首页> 外文期刊>Journal of Applied Crystallography >Instrument and shielding design of a neutron diffractometer at J-PARC for protein crystallography covering crystals with large unit-cell volume1
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Instrument and shielding design of a neutron diffractometer at J-PARC for protein crystallography covering crystals with large unit-cell volume1

机译:J-PARC的中子衍射仪的仪器和屏蔽设计蛋白质晶体学覆盖具有大单位细胞体积的晶体1

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Structural information on hydrogen atoms and hydration water molecules obtained by neutron protein crystallography is expected to contribute to the elucidation and improvement of protein function. However, many proteins, especially membrane proteins and protein complexes, have large molecular weights and the unit cells of their crystals have large volumes, which are out of the range of unit-cell volumes measurable by conventional diffractometers because a large unit-cell volume causes difficulty in separating Bragg peaks close to each other in the spatial and time dimensions in diffraction images. Therefore, a new diffractometer has been designed at the Japan Accelerator Research Complex (J-PARC), which can measure crystals with a large unit-cell volume. The proposed diffractometer uses a large camera distance (L_2 = 800 mm) and more than 40 novel large-area detectors (larger than 320 × 320 mm). In addition, a decoupled hydrogen moderator, which has a narrow pulse width, is selected as the neutron source. This diffractometer is estimated to be able to measure crystals with a lattice length of 250 ? along each axis at d_(min) = 2.0 ? . Ellipsoidal and curved shapes were introduced in the vertical and horizontal guide designs, respectively, providing an estimated neutron flux of 6 × 10~5 n s~(-1) mm~(-2) in the wavelength range 1.5-5.5 ? .
机译:预期通过中子蛋白质结晶学获得的氢原子和水合水分子的结构信息有助于阐明和改善蛋白质功能。然而,许多蛋白质,尤其是膜蛋白和蛋白质复合物具有大的分子量,其晶体的单位细胞具有大容量,其超出常规衍射仪可测量的单细胞体积的范围,因为大单元细胞体积原因在衍射图像中的空间和时间尺寸中彼此分离彼此接近的布拉格峰的难度难以分离。因此,在日本加速器研究复合物(J-PARC)上设计了一种新的衍射仪,可以测量具有大单元电池体积的晶体。所提出的衍射仪使​​用大型相机距离(L_2 = 800 mm)和超过40个新型大面积探测器(大于320×320mm)。另外,选择具有窄脉冲宽度的去耦氢气调色剂作为中子源。估计该衍射仪能够测量晶格长度为250的晶体?沿D_(min)= 2.0的每个轴沿着每个轴? 。在垂直和水平导向器设计中引入椭圆形和弯曲形状,在波长范围为1.5-5.5中提供6×10〜5 n S〜(-1)mm〜(-2)的估计中子通量? 。

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