Research map: Epigenetic regulation of kidney development
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Papers in this map
Comprehensive Integration of Single-Cell Data
· Tim Stuart · 2019 · 17513 citations · Cited by this paper
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· Rudolf Jaenisch · 2003 · 6397 citations · Cited by this paper
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· Masaki Okano · 1999 · 6196 citations · Cited by this paper
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· B Bernstein · 2006 · 5532 citations · Cited by this paper
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· Ru Cao · 2002 · 3861 citations · Cited by this paper
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· Jason Daniel Buenrostro · 2015 · 3742 citations · Cited by this paper
Large language models in healthcare
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DNA methylation: roles in mammalian development
· Zachary D. Smith · 2013 · 3164 citations · Cited by this paper
Mental health and kidney disease
· 2026 · Related
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· Adrian Peter Bird · 2007 · 3012 citations · Cited by this paper
Disease modification in lupus nephritis: towards a pathophysiology-based treatment paradigm
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The molecular hallmarks of epigenetic control
· C. David Allis · 2016 · 2925 citations · Cited by this paper
Kidney organoids from human iPS cells contain multiple lineages and model human nephrogenesis
· Minoru Takasato · 2015 · 1664 citations · Cited by this paper
Joint profiling of chromatin accessibility and gene expression in thousands of single cells
· Junyue Cao · 2018 · 1065 citations · Cited by this paper
Regulation of nucleosome dynamics by histone modifications
· Gabriel E. Zentner · 2013 · 943 citations · Cited by this paper
Chromatin structure and the inheritance of epigenetic information
· Raphaël Margueron · 2010 · 757 citations · Cited by this paper
The Polycomb Ezh2 methyltransferase regulates muscle gene expression and skeletal muscle differentiation
· Giuseppina Caretti · 2004 · 613 citations · Cited by this paper
Genome-wide Chromatin State Transitions Associated with Developmental and Environmental Cues
· Jiang Zhu · 2013 · 569 citations · Cited by this paper
Six2 is required for suppression of nephrogenesis and progenitor renewal in the developing kidney
· Michelle Self · 2006 · 511 citations · Cited by this paper
Ezh2, the histone methyltransferase of PRC2, regulates the balance between self-renewal and differentiation in the cerebral cortex
· João D. Pereira · 2010 · 484 citations · Cited by this paper
Renal abnormalities and their developmental origin
· Andreas Schedl · 2007 · 396 citations · Cited by this paper
Development of the Mammalian Kidney
· Andrew P. McMahon · 2016 · 340 citations · Cited by this paper
FGF9 and FGF20 Maintain the Stemness of Nephron Progenitors in Mice and Man
· Hila Barak · 2012 · 336 citations · Cited by this paper
Cessation of renal morphogenesis in mice
· Heather A. Hartman · 2007 · 319 citations · Cited by this paper
PRC2 is high maintenance
· Jia-Ray Yu · 2019 · 285 citations · Cited by this paper
Six2 and Wnt Regulate Self-Renewal and Commitment of Nephron Progenitors through Shared Gene Regulatory Networks
· Joo‐Seop Park · 2012 · 278 citations · Cited by this paper
Multi-omics integration in the age of million single-cell data
· Zhen Miao · 2021 · 270 citations · Cited by this paper
Chromatin remodeling and bivalent histone modifications in embryonic stem cells
· Arigela Harikumar · 2015 · 263 citations · Cited by this paper
Identification of a Multipotent Self-Renewing Stromal Progenitor Population during Mammalian Kidney Organogenesis
· Akio Kobayashi · 2014 · 257 citations · Cited by this paper
DNA Methylation and Differentiation: Silencing, Upregulation and Modulation of Gene Expression
· Melanie Ehrlich · 2013 · 243 citations · Cited by this paper
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