Related references
Note: Only part of the references are listed.Contributions of Individual Amino Acid Residues to the Endogenous CLV3 Function in Shoot Apical Meristem Maintenance in Arabidopsis
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Regulation of Arabidopsis Embryo and Endosperm Development by the Polypeptide Signaling Molecule CLE8
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WUSCHEL-RELATED HOMEOBOX5 Gene Expression and Interaction of CLE Peptides with Components of the Systemic Control Add Two Pieces to the Puzzle of Autoregulation of Nodulation
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Plant Stem Cell Signaling Involves Ligand-Dependent Trafficking of the CLAVATA1 Receptor Kinase
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Nematode CLE signaling in Arabidopsis requires CLAVATA2 and CORYNE
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The Clavata2 genes of pea and Lotus japonicus affect autoregulation of nodulation
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Characterization of a CLE processing activity
Jun Ni et al.
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Mechanisms of Molecular Mimicry of Plant CLE Peptide Ligands by the Parasitic Nematode Globodera rostochiensis
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PLANT PHYSIOLOGY (2011)
CLE genes may act in a variety of tissues/cells and involve other signaling cascades in addition to CLV3-WUS-like pathways
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The PXY-CLE41 receptor ligand pair defines a multifunctional pathway that controls the rate and orientation of vascular cell division
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RPK2 is an essential receptor-like kinase that transmits the CLV3 signal in Arabidopsis
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The Cysteine Pairs in CLV2 are Not Necessary for Sensing the CLV3 Peptide in Shoot and Root Meristems
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JOURNAL OF INTEGRATIVE PLANT BIOLOGY (2010)
TDIF Peptide Signaling Regulates Vascular Stem Cell Proliferation via the WOX4 Homeobox Gene in Arabidopsis
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The Arabidopsis Stem Cell Factor POLTERGEIST Is Membrane Localized and Phospholipid Stimulated
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Analysis of interactions among the CLAVATA3 receptors reveals a direct interaction between CLAVATA2 and CORYNE in Arabidopsis
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CLAVATA2 forms a distinct CLE-binding receptor complex regulating Arabidopsis stem cell specification
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Stem Cell Signaling in Arabidopsis Requires CRN to Localize CLV2 to the Plasma Membrane
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CLE Peptides Control Medicago truncatula Nodulation Locally and Systemically
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Comprehensive Analysis of CLE Polypeptide Signaling Gene Expression and Overexpression Activity in Arabidopsis
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PLANT PHYSIOLOGY (2010)
CLE14/CLE20 peptides may interact with CLAVATA2/CORYNE receptor-like kinases to irreversibly inhibit cell division in the root meristem of Arabidopsis
Ling Meng et al.
PLANTA (2010)
A Signaling Module Controlling the Stem Cell Niche in Arabidopsis Root Meristems
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CURRENT BIOLOGY (2009)
Structural and Functional Diversity of CLAVATA3/ESR (CLE)-Like Genes from the Potato Cyst Nematode Globodera rostochiensis
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A glycopeptide regulating stem cell fate in Arabidopsis thaliana
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Nod Factor/Nitrate-Induced CLE Genes that Drive HAR1-Mediated Systemic Regulation of Nodulation
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PLANT AND CELL PHYSIOLOGY (2009)
Dual assay for MCLV3 activity reveals structure-activity relationship of CLE peptides
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BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS (2008)
Bioinformatic analysis of the CLE signaling peptide family
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BMC PLANT BIOLOGY (2008)
The Receptor-Like Kinase SOL2 Mediates CLE Signaling in Arabidopsis
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PLANT AND CELL PHYSIOLOGY (2008)
The receptor kinase CORYNE of Arabidopsis transmits the stem cell-limiting signal CLAVATA3 independently of CLAVATA1
Ralf Mueller et al.
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Non-cell-autonomous control of vascular stem cell fate by a CLE peptide/receptor system
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PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA (2008)
Arabidopsis CLV3 peptide directly binds CLV1 ectodomain
Mari Ogawa et al.
SCIENCE (2008)
The CLE family of plant polypeptide signaling molecules
J. H. Jun et al.
CELLULAR AND MOLECULAR LIFE SCIENCES (2008)
Plant signalling peptides: some recent developments
Agata Bahyrycz et al.
JOURNAL OF PEPTIDE SCIENCE (2007)
Gain-of-function phenotypes of chemically synthetic CLAVATA3/ESR-related (CLE) peptides in Arabidopsis thaliana and Oryza sativa
Atsuko Kinoshita et al.
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Conserved factors regulate signalling in Arabidopsis thaliana shoot and root stem cell organizers
Ananda K. Sarkar et al.
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CLE peptide ligands and their roles in establishing meristems
Martijn Fiers et al.
CURRENT OPINION IN PLANT BIOLOGY (2007)
POL and PLL1 phosphatases are CLAVATA1 signaling intermediates required for Arabidopsis shoot and floral stem cells
Sang-Kee Song et al.
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Dodeca-CLE peptides as suppressors of plant stem cell differentiation
Yasuko Ito et al.
SCIENCE (2006)
A plant peptide encoded by CLV3 identified by in situ MALDI-TOF MS analysis
Tatsuhiko Kondo et al.
SCIENCE (2006)
The CLAVATA3/ESR motif of CLAVATA3 is functionally independent from the nonconserved flanking sequences
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PLANT PHYSIOLOGY (2006)
Gain-of-function phenotypes of many CLAVATA3/ESR genes, including four new family members, correlate with tandem variations in the conserved CLAVATA3/ESR domain
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PLANT PHYSIOLOGY (2006)
Evidence for functional conservation, sufficiency, and proteolytic processing of the CLAVATA3 CLE domain
J Ni et al.
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Peptide hormones in plants
Yoshikatsu Matsubayashi et al.
ANNUAL REVIEW OF PLANT BIOLOGY (2006)
The CLAVATA1-related BAM1, BAM2 and BAM3 receptor kinase-like proteins are required for meristem function in Arabidopsis
BJ DeYoung et al.
PLANT JOURNAL (2006)
The 14-amino acid CLV3, CLE19, and CLE40 peptides trigger consumption of the root meristem in Arabidopsis through a CLAVATA2-dependent pathway
M Fiers et al.
PLANT CELL (2005)
Root-specific CLE19 overexpression and the sol1/2 suppressors implicate a CLV-like pathway in the control of Arabidopsis root meristem maintenance
E Casamitjana-Martínez et al.
CURRENT BIOLOGY (2003)
Loss of CLE40, a protein functionally equivalent to the stem cell restricting signal CLV3, enhances root waving in Arabidopsis
M Hobe et al.
DEVELOPMENT GENES AND EVOLUTION (2003)
The Arabidopsis CLV3-like (CLE) genes are expressed in diverse tissues and encode secreted proteins
VK Sharma et al.
PLANT MOLECULAR BIOLOGY (2003)
A large family of genes that share homology with CLAVATA3
JM Cock et al.
PLANT PHYSIOLOGY (2001)
Signal peptide-selection of cDNA cloned directly from the esophageal gland cells of the soybean cyst nematode Heterodera glycines
XH Wang et al.
MOLECULAR PLANT-MICROBE INTERACTIONS (2001)
The stem cell population of Arabidopsis shoot meristems is maintained by a regulatory loop between the CLAVATA and WUSCHEL genes
H Schoof et al.
CELL (2000)