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Structure and binding properties of a cameloid nanobody raised against KDM5B

机译:对抗KDM5B的骆驼纳米体的结构和结合特性

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摘要

The histone demethylase KDM5B is considered to be a promising target for anticancer therapy. Single-chain antibodies from llama (nanobodies) have been raised to aid in crystallization and structure determination of this enzyme. The antigen-binding properties of 15 of these nanobodies have been characterized. The crystal structure of one of these (NB17) has been determined to a resolution of 1.85 Å. NB17 crystallizes in space group P4322 with six molecules in the asymmetric unit. The six molecules in the asymmetric unit pack as an entity with approximate D3 symmetry with interactions mediated by the CDR loops, which could act as a crystallization nucleus. NB17 does not bind to monomeric KDM5B residues 1–820, but is found to bind to aggregates formed after incubation at 310 K.
机译:组蛋白脱甲基酶KDM5B被认为是抗癌治疗的有希望的目标。来自美洲驼(纳米抗体)的单链抗体已经被提出来帮助这种酶的结晶和结构确定。已经表征了这些纳米抗体中的15种的抗原结合特性。其中一种(NB17)的晶体结构已确定为1.85Å的分辨率。 NB17在空间群P4322中以不对称单元中的六个分子结晶。不对称单元中的六个分子以具有近似D3对称性的实体堆积,并具有由CDR环介导的相互作用,这可以充当结晶核。 NB17不结合单体KDM5B残基1–820,但被发现结合于310 K孵育后形成的聚集体。

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