同源重组
重组
生物
非等位同源重组
遗传重组
解旋酶
遗传学
FLP-FRT重组
基因组
计算生物学
人口
DNA
基因
核糖核酸
社会学
人口学
作者
Kyle Kaniecki,Luisina De Tullio,Eric C. Greene
摘要
Genetic recombination occurs in all organisms and is vital for genome stability. Indeed, in humans, aberrant recombination can lead to diseases such as cancer. Our understanding of homologous recombination is built upon more than a century of scientific inquiry, but achieving a more complete picture using ensemble biochemical and genetic approaches is hampered by population heterogeneity and transient recombination intermediates. Recent advances in single-molecule and super-resolution microscopy methods help to overcome these limitations and have led to new and refined insights into recombination mechanisms, including a detailed understanding of DNA helicase function and synaptonemal complex structure. The ability to view cellular processes at single-molecule resolution promises to transform our understanding of recombination and related processes.
科研通智能强力驱动
Strongly Powered by AbleSci AI