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National Chung Hsing University Institutional Repository - NCHUIR > 生命科學院 > 基因體暨生物資訊學研究所 > 依資料類型分類 > 期刊論文 >  Arabidopsis ENDO2: Its Catalytic Role and Requirement of N-Glycosylation for Function

Please use this identifier to cite or link to this item: http://nchuir.lib.nchu.edu.tw/handle/309270000/145702

標題: Arabidopsis ENDO2: Its Catalytic Role and Requirement of N-Glycosylation for Function
作者: Ko, Chia-Yun;Lai, Yi-Ling;Liu, Wen-Yu;Lin, Chia-Hui;Chen, Yu-Ting;Long-Fang, O.Chen;Lin, Tsai-Yun;Shaw, Jei-Fu
Contributors: Wei Chun Wang
關鍵字: N-glycosylation;ENDO2;single-strand-preferring nuclease;mismatch specific endonuclease;programmed cell death
日期: 2012-05-09
Issue Date: 2013-07-02 10:20:09 (UTC+8)
摘要: The Arabidopsis thaliana At1g68290 gene encoding an endonuclease was isolated and designated ENDO2, which was cloned into a binary vector to overexpress ENDO2 with a C-terminal 6 × His-tag in A. thaliana. Our Arabidopsis transgenic lines harboring 35SP::ENDO2 produced stable active enzyme with high yield. The protein was affinity purified from transgenic plants, and its identity was confirmed by liquid chromatography–mass spectrometry and automatic Edman degradation. ENDO2 enzyme digests RNA, ssDNA, and dsDNA, with a substrate preference for ssDNA and RNA. The activity toward ssDNA (361.7 U/mg) is greater than its dsDNase activity (14.1 U/mg) at neutral pH. ENDO2 effectively cleaves mismatch regions in heteroduplex DNA containing single base pair mismatches or insertion/deletion bases and can be applied to high-throughput detection of single base mutation. Our data also validated that the removal of sugar groups from ENDO2 strongly affects its enzymatic stability and activity.
Relation: J. Agric. Food Chem.,Volume 60, Issue 20, page(s) 5169–5179.
Appears in Collections:[依資料類型分類] 期刊論文

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