首页> 美国卫生研究院文献>Acta Crystallographica Section F: Structural Biology and Crystallization Communications >Purification crystallization and preliminary X-ray crystallographic analysis of the ATPase domain of human TAP in nucleotide-free and ADP- vanadate- and azide-complexed forms
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Purification crystallization and preliminary X-ray crystallographic analysis of the ATPase domain of human TAP in nucleotide-free and ADP- vanadate- and azide-complexed forms

机译:纯化结晶和初步X射线晶体学分析人TAP的ATPase域的无核苷酸形式以及ADP钒酸盐和叠氮化物复合形式

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摘要

The human transporter associated with antigen processing (TAP) protein belongs to the ATP-binding cassette (ABC) transporter superfamily and is formed by the heterodimerization of TAP1 and TAP2 subunits. TAP selectively pumps cytosolic peptides into the lumen of the endoplasmic reticulum in an ATP-dependent manner. The catalytic cycle of the ATPase domain of TAP is not understood at the molecular level. The structures of catalytic intermediates of the ATPase domain of TAP will contribute to the understanding of the chemical mechanism of ATP hydrolysis. In order to understand this mechanism, the ATPase domain of human TAP1 (NBD1) was expressed and purified, crystallized in nucleotide-free and transition-state complex forms and X-ray crystallographic studies were performed. The NBD1 protein was crystallized (i) in the nucleotide-free apo form; (ii) in complex with ADP–Mg2+, mimicking the product-bound state; (iii) in complex with vanadate–ADP–Mg2+, mimicking the ATP-bound state; and (iv) in complex with azide–ADP–Mg2+, also mimicking the ATP-bound state. X-ray diffraction data sets were collected for apo and complexed NBD1 using an in-house X-ray diffraction facility at a wavelength of 1.5418 Å. The apo and complexed NBD1 crystals belonged to the primitive hexagonal space group P62, with one monomer in the asymmetric unit. Here, the crystallization, data collection and preliminary crystallographic analysis of apo and complexed NBD1 are reported.
机译:与抗原加工(TAP)蛋白相关的人类转运蛋白属于ATP结合盒(ABC)转运蛋白超家族,由TAP1和TAP2亚基的异源二聚化形成。 TAP以ATP依赖性方式选择性地将胞质肽泵入内质网腔。 TAP的ATPase结构域的催化循环在分子水平上尚不清楚。 TAP ATPase结构域的催化中间体的结构将有助于理解ATP水解的化学机理。为了理解该机制,表达并纯化了人TAP1(NBD1)的ATPase结构域,使其以无核苷酸和过渡态的复合物形式结晶,并进行了X射线晶体学研究。 NBD1蛋白结晶为(i)无核苷酸载脂蛋白形式; (ii)与ADP–Mg 2 + 形成复合物,模仿产物结合状态; (iii)与钒酸盐-ADP-Mg 2 + 复合,模仿ATP结合态; (iv)与叠氮化物–ADP–Mg 2 + 形成复合物,也模仿ATP结合状态。使用内部X射线衍射仪在1.5418的波长下收集载脂蛋白和复合NBD1的X射线衍射数据集。载脂蛋白和复合NBD1晶体属于原始六边形空间群P62,其中一个单体位于不对称单元中。在此,报告了载脂蛋白和复合NBD1的结晶,数据收集和初步晶体学分析。

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