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Beyond CRISPR: single base editors for human health and crop improvement

机译:超越CRISPR:用于人类健康和作物改善的单一基础编辑

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During 2016-2018, CRISPR/Cas9 technology was modified using disabled Cas9 with nickase activity in combination with cytosine/adenine deaminases for the development of four generations of cytosine base editors (BE1-BE4) for C -& U conversion and at least seven generations of adenine base editors (ABE1-ABE7) for A -& I conversion. These base editors exhibited improved efficiency and reduced frequency of deletions among the products. Further improvement in the form of enhanced base editors and high-fidelity base editors was achieved through the use of 1-3 copies of uracil N-glycosylase inhibitors and phage Mu-Gam protein. The technology will bring precision to gene editing technology for human healthcare and crop improvement.
机译:在2016 - 2018年期间,使用残疾人CAS9与乳糜酶/腺嘌呤脱氨酶组合使用残疾人CAS9进行修饰CRISPR / CAS9技术,用于开发四代胞嘧啶基础编辑器(BE1-BE4)的C - & GT; U转换和至少七代腺嘌呤基础编辑器(ABE1-ABE7)的A - & GT; 我转换。 这些基础编辑器表现出提高产品效率和降低缺失频率。 通过使用1-3份Uracil N-糖基酶抑制剂和噬菌体MU-GAM蛋白,实现了增强基础编辑器和高保真基础编辑器形式的进一步改善。 该技术将为人类医疗保健和作物改进提出基因编辑技术的精确度。

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