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韩春雨论文 国际高度关注 今日论文得分326分

已有 3385 次阅读 2016-11-24 15:06 |个人分类:今日热点|系统分类:观点评述


近日论文得分增长较快,说明国际科学界高度关注。

韩春雨 《自然》11月23日新闻 已发现无法重复的原因

2016-11-24

NATURE | NEWS Sharing NgAgo gene-editing controversy escalates in peer-reviewed papers One paper describes surpri ...(164)次阅读|(0)个评论

NgAgo gene-editing controversy escalates in peer-reviewed papers

One paper describes surprising results in zebrafish embryos, another lists failed replication efforts.

23 November 2016


http://www.nature.com/news/ngago-gene-editing-controversy-escalates-in-peer-reviewed-papers-1.21023

国际关注与评论 替代计量得分 https://nature.altmetric.com/details/7114638

DNA-guided genome editing using the Natronobacterium gregoryi Argonaute
Overview of attention for article published in Nature Biotechnology, May 2016
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<a class="contextual-help-link" data-type="score" title="About this data" data-content="<h3>What is the Altmetric Attention Score?</h3>

The Altmetric Attention Score for a research output provides an indicator of the amount of attention that it has received. The score is derived from an automated algorithm, and represents a weighted count of the amount of attention we've picked up for a research output.

<a target="_blank" href="https://help.altmetric.com/support/solutions/articles/6000060969-how-is-the-altmetric-score-calculated-">Click here to learn more about how Altmetric Attention Scores are calculated.

" href="https://nature.altmetric.com/details/7114638#" style="box-sizing:border-box;margin:0px;padding:0px;border:0px;font-style:inherit;font-variant:inherit;font-weight:inherit;font-stretch:inherit;font-size:inherit;line-height:inherit;font-family:inherit;vertical-align:baseline;color:#383844;text-decoration:none;outline:none;"> About this Attention Score
  • In the top 5% of all research outputs scored by Altmetric
  • Among the highest-scoring outputs from this source (#17 of 3,536)
  • High Attention Score compared to outputs of the same age (99th percentile)
  • High Attention Score compared to outputs of the same age and source (98th percentile)
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Title
DNA-guided genome editing using the Natronobacterium gregoryi Argonaute
Published in
Nature Biotechnology, May 2016
DOI10.1038/nbt.3547
Pubmed ID
Authors

Feng Gao, Xiao Z Shen, Feng Jiang, Yongqiang Wu, Chunyu Han, Gao, Feng, Shen, Xiao Z, Jiang, Feng, Wu, Yongqiang, Han, Chunyu

Abstract

The RNA-guided endonuclease Cas9 has made genome editing a widely accessible technique. Similar to Cas9, endonucleases from the Argonaute protein family also use oligonucleotides as guides to degrade invasive genomes. Here we report that the Natronobacterium gregoryi Argonaute (NgAgo) is a DNA-guided endonuclease suitable for genome editing in human cells. NgAgo binds 5' phosphorylated single-stranded guide DNA (gDNA) of ~24 nucleotides, efficiently creates site-specific DNA double-strand breaks when loaded with the gDNA. The NgAgo-gDNA system does not require a protospacer-adjacent motif (PAM), as does Cas9, and preliminary characterization suggests a low tolerance to guide-target mismatches and high efficiency in editing (G+C)-rich genomic targets.



https://nature.altmetric.com/details/7114638




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