Purification, crystallization, and preliminary X-ray diffraction study of purine nucleoside phosphorylase from E. coli
Yu. A. Abramchik, В. И. Тимофеев, Н. Е. Жухлистова, T. I. Muravieva, Р. С. Есипов, И. П. Куранова
Abstract
Yu. A. Abramchik, В. И. Тимофеев, Н. Е. Жухлистова, T. I. Muravieva, Р. С. Есипов, И. П. Куранова
Abstract
Crystals of E. coli purine nucleoside phosphorylase were grown in microgravity by the capillary counter-diffusion method through a gel layer. The X-ray diffraction data set suitable for the determination of the three-dimensional structure at atomic resolution was collected from one crystal at the Spring-8 synchrotron facility to 0.99 Å resolution. The crystals belong to sp. gr. P 2 1 and have the following unit-cell parameters: a = 74.1 Å, b = 110.2 Å, c = 88.2 Å, α = γ = 90°, β = 111.08°. The crystal contains six subunits of the enzyme comprising a hexamer per asymmetric unit. The hexamer is the biological active form of E. coli . purine nucleoside phosphorylase.
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Crystals of E. coli purine nucleoside phosphorylase were grown in microgravity by the capillary counter-diffusion method through a gel layer. The X-ray diffraction data set suitable for the determination of the three-dimensional structure at atomic resolution was collected from one crystal at the Spring-8 synchrotron facility to 0.99 Å resolution. The crystals belong to sp. gr. P 2 1 and have the following unit-cell parameters: a = 74.1 Å, b = 110.2 Å, c = 88.2 Å, α = γ = 90°, β = 111.08°. The crystal contains six subunits of the enzyme comprising a hexamer per asymmetric unit. The hexamer is the biological active form of E. coli . purine nucleoside phosphorylase.
Key concepts: Random hexamer, Purine nucleoside phosphorylase, Phosphorolysis, Crystallography, Crystallization, Chemistry, Purine, Nucleoside