Title : The homologous Arabidopsis MRS2/MGT/CorA-type Mg2+ channels, AtMRS2-10 and AtMRS2-1 exhibit different aluminum transport activity.

Pub. Date : 2018 Nov

PMID : 30409514






10 Functional Relationships(s)
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1 The homologous Arabidopsis MRS2/MGT/CorA-type Mg2+ channels, AtMRS2-10 and AtMRS2-1 exhibit different aluminum transport activity. Aluminum magnesium transporter 1 Arabidopsis thaliana
2 Direct measurement using the fluorescent dye mag-fura-2 revealed that reconstituted AtMRS2-10 and AtMRS2-1 mediated rapid Mg2+ uptake into proteoliposomes. 2-(2-(5-carboxy)oxazole)-5-hydroxy-6-aminobenzofuran-N,N,O-triacetic acid magnesium transporter 1 Arabidopsis thaliana
3 Direct measurement using the fluorescent dye mag-fura-2 revealed that reconstituted AtMRS2-10 and AtMRS2-1 mediated rapid Mg2+ uptake into proteoliposomes. magnesium ion magnesium transporter 1 Arabidopsis thaliana
4 The rapid Mg2+ uptake through AtMRS2-10 was inhibited by aluminum. magnesium ion magnesium transporter 1 Arabidopsis thaliana
5 The rapid Mg2+ uptake through AtMRS2-10 was inhibited by aluminum. Aluminum magnesium transporter 1 Arabidopsis thaliana
6 An assay using the Al-sensitive dye morin indicated Al uptake into the proteoliposomes through AtMRS2-10. Aluminum magnesium transporter 1 Arabidopsis thaliana
7 An assay using the Al-sensitive dye morin indicated Al uptake into the proteoliposomes through AtMRS2-10. Aluminum magnesium transporter 1 Arabidopsis thaliana
8 AtMRS2-10 also exhibited Ni2+ transport activity but almost no Co2+ transport activity. Nickel(2+) magnesium transporter 1 Arabidopsis thaliana
9 The results suggested that AtMRS2-10 transported Al into the E. coli cells, and then the transported Al inhibited the growth of E. coli. Aluminum magnesium transporter 1 Arabidopsis thaliana
10 The results suggested that AtMRS2-10 transported Al into the E. coli cells, and then the transported Al inhibited the growth of E. coli. Aluminum magnesium transporter 1 Arabidopsis thaliana