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

Author:

Aljohani Mohammed D.ORCID,El Mouridi Sonia,Priyadarshini Monika,Vargas-Velazquez Amhed M.ORCID,Frøkjær-Jensen ChristianORCID

Abstract

AbstractTransgenes are prone to progressive silencing due to their structure, copy number, and genomic location. InC. 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 An/TnClusters (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, andtagBFP) 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 inC. elegans.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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