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A quantitative hypermorphic CNGC allele confers ectopic calcium flux and impairs cellular development.


ABSTRACT: The coordinated control of Ca2+ signaling is essential for development in eukaryotes. Cyclic nucleotide-gated channel (CNGC) family members mediate Ca2+ influx from cellular stores in plants (Charpentier et al., 2016; Gao et al., 2016; Frietsch et al., 2007; Urquhart et al., 2007). Here, we report the unusual genetic behavior of a quantitative gain-of-function CNGC mutation (brush) in Lotus japonicus resulting in a leaky tetrameric channel. brush resides in a cluster of redundant CNGCs encoding subunits which resemble metazoan voltage-gated potassium (Kv1-Kv4) channels in assembly and gating properties. The recessive mongenic brush mutation impaired root development and infection by nitrogen-fixing rhizobia. The brush allele exhibited quantitative behavior since overexpression of the cluster subunits was required to suppress the brush phenotype. The results reveal a mechanism by which quantitative competition between channel subunits for tetramer assembly can impact the phenotype of the mutation carrier.

SUBMITTER: Chiasson DM 

PROVIDER: S-EPMC5716663 | biostudies-literature | 2017 Sep

REPOSITORIES: biostudies-literature

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A quantitative hypermorphic <i>CNGC</i> allele confers ectopic calcium flux and impairs cellular development.

Chiasson David M DM   Haage Kristina K   Sollweck Katharina K   Brachmann Andreas A   Dietrich Petra P   Parniske Martin M  

eLife 20170921


The coordinated control of Ca<sup>2+</sup> signaling is essential for development in eukaryotes. Cyclic nucleotide-gated channel (CNGC) family members mediate Ca<sup>2+</sup> influx from cellular stores in plants (Charpentier et al., 2016; Gao et al., 2016; Frietsch et al., 2007; Urquhart et al., 2007). Here, we report the unusual genetic behavior of a quantitative gain-of-function <i>CNGC</i> mutation (<i>brush</i>) in <i>Lotus japonicus</i> resulting in a leaky tetrameric channel. <i>brush</i>  ...[more]

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