Title : A "turn-on" fluorescent microbead sensor for detecting nitric oxide.

Pub. Date : 2015

PMID : 25565808






5 Functional Relationships(s)
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Compound Name
Protein Name
Organism
1 Microbeads are infused with the fluorophore, dansyl-piperazine (Ds-pip), and quenched when the fluorophore is coordinated with a rhodium (Rh)-complex, ie, Rh2(AcO(-))4(Ds-pip). Rhodium prolactin induced protein Homo sapiens
2 Microbeads are infused with the fluorophore, dansyl-piperazine (Ds-pip), and quenched when the fluorophore is coordinated with a rhodium (Rh)-complex, ie, Rh2(AcO(-))4(Ds-pip). Rhodium prolactin induced protein Homo sapiens
3 According to the binding energy calculation, NO molecules bind more strongly and rapidly with the Rh-core of the Rh-complex than with Ds-pip. Rhodium prolactin induced protein Homo sapiens
4 This suggests that NO can bond strongly with the Rh-core and replace Ds-pip, even though Ds-pip is already near the Rh-core. Rhodium prolactin induced protein Homo sapiens
5 Further, we confirm that the Rh-complex with the Ds-pip structure has too small an energy gap to give off visible light from the highest unoccupied molecular orbital/lowest unoccupied molecular orbital energy level. Rhodium prolactin induced protein Homo sapiens