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Neuronal nitric oxide synthase : a biomarker for Alzheimers disease : interaction of neuronal nitric oxide synthase with beta-amyloid peptides in the brain

机译:神经元型一氧化氮合酶:阿尔茨海默病的生物标志物:神经元型一氧化氮合酶与脑内β-淀粉样蛋白肽的相互作用

摘要

High levels of the amino acid arginine and low levels of the product citrulline in the cerebrospinal fluid of Alzheimer's patients could mean that there is a decrease in the enzymes that metabolize this amino acid. One such enzyme is neuronal nitric oxide synthase (nNOS). In this study, neuronal nitric oxide synthase (nNOS), sourced from bovine brain was extracted and concentrated using two methods of precipitation: poly (ethylene glycol) 20 000 (PEG) and ammonium sulphate [(NH₄)₂S0₄). These two techniques gave no increase in yield nor fold purification and hence were abandoned in favour of ion exchange chromatography by DEAE-Sepharose. The enzyme was then successfully purified by anion-exchange and after dialysis produced a 38% yield and three fold purification and yielded the highest specific activity of 2.27 U/mg. Neuronal nitric oxide synthase (nNOS) was a heterodimeric protein with a total molecular mass of ± 225 kDa (95 and 130 kDa monomers). The temperature and pH optima of the enzyme were 40⁰C and 6.5, respectively. The kinetic parameters (KM and Vmax) of nNOS were 70 μM and 0.332 μmol.min⁻¹, respectively. Moreover neuronal nitric oxide synthase (nNOS) was relatively stable at 40⁰C (t½ = 3 h). It was also confirmed that β-amyloid peptides inhibited nNOS when bound to the enzyme and that nNOS behaved as a catalyst in fibril formation through association-dissociation between enzyme and β-amyloid peptide. It was further shown that Aβ₁₇₋₂₈ inhibited nNOS the most with a Ki of 1.92 μM and also had the highest Stern-Volmer value (Ksv) of 0.11 μM⁻¹ indicating tight binding affinity to nNOS and easier accessibility to fluor molecules during binding. Congo red, turbidity, thioflavin-T assays and transmission electron microscopy were successfully used to detect and visualize the presence of fibrils by studying the process of fibrillogenesis. Computerized molecular modeling successfully studied protein dynamics and conformational changes of nNOS. These results correlated with resonance energy transfer (FRET) results which revealed the distance of tryptophan residues from the arginine bound at enzyme active site. Both the aforementioned techniques revealed that in the natural state of the enzyme with arginine bound at the active site, the tryptophan residues (TRP₆₂₅ and TRP₇₂₁) were positioned at the surface of the enzyme 28 Å away from the active site. When the amyloid peptide (Aβ₁₇₋₂₈) was bound to the active site, these same two amino acids moved 14 Å closer to the active site. A five residue hydrophobic fragment Aβ₁₇₋₂₁ [Leu₁₇ - Val₁₈ - Phe₁₉ - Phe₂₀ - Ala₁] within Aβ₁₇₋₂₈ was shown by computer modeling to be critical to the binding of the peptide to the active site of nNOS.
机译:阿尔茨海默氏病患者脑脊液中的氨基酸精氨酸含量高而产品瓜氨酸的含量低,可能意味着代谢该氨基酸的酶减少了。一种这样的酶是神经元一氧化氮合酶(nNOS)。在这项研究中,使用两种沉淀方法提取和浓缩了源自牛脑的神经元一氧化氮合酶(nNOS):聚(乙二醇)20000(PEG)和硫酸铵[(NH 3)2 SO 4]。这两种技术均未增加收率或纯化倍数,因此被DEAE-Sepharose放弃了离子交换色谱法。然后通过阴离子交换成功地纯化了该酶,并且在透析后产生了38%的收率和3倍的纯化,并产生了2.27 U / mg的最高比活。神经元一氧化氮合酶(nNOS)是一种异二聚体蛋白,总分子量为±225 kDa(95和130 kDa单体)。该酶的最适温度和最适pH分别为40°C和6.5。 nNOS的动力学参数(KM和Vmax)分别为70μM和0.332μmol·min -1。此外,神经元一氧化氮合酶(nNOS)在40°C时相对稳定(t1 / 2 = 3 h)。还证实了β-淀粉样蛋白肽当与酶结合时抑制nNOS,并且nNOS通过酶与β-淀粉样蛋白肽之间的缔合解离而在原纤维形成中充当催化剂。进一步表明,Aβ12+对nNOS的抑制最大,Ki为1.92μM,最高的斯特恩-沃尔默值(Ksv)为0.11μM-1,表明与nNOS的结合亲和力强,在结合过程中更容易接近氟分子。通过研究原纤维形成的过程,刚果红,浊度,硫黄素-T分析和透射电子显微镜已成功用于检测和可视化原纤维的存在。计算机分子建模成功地研究了nNOS的蛋白质动力学和构象变化。这些结果与共振能量转移(FRET)结果相关,该结果揭示了色氨酸残基与精氨酸结合在酶活性位点之间的距离。上述两种技术都表明,在精氨酸结合在活性位点的酶的天然状态下,色氨酸残基(TRP 12+和TRP 12+)位于酶表面上距活性位点28Å。当淀粉样肽(Aβ12)结合到活性位点时,这两个相同的氨基酸向活性位点移动了14Å。计算机模拟显示,Aβ12中的五个残基的疏水片段Aβ12-[Leu + -Val--Phe 1 -Phe 2 -Ala 3]对肽与nNOS活性位点的结合至关重要。

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    Padayachee Eden Rebecca;

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  • 年度 2013
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  • 正文语种 English
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