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首页> 外文期刊>Investigative ophthalmology & visual science >MALDI Imaging Mass Spectrometry Spatially Maps Age-Related Deamidation and Truncation of Human Lens Aquaporin-0
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MALDI Imaging Mass Spectrometry Spatially Maps Age-Related Deamidation and Truncation of Human Lens Aquaporin-0

机译:MALDI成像质谱在空间上映射与人类晶状体水通道蛋白-0年龄相关的脱酰胺基和截短

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Purpose: To spatially map human lens Aquaporin-0 (AQP0) protein modifications, including lipidation, truncation, and deamidation, from birth through middle age using matrix-assisted laser desorption ionization (MALDI) imaging mass spectrometry (IMS). Methods: Human lens sections were water-washed to facilitate detection of membrane protein AQP0. We acquired MALDI images from eight human lenses ranging in age from 2 months to 63 years. In situ tryptic digestion was used to generate peptides of AQP0 and peptide images were acquired on a 15T Fourier transform ion cyclotron resonance (FTICR) mass spectrometer. Peptide extracts were analyzed by liquid chromatographya??tandem mass spectrometry (LC-MS/MS) and database searched to identify peptides observed in MALDI imaging experiments. Results: Unmodified, truncated, and fatty acida??acylated forms of AQP0 were detected in protein imaging experiments. Full-length AQP0 was fatty acid acylated in the core and cortex of young (2- and 4-month) lenses. Acylated and unmodified AQP0 were C-terminally truncated in older lens cores. Deamidated tryptic peptides (+0.9847 Da) were mass resolved from unmodified peptides by FTICR MS. Peptide images revealed differential localization of un-, singly-, and doubly-deamidated AQP0 C-terminal peptide (239a??263). Deamidation was present at 4 months and increases with age. Liquid chromatographya??MS/MS results indicated N246 undergoes deamidation more rapidly than N259. Conclusions: Results indicated AQP0 fatty acid acylation and deamidation occur during early development. Progressive age-related AQP0 processing, including deamidation and truncation, was mapped in human lenses as a function of age. The localization of these modified AQP0 forms suggests where AQP0 functions may change throughout lens development and aging.
机译:目的:使用基质辅助激光解吸电离(MALDI)成像质谱(IMS)在空间上绘制从出生到中年的人类晶状体Aquaporin-0(AQP0)蛋白修饰,包括脂化,截短和脱酰胺。方法:用水冲洗人晶状体切片,以利于检测膜蛋白AQP0。我们从8个年龄在2个月至63岁的人类镜头中获取了MALDI图像。使用原位胰蛋白酶消化产生AQP0的肽段,并在15T傅里叶变换离子回旋共振(FTICR)质谱仪上获得肽段图像。通过液相色谱-串联质谱法(LC-MS / MS)分析肽提取物,并搜索数据库以鉴定在MALDI成像实验中观察到的肽。结果:在蛋白质成像实验中检测到未修饰的,截短的和脂肪酸α酰化的AQP0形式。全长AQP0在年轻(2个月和4个月)晶状体的核心和皮层中被脂肪酸酰化。酰化的和未修饰的AQP0在较老的镜芯中被C端截短。通过FTICR MS从未修饰的肽中大规模拆分脱酰胺的胰蛋白酶肽(+0.9847 Da)。肽图像显示未酰胺化,单酰胺化和双酰胺化的AQP0 C末端肽(239aΔ263)的差异化定位。脱酰胺作用存在于4个月,并且随着年龄的增长而增加。液相色谱-MS / MS结果表明,N246的脱酰胺作用比N259的脱酰胺作用更快。结论:结果表明,AQP0脂肪酸在早期发育过程中发生酰化和脱酰胺作用。渐进的与年龄相关的AQP0处理(包括脱酰胺基作用和截短)被绘制在人的晶状体中,作为年龄的函数。这些修饰的AQP0形式的本地化提示AQP0的功能在整个晶状体发育和老化过程中可能会发生变化。

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