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Abbreviation : HYL1
Long Form : HYPONASTIC LEAVES1
No. Year Title Co-occurring Abbreviation
2022 Arabidopsis AAR2, a conserved splicing factor in eukaryotes, acts in microRNA biogenesis. miRNAs, pri-miRNA
2022 Dynamic Phosphorylation of miRNA Biogenesis Factor HYL1 by MPK3 Involving Nuclear-Cytoplasmic Shuttling and Protein Stability in Arabidopsis. miRNAs, pri-miRNA
2022 Functional characterization of a 'plant-like' HYL1 homolog in the cnidarian Nematostella vectensis indicates a conserved involvement in microRNA biogenesis. Hyl1La, miRNAs
2022 HYL1-CLEAVAGE SUBTILASE 1 (HCS1) suppresses miRNA biogenesis in response to light-to-dark transition. COP1, DCL1, HCS1, miRNA, SE
2022 Unlocking the molecular basis of wheat straw composition and morphological traits through multi-locus GWAS. CeSa, GXM, ML-GWAS, QTNs
2021 Cytoplasmic HYL1 modulates miRNA-mediated translational repression. AGO1, miRNAs
2021 Direct Molecular Evidence for an Ancient, Conserved Developmental Toolkit Controlling Posttranscriptional Gene Regulation in Land Plants. DCL1, DSRMs, dsRNA
2020 Arabidopsis KETCH1 Is Critical for the Nuclear Accumulation of Ribosomal Proteins and Gametogenesis. RPs
2020 BcpLH organizes a specific subset of microRNAs to form a leafy head in Chinese cabbage (Brassica rapa ssp. pekinensis). miRNA
10  2020 HUA ENHANCER1 Mediates Ovule Development. ARF6, DCL1, HEN1, TF
11  2020 Hyponastic Leaves 1 protects pri-miRNAs from nuclear exosome attack. D-bodies, DCL1, miRNAs, pri-miRNAs
12  2020 mRNA adenosine methylase (MTA) deposits m6A on pri-miRNAs to modulate miRNA biogenesis in Arabidopsis thaliana. DCL1, m6A, miRNAs, MTA, mta, pri-miRNAs, TGH
13  2020 Strontium stress disrupts miRNA biogenesis by reducing HYL1 protein levels in Arabidopsis. miRNAs, pri-miRNAs, Sr
14  2020 The Intrinsically Disordered Protein CARP9 Bridges HYL1 to AGO1 in the Nucleus to Promote MicroRNA Activity. AGO, CARP9, miRNAs
15  2019 Alternative use of miRNA-biogenesis co-factors in plants at low temperatures. DCL1, miRNAs, SE
16  2019 Detection of MicroRNA Processing Intermediates Through RNA Ligation Approaches. DCL1, miRNA, SE
17  2018 A Quick HYL1-Dependent Reactivation of MicroRNA Production Is Required for a Proper Developmental Response after Extended Periods of Light Deprivation. miRNA
18  2018 Regulation of Plant Microprocessor Function in Shaping microRNA Landscape. DCL1, SE
19  2017 Arabidopsis thaliana miRNAs promote embryo pattern formation beginning in the zygote. DCL1, SE, WT
20  2017 HIGLE is a bifunctional homing endonuclease that directly interacts with HYL1 and SERRATE in Arabidopsis thaliana. DCL1, HIGLE, SE
21  2017 KETCH1 imports HYL1 to nucleus for miRNA biogenesis in Arabidopsis. miRNA, pri-miRNAs
22  2017 The Arabidopsis MOS4-Associated Complex Promotes MicroRNA Biogenesis and Precursor Messenger RNA Splicing. MAC, MIR, miRNA, pri-miRNA
23  2017 The Protein Phosphatase 4 and SMEK1 Complex Dephosphorylates HYL1 to Promote miRNA Biogenesis by Antagonizing the MAPK Cascade in Arabidopsis. miRNA, PP4
24  2016 Pre-microRNA processing activity in nuclear extracts from Arabidopsis suspension cells. DCL1, miRNAs, pri-miRNAs, SE
25  2015 KH domain protein RCF3 is a tissue-biased regulator of the plant miRNA biogenesis cofactor HYL1. DCL1, KH, miRNAs, RCF3
26  2015 The RNA-binding protein HOS5 and serine/arginine-rich proteins RS40 and RS41 participate in miRNA biogenesis in Arabidopsis. CPL1, FRY2, HOS5, pri-miRNA, SE
27  2014 COP1 E3 ligase protects HYL1 to retain microRNA biogenesis. COP1
28  2014 Homodimerization of HYL1 ensures the correct selection of cleavage sites in primary miRNA. DCL1, miRNA, pri-miRNA, SE
29  2014 MicroRNA biogenesis factor DRB1 is a phosphorylation target of mitogen activated protein kinase MPK3 in both rice and Arabidopsis. miRNA, pre-miRNAs, pri-mRNAs
30  2014 Structural determinants of Arabidopsis thaliana Hyponastic leaves 1 function in vivo. miRNAs, RNase III
31  2013 Complementation of HYPONASTIC LEAVES1 by double-strand RNA-binding domains of DICER-LIKE1 in nuclear dicing bodies. DCL1, DCL1, DCL1, dsRBDs, miRNAs, pri-miRNAs
32  2013 HYL1 is required for establishment of stamen architecture with four microsporangia in Arabidopsis. FIL, miRNA, REV
33  2013 NOT2 proteins promote polymerase II-dependent transcription and interact with multiple MicroRNA biogenesis factors in Arabidopsis. DCL1, miRNAs, NOT2, SE
34  2012 Fast-forward genetics identifies plant CPL phosphatases as regulators of miRNA processing factor HYL1. CPL1, DCL1, FRY2, miRNAs, SE
35  2012 The helicase and RNaseIIIa domains of Arabidopsis Dicer-Like1 modulate catalytic parameters during microRNA biogenesis. DCL1, miRNA, pri-miRNA
36  2012 The microRNA pathway genes AGO1, HEN1 and HYL1 participate in leaf proximal-distal, venation and stomatal patterning in Arabidopsis. AGO1, HEN1, icu8
37  2011 HYL1 regulates the balance between adaxial and abaxial identity for leaf flattening via miRNA-mediated pathways. miRNA
38  2010 Structure of Arabidopsis HYPONASTIC LEAVES1 and its molecular implications for miRNA processing. DCL1, HR1, TR2
39  2009 A dominant mutation in DCL1 suppresses the hyl1 mutant phenotype by promoting the processing of miRNA. DCL1, DCL1, miRNAs
40  2009 Histone acetyltransferase GCN5 interferes with the miRNA pathway in Arabidopsis. AGO1, DCL1, GCN5, miRNA, SE
41  2009 Transcriptome analyses revealed diverse expression changes in ago1 and hyl1 Arabidopsis mutants. AGO1, DCL1, miRNAs, pri-miRNAs
42  2008 Dual roles of the nuclear cap-binding complex and SERRATE in pre-mRNA splicing and microRNA processing in Arabidopsis thaliana. DCL1, miRNAs, pri-miRNAs, SE
43  2008 The RNA-binding proteins HYL1 and SE promote accurate in vitro processing of pri-miRNA by DCL1. DCL1, miRNA, SE
44  2007 Identification of nuclear dicing bodies containing proteins for microRNA biogenesis in living Arabidopsis plants. AGO1, BiFC, D-bodies, DCL1, dsRNA, miRNAs, pri, SE
45  2007 Location of a possible miRNA processing site in SmD3/SmB nuclear bodies in Arabidopsis. DCL1, miRNA, SE
46  2007 The N-terminal double-stranded RNA binding domains of Arabidopsis HYPONASTIC LEAVES1 are sufficient for pre-microRNA processing. dsRBDs, miRNA, NLS