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glutathione uv Ultraviolet absorption spectrum of in aqueous methanol In situ UV – Vis

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To obtain additional restraints for structural model determination of the p53 TAD2 -FOXO4 FH complex, we determined paramagnetic relaxation enhancements (PREs) for a set of 7 complexes containing spin-labeled (SL) samples ( 15 N-labeled FOXO4 FH + S46C-SL p53 TAD2 , 15 N-labeled FOXO4 FH + Q52C-SL p53 TAD2 , 15 N-labeled p53 TAD2 + Q112C-SL FOXO4 FH , 15 N-labeled p53 TAD2 + D140C-SL FOXO4 FH , 15 N-labeled p53 TAD2 + N145C-SL FOXO4 FH , 15 N-labeled p53 TAD2 + S159C-SL FOXO4 FH , 15 N-labeled p53 TAD2 + S162C-SL FOXO4 FH )

glutathione uv Ultraviolet absorption spectrum of in aqueous methanol In situ UV  Vis

molecular weight 300,000)

glutathione uv Ultraviolet absorption spectrum of in aqueous methanol In situ UV  Vis

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glutathione uv Ultraviolet absorption spectrum of in aqueous methanol In situ UV  Vis

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glutathione uv Ultraviolet absorption spectrum of in aqueous methanol In situ UV  Vis

The LC/MS portion of the platform was based on a Waters ACQUITY UPLC and a Thermo-Finnigan LTQ mass spectrometer, which consisted of an electrospray ionisation source and linear ion-trap mass analyser

glutathione uv Ultraviolet absorption spectrum of in aqueous methanol In situ UV  Vis

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