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蛋白质组分析揭示了在自由放养须鲸的鲸脂活检中研究氧化应激和免疫反应生物标志物的机会。

Proteome profiling reveals opportunities to investigate biomarkers of oxidative stress and immune responses in blubber biopsies from free-ranging baleen whales.

作者信息

Kershaw Joanna, Ramp Christian, Sears Richard, Hall Ailsa, Derous Davina

机构信息

Sea Mammal Research Unit, Scottish Oceans Institute, University of St Andrews, St Andrews, KY16 8LB.

School of Biological Sciences, University of Aberdeen, Aberdeen, UK.

出版信息

Conserv Physiol. 2024 Aug 19;12(1):coae059. doi: 10.1093/conphys/coae059. eCollection 2024.

Abstract

Over 25% of cetacean species worldwide are listed as critically endangered, endangered or vulnerable by the International Union for Conservation of Nature. Objective and widely applicable tools to assess cetacean health are therefore vital for population monitoring and to inform conservation initiatives. Novel blubber biomarkers of physiological state are examples of such tools that could be used to assess overall health. Proteins extracted from blubber likely originate from both the circulation and various cell types within the tissue itself, and their expression is responsive to signals originating from other organs and the nervous system. Blubber proteins can therefore capture information on physiological stressors experienced by individuals at the time of sampling. For the first time, we assess the feasibility of applying shotgun proteomics to blubber biopsy samples collected from free-ranging baleen whales. Samples were collected from minke whales () ( = 10) in the Gulf of St Lawrence, Canada. Total protein was extracted using a RIPA cell lysis and extraction buffer-based protocol. Extracted proteins were separated and identified using nanoflow Liquid Chromatography Electrospray Ionization in tandem with Mass Spectrometry. We mapped proteins to known biological pathways and determined whether they were significantly enriched based on the proteome profile. A pathway enrichment map was created to visualize overlap in tissue-level biological processes. Amongst the most significantly enriched biological pathways were those involved in immune system function: inflammatory responses, leukocyte-mediated immunity and the humoral immune response. Pathways associated with responses to oxidative stress were also enriched. Using a suite of such protein biomarkers has the potential to better assess the overall health and physiological state of live individuals through remote biopsy sampling. This information is vital for population health assessments to predict population trajectories, and ultimately guide and monitor conservation priorities and initiatives.

摘要

全球超过25%的鲸类物种被国际自然保护联盟列为极度濒危、濒危或易危物种。因此,客观且广泛适用的评估鲸类健康的工具对于种群监测和为保护行动提供信息至关重要。生理状态的新型脂肪生物标志物就是可用于评估整体健康状况的此类工具的实例。从脂肪中提取的蛋白质可能既来源于循环系统,也来源于组织本身的各种细胞类型,并且它们的表达对源自其他器官和神经系统的信号有反应。因此,脂肪蛋白质可以捕捉个体在采样时所经历的生理应激源的信息。我们首次评估了将鸟枪法蛋白质组学应用于从自由放养的须鲸采集的脂肪活检样本的可行性。样本采集自加拿大圣劳伦斯湾的小须鲸( )( = 10)。使用基于RIPA细胞裂解和提取缓冲液的方案提取总蛋白质。提取的蛋白质通过纳流液相色谱电喷雾电离串联质谱进行分离和鉴定。我们将蛋白质映射到已知的生物途径,并根据蛋白质组图谱确定它们是否显著富集。创建了一个途径富集图谱以可视化组织水平生物过程中的重叠情况。最显著富集的生物途径包括那些参与免疫系统功能的途径:炎症反应、白细胞介导的免疫和体液免疫反应。与氧化应激反应相关的途径也得到了富集。使用一套这样的蛋白质生物标志物有潜力通过远程活检采样更好地评估活体个体的整体健康和生理状态。这些信息对于种群健康评估以预测种群轨迹至关重要,并最终指导和监测保护重点及行动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb4c/11332026/94da2881d75c/coae059f1.jpg

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