Title : The copper transporter RAN1 is essential for biogenesis of ethylene receptors in Arabidopsis.

Pub. Date : 2010 Nov 26

PMID : 20876528






8 Functional Relationships(s)
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1 An independent study indicated that the ran1 mutants, which display ethylene-like responses to the ethylene antagonist trans-cyclooctene, have mutations in the RAN1 copper-transporting P-type ATPase, once again linking copper ions to the ethylene-response pathway. ethylene copper-exporting ATPase / responsive-to-antagonist 1 / copper-transporting ATPase (RAN1) Arabidopsis thaliana
2 An independent study indicated that the ran1 mutants, which display ethylene-like responses to the ethylene antagonist trans-cyclooctene, have mutations in the RAN1 copper-transporting P-type ATPase, once again linking copper ions to the ethylene-response pathway. ethylene copper-exporting ATPase / responsive-to-antagonist 1 / copper-transporting ATPase (RAN1) Arabidopsis thaliana
3 An independent study indicated that the ran1 mutants, which display ethylene-like responses to the ethylene antagonist trans-cyclooctene, have mutations in the RAN1 copper-transporting P-type ATPase, once again linking copper ions to the ethylene-response pathway. ethylene copper-exporting ATPase / responsive-to-antagonist 1 / copper-transporting ATPase (RAN1) Arabidopsis thaliana
4 An independent study indicated that the ran1 mutants, which display ethylene-like responses to the ethylene antagonist trans-cyclooctene, have mutations in the RAN1 copper-transporting P-type ATPase, once again linking copper ions to the ethylene-response pathway. ethylene copper-exporting ATPase / responsive-to-antagonist 1 / copper-transporting ATPase (RAN1) Arabidopsis thaliana
5 An independent study indicated that the ran1 mutants, which display ethylene-like responses to the ethylene antagonist trans-cyclooctene, have mutations in the RAN1 copper-transporting P-type ATPase, once again linking copper ions to the ethylene-response pathway. ethylene copper-exporting ATPase / responsive-to-antagonist 1 / copper-transporting ATPase (RAN1) Arabidopsis thaliana
6 An independent study indicated that the ran1 mutants, which display ethylene-like responses to the ethylene antagonist trans-cyclooctene, have mutations in the RAN1 copper-transporting P-type ATPase, once again linking copper ions to the ethylene-response pathway. ethylene copper-exporting ATPase / responsive-to-antagonist 1 / copper-transporting ATPase (RAN1) Arabidopsis thaliana
7 Additionally, transformation of the Deltaccc2 mutant yeast with RAN1 rescued ethylene-binding activity. ethylene copper-exporting ATPase / responsive-to-antagonist 1 / copper-transporting ATPase (RAN1) Arabidopsis thaliana
8 Analysis of plants carrying loss-of-function mutations in ran1 showed that they lacked ethylene-binding activity, whereas seedlings carrying weak alleles of ran1 had normal ethylene-binding activity but were hypersensitive to copper-chelating agents. ethylene copper-exporting ATPase / responsive-to-antagonist 1 / copper-transporting ATPase (RAN1) Arabidopsis thaliana