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Crystallization and preliminary crystallographic analysis of human muscle phosphofructokinase the main regulator of glycolysis

机译:人肌肉磷酸果糖激酶(糖酵解的主要调节剂)的结晶和初步晶体学分析

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摘要

Whereas the three-dimensional structure and the structural basis of the allosteric regulation of prokaryotic 6-phosphofructokinases (Pfks) have been studied in great detail, knowledge of the molecular basis of the allosteric behaviour of the far more complex mammalian Pfks is still very limited. The human muscle isozyme was expressed heterologously in yeast cells and purified using a five-step purification protocol. Protein crystals suitable for diffraction experiments were obtained by the vapour-diffusion method. The crystals belonged to space group P6222 and diffracted to 6.0 Å resolution. The 3.2 Å resolution structure of rabbit muscle Pfk (rmPfk) was placed into the asymmetric unit and optimized by rigid-body and group B-factor refinement. Interestingly, the tetrameric enzyme dissociated into a dimer, similar to the situation observed in the structure of rmPfk.
机译:尽管已经对原核6-磷酸果糖激酶(Pfks)的变构调节的三维结构和结构基础进行了详细研究,但对复杂得多的哺乳动物Pfks的变构行为的分子基础的了解仍然非常有限。人肌肉同工酶在酵母细胞中异源表达,并使用五步纯化方案纯化。通过蒸气扩散法获得了适合于衍射实验的蛋白质晶体。晶体属于空间群P6222,并衍射至6.0Å分辨率。将兔肌肉Pfk(rmPfk)的3.2Å分辨率结构放入不对称单元中,并通过刚体和B组因子细化进行优化。有趣的是,四聚酶解离为二聚体,类似于在rmPfk结构中观察到的情况。

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