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Comparative Neuropeptidomic Analysis of Food Intake via a Multifaceted Mass Spectrometric Approach

机译:通过多方面质谱方法对食物摄入进行比较神经肽分析

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摘要

Feeding behavior is a fundamental aspect of energy homeostasis and is crucial for animal survival. This process is regulated by a multitude of neurotransmitters including neuropeptides within a complex neuroendocrine system. Given the high chemical complexity and wide distribution of neuropeptides, the precise molecular mechanisms at the cellular and network levels remain elusive. Here we report comparative neuropeptidomic analysis of brain and a major neuroendocrine organ in a crustacean model organism in response to feeding. A multifaceted approach employing direct tissue matrix-assisted laser desorption/ionization mass spectrometry (MALDI-MS), stable isotopic labeling of neuropeptide extracts for quantitation, and mass spectrometric imaging (MSI) has been employed to obtain complementary information on the expression changes of a large array of neuropeptides in the brain and the pericardial organ (PO) in the crab Cancer borealis. Multiple neuropeptides exhibited changes in abundance after feeding, including RFamides, Cancer borealis tachykinin-related peptides (CabTRPs), RYamides, and pyrokinins. By combining quantitative analysis of neuropeptide changes via isotopic labeling of brain extract and MSI mapping of neuropeptides of brain slices, we identified the boundary of the olfactory lobe (ON) and the median protocerebrum (MPC) area as two potential feeding centers in the crab brain.
机译:喂养行为是能量稳态的基本方面,对动物的生存至关重要。此过程由复杂的神经内分泌系统内的多种神经递质(包括神经肽)调节。鉴于神经肽的高度化学复杂性和广泛分布,在细胞和网络水平的精确分子机制仍然难以捉摸。在这里,我们报告了对大脑和甲壳类动物模型生物中主要的神经内分泌器官的神经肽比较分析,以应对进食。采用直接组织基质辅助激光解吸/电离质谱(MALDI-MS),神经肽提取物的稳定同位素标记进行定量和质谱成像(MSI)的多方面方法已获得有关a的表达变化的补充信息蟹癌的北部大脑和心包器官(PO)都有大量神经肽。多种神经肽在进食后表现出丰富的变化,包括RF酰胺,北半球速动蛋白相关肽(CabTRP),RY酰胺和焦磷酸激酶。通过对脑提取物的同位素标记和脑切片神经肽的MSI映射对神经肽变化的定量分析相结合,我们确定了嗅叶(ON)和中脑前脑(MPC)区域的边界是蟹脑中两个潜在的进食中心。

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