Identification of A-to-I RNA editing in Xenopus
收藏NIAID Data Ecosystem2026-05-01 收录
官方服务:
资源简介:
We built a database containing all potential A-to-I RNA editing sites in Xenopus Laevis and Xenopus Tropicalis
应用场景:
创建时间:
2023-10-26
相关数据集
Disruption in A-to-I editing levels affects C. elegans development more than a complete lack of editing
A-to-I RNA editing is widespread in eukaryotic transcriptomes and plays an essential role in the creation of proteomic and phenotypic diversity. Loss of ADARs, the proteins responsible for A-to-I edit
NIAID Data Ecosystem80
RNA-Seq of head tissue from Drosophila melanogaster Wild Type and AdarEA mutant
We profiled gene expression in flies with and without A-to-I RNA editing (AdarEA mutant Drosophila melanogaster with a Canton-S background). Overall design: mRNA profiles of heads of 3 day old male Ad
DataCite Commons2020-10-10 更新60
A-to-I editing is a major contributor to viral and cellular transcriptome diversity in primary effusion lymphoma. A-to-I editing is a major contributor to viral and cellular transcriptome diversity in primary effusion lymphoma
RNA editing is a major contributor to transcriptome diversity with far reaching biological consequences. Adenosine to Inosine (A-to-I) RNA editing is the most common type of RNA editing in animals and
NIAID Data Ecosystem40
Alu Sequences in Undifferentiated Human Embryonic Stem Cells Display High Levels of A-to-I RNA Editing
Adenosine to Inosine (A-to-I) RNA editing is a site-specific modification of RNA transcripts, catalyzed by members of the ADAR (Adenosine Deaminase Acting on RNA) protein family. RNA editing occurs in
NIAID Data Ecosystem70
Similarity of editing-sequence contexts in fruit fly, mouse and human.
Each row shows the number of A-to-I editing-sequence contexts in species similar with those in fruit fly, mouse and human. Values in brackets refer to training datasets in this study.
NIAID Data Ecosystem40



