首页> 外文期刊>Analytical chemistry >HNE Michael Adducts to Histidine and Histidine-Containing Peptides as Biomarkers of Lipid-Derived Carbonyl Stress in Urines: LC-MS/MS Profiling in Zucker Obese Rats
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HNE Michael Adducts to Histidine and Histidine-Containing Peptides as Biomarkers of Lipid-Derived Carbonyl Stress in Urines: LC-MS/MS Profiling in Zucker Obese Rats

机译:HNE迈克尔加成组氨酸和含组氨酸的肽作为尿液中脂质衍生的羰基应激的生物标志物:祖克肥胖大鼠的LC-MS / MS分析

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A new liquid chromatography-tandem mass spectromet-ric (LC-MS/MS) approach, based on the precursor ion scanning technique using a triple-stage quadrupole, has been developed to detect free and protein-bound histidine (His) residues modified by reactive carbonyl species (RCS) generated by lipid peroxidation. This approach has been applied to urines from Zucker obese rats, a nondia-betic animal model characterized by obesity and hyper-lipidemia, where RCS formation plays a key role in the development of renal and cardiac dysfunction. The im-monium ion of His at m/z 110 was used as a specific product ion of His-containing peptides to generate precursor ion spectra, followed by MS~2 acquisitions of each precursor ion of interest for structural characterization. By this approach, three novel adducts, which are excreted in free form only, have been identified, two of them originating from the conjugation of 4-hydroxy-trans-2-nonenal (HNE) to His, followed by reduction/oxidation of the aldehyde: His-1,4-dihydroxynonane (His-DHN), His-4-hydroxynonanoic acid (His-HNA), and carnosine-HNE, this last recognized in previous in vitro studies as a new potential biomarker of carbonyl stress. No free His— HNE was found in urines, which was detected only in protein hydrolysates. The same LC-MS/MS method, working in multiple reaction monitoring (MRM) mode, has been developed, validated, and applied to quantitatively profile in Zucker urines both conventional (1,4-dihydroxynonane mercapturic acid, DHN-MA) and the newly identified adducts, except His-HNA. The analytes were separated on a C12 reversed-phase column by gradient elution from 100% A (water containing 5 mM nonafluoropentanoic acid) to 80% B (acetonitrile) in 24 min at a flow rate of 0.2 mL/min and analyzed for quantification in MRM mode by applying the following precursor-to-product ion transitions m/z 322.2 -> 164.1 + 130.1 (DHN-MA), m/z 314.7->268.2 + 110.1 (His-DHN), m/z 312.2 -> 110.1 + 156.0 (His-HNE), m/z 383.1 -> 266.2 + 110.1 (CAR-HNE), m/z 319.2 -> 301.6 + 156.5 (H-Tyr-His-OH, internal standard). Precision and accuracy data, as well as the lower limits of quantification in urine, were highly satisfactory (from 0.01 nmol/mL for CAR-HNE, His-DHN, His-HNE, to 0.075 nmol/mL for DHN-MA). The method, applied to evaluate for the first time the advanced lipoxidation end products profile in urine from obese Zucker rats, an animal model for the metabolic syndrome, has proved to be suitable and sensitive enough for testing in vivo the carbonyl quenching ability of newly developed RCS sequestering agents.
机译:一种基于液相色谱-串联质谱(LC-MS / MS)的新方法,基于使用三级四极杆的前驱体离子扫描技术,已经开发出可检测游离的和结合了蛋白质的组氨酸(His)残基的方法脂质过氧化作用产生的反应性羰基物质(RCS)。此方法已应用于Zucker肥胖大鼠的尿液,这是一种以肥胖和高脂血症为特征的非糖尿病动物模型,其中RCS的形成在肾脏和心脏功能障碍的发展中起关键作用。 His在m / z 110处的铵离子用作含His的肽的特定产物离子,以生成前体离子光谱,然后通过MS〜2采集每个目的前体离子进行结构表征。通过这种方法,已鉴定出三种仅以游离形式排泄的新颖加合物,其中两种源自4-羟基-反式-2-壬烯醛(HNE)与His的缀合,然后还原/氧化醛:His-1,4-二羟基壬烷(His-DHN),His-4-羟基壬酸(His-HNA)和肌肽HNE,在先前的体外研究中最后被认为是羰基应激的一种新的潜在生物标记。在尿液中未发现游离的His- HNE,仅在蛋白质水解物中检测到。已开发,验证并以相同的LC-MS / MS方法在多反应监测(MRM)模式下工作,并将其应用于Zucker尿液中常规(1,4-二羟基壬烷巯基乙酸,DHN-MA)和新发现的加合物,但His-HNA除外。通过在24分钟内以0.2 mL / min的流速从100%A(含5 mM九氟戊酸的水)到80%B(乙腈)的梯度洗脱,在C12反相柱上分离分析物,并在通过应用以下前体-产物离子跃迁的MRM模式m / z 322.2-> 164.1 + 130.1(DHN-MA),m / z 314.7-> 268.2 + 110.1(His-DHN),m / z 312.2-> 110.1 + 156.0(His-HNE),m / z 383.1-> 266.2 + 110.1(CAR-HNE),m / z 319.2-> 301.6 + 156.5(H-Tyr-His-OH,内标)。精确度和准确性数据以及尿液中的定量下限非常令人满意(从CAR-HNE,His-DHN,His-HNE的0.01 nmol / mL到DHN-MA的0.075 nmol / mL)。该方法首次用于评估肥胖Zucker大鼠(代谢综合征的动物模型)尿液中的高级脂氧化终产物谱,已被证明足够合适且灵敏,足以在体内测试新开发的羰基猝灭能力。 RCS隔离代理。

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