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Nature Microbiology|March 6, 2019
Target-dependent nickase activities of the CRISPR-Cas nucleases Cpf1 and Cas9Becky Xu Hua Fu, Justin D Smith, Ryan T Fuchs, et al.Science (New York, N.Y.)|February 27, 2016
Direct CRISPR spacer acquisition from RNA by a natural reverse transcriptase-Cas1 fusion proteinSukrit Silas, Georg Mohr, David J Sidote, et al.Development (Cambridge, England)|June 23, 2006
An antagonistic role for the C. elegans Schnurri homolog SMA-9 in modulating TGFbeta signaling during mesodermal patterningMarisa L Foehr, Amanda S Lindy, Rachel C Fairbank, et al.Molecular Cell|February 2, 2010
Distinct phases of siRNA synthesis in an endogenous RNAi pathway in C. elegans somaJonathan I Gent, Ayelet T Lamm, Derek M Pavelec, et al.Cell|October 31, 2024
Viroid-like colonists of human microbiomesIvan N Zheludev, Robert C Edgar, Maria Jose Lopez-Galiano, et al.Biorxiv : the Preprint Server for Biology|January 31, 2024
Viroid-like colonists of human microbiomesIvan N Zheludev, Robert C Edgar, Maria Jose Lopez-Galiano, et al.Elife|August 23, 2017
Type III CRISPR-Cas systems can provide redundancy to counteract viral escape from type I systemsSukrit Silas, Patricia Lucas-Elio, Simon A Jackson, et al.Developmental Cell|December 10, 2014
A requirement for ERK-dependent Dicer phosphorylation in coordinating oocyte-to-embryo transition in C. elegansMelanie Drake, Tokiko Furuta, Kin Man Suen, et al.Journal of Immunology (Baltimore, Md. : 1950)|December 30, 2011
The inference of phased haplotypes for the immunoglobulin H chain V region gene loci by analysis of VDJ gene rearrangementsMarie J Kidd, Zhiliang Chen, Yan Wang, et al.Cell Reports|October 20, 2024
A genetic and microscopy toolkit for manipulating and monitoring regeneration in Macrostomum lignanoR Nelson Hall, Hongquan Li, Chew Chai, et al.Pageof 9