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Protein Arginine Deiminase 2 Binds Calcium in an OrderedFashion: Implications for Inhibitor Design

机译:蛋白精氨酸脱亚氨酶2以有序的方式结合钙时尚:对抑制剂设计的启示

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摘要

Protein arginine deiminases (PADs) are calcium-dependent histone-modifying enzymes whose activity is dysregulated in inflammatory diseases and cancer. PAD2 functions as an Estrogen Receptor (ER) coactivator in breast cancer cells via the citrullination of histone tail arginine residues at ER binding sites. Although an attractive therapeutic target, the mechanisms that regulate PAD2 activity are largely unknown, especially the detailed role of how calcium facilitates enzyme activation. To gain insights into these regulatory processes, we determined the first structures of PAD2 (27 in total), and through calcium-titrations by X-ray crystallography, determined the order of binding and affinity for the six calcium ions that bind and activate this enzyme. These structures also identified several PAD2 regulatory elements, including a calcium switch that controls proper positioning of the catalytic cysteine residue, and a novel active site shielding mechanism. Additional biochemical and mass-spectrometry-based hydrogen/deuterium exchange studies support these structural findings. The identification of multipleintermediate calcium-bound structures along the PAD2 activation pathwayprovides critical insights that will aid the development of allostericinhibitors targeting the PADs.
机译:精氨酸脱亚氨酶(PADs)是钙依赖性的组蛋白修饰酶,其活性在炎性疾病和癌症中失调。 PAD2通过在ER结合位点组蛋白尾部精氨酸残基的瓜氨酸化,在乳腺癌细胞中充当雌激素受体(ER)共激活剂。尽管是有吸引力的治疗靶标,但调节PAD2活性的机制尚不清楚,尤其是钙如何促进酶活化的详细作用。为了深入了解这些调节过程,我们确定了PAD2的第一个结构(总共27个),并通过X射线晶体学对钙进行了滴定,确定了结合和激活该酶的六个钙离子的结合顺序和亲和力。 。这些结构还确定了几种PAD2调控元件,包括控制催化半胱氨酸残基正确定位的钙开关,以及新型的活性位点屏蔽机制。其他基于生化和质谱的氢/氘交换研究支持了这些结构发现。多重识别PAD2激活途径的中间钙结合结构提供重要的见解,有助于变构的发展靶向PAD的抑制剂。

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