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Nucleic Acids Research|June 19, 2014
A gain-of-function mouse model identifies PRMT6 as a NF-κB coactivatorAlessandra Di Lorenzo, Yanzhong Yang, Marc Macaluso, et al.The Journal of Biological Chemistry|October 3, 2020
Genetic evidence for partial redundancy between the arginine methyltransferases CARM1 and PRMT6Donghang Cheng, Guozhen Gao, Alessandra Di Lorenzo, et al.Microbial Cell Factories|January 19, 2005
Characterization and performance of a toluene-degrading biofilm developed on pumice stonesAlessandra Di Lorenzo, Mario Varcamonti, Palma Parascandola, et al.Biomaterials Advances|May 25, 2026
Highlighting strain rate dependent vibrational behavior of electrospun bundles for tendon/ligament and enthesis fascicle tissue regenerationAlessandra Di Lorenzo, Tim Ten Brink, Gregorio Marchiori, et al.Cancer Research|October 25, 2018
Mouse Models of Overexpression Reveal Distinct Oncogenic Roles for Different Type I Protein Arginine MethyltransferasesJianqiang Bao, Alessandra Di Lorenzo, Kevin Lin, et al.Bioactive Materials|August 9, 2026
Defining biomaterial-driven design principles for bioabsorbable flow diverters: current state and perspectivesAlessandra Di Lorenzo, Amr F Mohamed, Benedetta Isella, et al.Scientific Reports|February 20, 2013
Loss of the major Type I arginine methyltransferase PRMT1 causes substrate scavenging by other PRMTsSurbhi Dhar, Vidyasiri Vemulapalli, Alexander N Patananan, et al.Molecular Cancer Research : MCR|October 18, 2019
PRMT6 Promotes Lung Tumor Progression via the Alternate Activation of Tumor-Associated MacrophagesSreedevi Avasarala, Pei-Ying Wu, Samia Q Khan, et al.Pageof 1