copy number, and genomic location. In C. elegans , repressive mechanisms are particularly strong in the germline with almost fully penetrant transgene silencing in simple extrachromosomal arrays and frequent silencing of single-copy transgene insertions. A class of non-coding DNA, Periodic A n /T n Clusters (PATCs) can prevent transgene-silencing in repressive chromatin or from small interfering RNAs (piRNAs). Here, we describe design rules (codon-optimization, intron and PATC inclusion, elevated temperature (25?°C), and vector backbone removal) for efficient germline expression from arrays in wildtype animals. We generate web-based tools to analyze PATCs and reagents for the convenient assembly of PATC-rich transgenes. An extensive collection of silencing resistant fluorescent proteins (e.g., gfp , mCherry , and tagBFP ) can be used for dissecting germline regulatory elements and a set of enhanced enzymes (Mos1 transposase, Cas9, Cre, and Flp recombinases) enable efficient genetic engineering in C. elegans .
机译:由于其结构,拷贝数和基因组定位,转基因易于逐渐沉默。在C.杆状杆菌中,抑制机制在芽髓中特别强大,具有几乎完全渗透的转基因在简单的粒状阵列中,频繁沉默单拷贝转基因插入。一类非编码DNA,周期性N / T n簇(Patcs)可以防止抑制染色质或小干扰RNA(PiRNA)中的转基因沉默。在这里,我们描述了设计规则(密码子优化,内含子和PATC包含,升高的温度(25°C)和载体骨干移除),用于从野生型动物中的阵列有效的种系表达。我们生成基于网络的工具,以分析Patcs和试剂,方便的PATC的转基因组装。广泛收集的耐腐蚀荧光蛋白(例如,GFP,MCHERRY和TAGBFP)可用于解剖种种调节元件和一组增强酶(MOS1转座酶,CAS9,CRE和FLP重组酶)可以实现高效的基因工程。elegans。

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