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首页> 外文期刊>Journal of Molecular Biology >Probing dimerization and structural flexibility of mammalian lipoxygenases by small-angle X-ray scattering.
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Probing dimerization and structural flexibility of mammalian lipoxygenases by small-angle X-ray scattering.

机译:通过小角度X射线散射探测哺乳动物脂氧合酶的二聚化和结构柔性。

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Human lipoxygenases (LOXs) and their metabolites have a great impact on human homeostasis and are of interest for targeted drug design. This goal requires detailed knowledge of their structures and an understanding of structure-function relationship. At the moment, there are two complete crystal structures for mammalian LOX [rabbit 12/15LOX (r-12/15LOX) and human 5LOX (h-5LOX)] and a fragment of human 12LOX. The low-resolution structures in solution for various LOX isoforms have brought about controversial results. Here we explored the behavior of r-12/15LOX in aqueous solution under different conditions (salt and pH) by small-angle X-ray scattering (SAXS) and compared it with human platelet-type 12S-LOX (hp-12LOX) and h-5LOX. Thermodynamic calculations concerning the stability of molecular assemblies, thermal motion analysis [TLSMD (translation, libration, and screw rotation motion detection based on crystallographic temperature factor B(j))], and results of SAXS analyses brought about the following conclusions: (i) in contrast to its crystal structure, r-12/15LOX functions as a monomer that dominates in solution; (ii) it dimerizes at higher protein concentrations in the presence of salt and with increasing degree of motional freedom of the N-terminal PLAT domain, as suggested by the Y98,614-->R double mutant; (iii) in aqueous solutions, hp-12LOX is stable as a dimer, in contrast to h-5LOX and r-12/15LOX, which are monomeric; and (iv) all three mammalian isozymes show a high level of flexibility not only for the PLAT domain but also for other subdomains of the catalytic part in TLS (translation, libration, and screw rotation) analysis and hp-12LOX in SAXS.
机译:人脂氧合酶(LOXs)及其代谢产物对人体内稳态具有很大影响,并且对于靶向药物设计具有重要意义。这个目标需要他们的结构的详细知识和对结构-功能关系的理解。目前,哺乳动物LOX [兔子12 / 15LOX(r-12 / 15LOX)和人5LOX(h-5LOX)]有两个完整的晶体结构,还有人12LOX的片段。各种LOX亚型在溶液中的低分辨率结构带来了有争议的结果。在这里,我们通过小角度X射线散射(SAXS)探索了r-12 / 15LOX在水溶液中在不同条件(盐和pH)下的行为,并将其与人血小板型12S-LOX(hp-12LOX)和h-5LOX。与分子组装的稳定性有关的热力学计算,热运动分析[TLSMD(基于晶体温度因子B(j)的平移,释放和螺杆旋转运动检测)和SAXS分析的结果得出以下结论:(i)与它的晶体结构相反,r-12 / 15LOX充当在溶液中起主导作用的单体。 (ii)如Y98,614-> R双突变体所暗示的那样,在盐存在下且N末端PLAT域的运动自由度增加时,它在较高的蛋白质浓度下二聚; (iii)在水溶液中,hp-12LOX作为二聚体是稳定的,而h-5LOX和r-12 / 15LOX是单体; (iv)这三种哺乳动物同工酶不仅在PLAT结构域中表现出很高的灵活性,而且在TLS(平移,解放和螺杆旋转)分析和SAXS中的hp-12LOX中也表现出催化部分的其他亚结构域。

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