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Author Details

James L Engel
David Geffen School of Medicine, University of California los angeles
2009
16
12
Andrej Sali (CM4AI)
PMIDPaper TitleJournal TitlePublished Year
37425707Single Cell Multi-Omics of an iPSC Model of Human Sinoatrial Node Development Reveals Genetic Determinants of Heart Rate and Arrhythmia Susceptibility.bioRxiv2023
33744937Isolation and characterization of human embryonic stem cell-derived heart field-specific cardiomyocytes unravels new insights into their transcriptional and electrophysiological profiles.Cardiovasc Res2022
29731772Direct Cardiac Reprogramming: Progress and Promise.Stem Cells Int2018
30498748Sendai virus based direct cardiac reprogramming: what lies ahead?Stem Cell Investig2018
29467410Analysis of cardiomyocyte clonal expansion during mouse heart development and injury.Nat Commun2018
28292943Molecular Details Underlying Dynamic Structures and Regulation of the Human 26S Proteasome.Mol Cell Proteomics2017
26771355CD13 and ROR2 Permit Isolation of Highly Enriched Cardiac Mesoderm from Differentiating Human Embryonic Stem Cells.Stem Cell Reports2016
26582908Magnetic Resonance Imaging of Iron Oxide-Labeled Human Embryonic Stem Cell-Derived Cardiac Progenitors.Stem Cells Transl Med2016
26091039A Single Kinase Generates the Majority of the Secreted Phosphoproteome.Cell2015
24706917Dynamic regulation of FGF23 by Fam20C phosphorylation, GalNAc-T3 glycosylation, and furin proteolysis.Proc Natl Acad Sci U S A2014
23293031Identification of a mammalian-type phosphatidylglycerophosphate phosphatase in the Eubacterium Rhodopirellula baltica.J Biol Chem2013
22582013Secreted kinase phosphorylates extracellular proteins that regulate biomineralization.Science2012
21730175Structural and functional analysis of PTPMT1, a phosphatase required for cardiolipin synthesis.Proc Natl Acad Sci U S A2011
21949367UBLCP1 is a 26S proteasome phosphatase that regulates nuclear proteasome activity.Proc Natl Acad Sci U S A2011
21641550Mitochondrial phosphatase PTPMT1 is essential for cardiolipin biosynthesis.Cell Metab2011
19346252A family of bacterial cysteine protease type III effectors utilizes acylation-dependent and -independent strategies to localize to plasma membranes.J Biol Chem2009
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The Salk Institute for Biological Studies
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