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Conservative site-specific and single-copy transgenesis in human LINE-1 elements
Authors:Shree Harsha Vijaya?Chandra  Harshyaa Makhija  Sabrina Peter  Cho Mar Myint?Wai  Jinming Li  Jindong Zhu  Zhonglu Ren  Martina Stagno D'Alcontres  Jia Wei Siau  Sharon Chee  Farid John Ghadessy  Peter Dr?ge
Affiliation:1.School of Biological Sciences, Nanyang Technological University, 60 Nanyang Drive, Singapore 637551;2.Department of Bioinformatics, School of Basic Medical Sciences, Southern Medical University, Tonghe GuangZhou 510515, People''s Republic of China;3.State Key Laboratory of Organ Failure Research, Division of Nephrology, Nanfang Hospital, Tonghe, Guangzhou 510515, People''s Republic of China;4.p53Lab, Agency for Science Technology and Research, Singapore 138673
Abstract:Genome engineering of human cells plays an important role in biotechnology and molecular medicine. In particular, insertions of functional multi-transgene cassettes into suitable endogenous sequences will lead to novel applications. Although several tools have been exploited in this context, safety issues such as cytotoxicity, insertional mutagenesis and off-target cleavage together with limitations in cargo size/expression often compromise utility. Phage λ integrase (Int) is a transgenesis tool that mediates conservative site-specific integration of 48 kb DNA into a safe harbor site of the bacterial genome. Here, we show that an Int variant precisely recombines large episomes into a sequence, termed attH4X, found in 1000 human Long INterspersed Elements-1 (LINE-1). We demonstrate single-copy transgenesis through attH4X-targeting in various cell lines including hESCs, with the flexibility of selecting clones according to transgene performance and downstream applications. This is exemplified with pluripotency reporter cassettes and constitutively expressed payloads that remain functional in LINE1-targeted hESCs and differentiated progenies. Furthermore, LINE-1 targeting does not induce DNA damage-response or chromosomal aberrations, and neither global nor localized endogenous gene expression is substantially affected. Hence, this simple transgene addition tool should become particularly useful for applications that require engineering of the human genome with multi-transgenes.
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