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一种基于抗体的蛋白质微阵列用于评估灰熊(棕熊属)生理应激的开发与应用。

Development and application of an antibody-based protein microarray to assess physiological stress in grizzly bears (Ursus arctos).

作者信息

Carlson Ruth I, Cattet Marc R L, Sarauer Bryan L, Nielsen Scott E, Boulanger John, Stenhouse Gordon B, Janz David M

机构信息

Toxicology Graduate Program , University of Saskatchewan , Saskatoon, SK , Canada S7N 5B3.

Canadian Wildlife Health Cooperative, Western College of Veterinary Medicine , University of Saskatchewan , Saskatoon, SK , Canada S7N 5B4.

出版信息

Conserv Physiol. 2016 Feb 26;4(1):cow001. doi: 10.1093/conphys/cow001. eCollection 2016.

Abstract

A novel antibody-based protein microarray was developed that simultaneously determines expression of 31 stress-associated proteins in skin samples collected from free-ranging grizzly bears (Ursus arctos) in Alberta, Canada. The microarray determines proteins belonging to four broad functional categories associated with stress physiology: hypothalamic-pituitary-adrenal axis proteins, apoptosis/cell cycle proteins, cellular stress/proteotoxicity proteins and oxidative stress/inflammation proteins. Small skin samples (50-100 mg) were collected from captured bears using biopsy punches. Proteins were isolated and labelled with fluorescent dyes, with labelled protein homogenates loaded onto microarrays to hybridize with antibodies. Relative protein expression was determined by comparison with a pooled standard skin sample. The assay was sensitive, requiring 80 µg of protein per sample to be run in triplicate on the microarray. Intra-array and inter-array coefficients of variation for individual proteins were generally <10 and <15%, respectively. With one exception, there were no significant differences in protein expression among skin samples collected from the neck, forelimb, hindlimb and ear in a subsample of n = 4 bears. This suggests that remotely delivered biopsy darts could be used in future sampling. Using generalized linear mixed models, certain proteins within each functional category demonstrated altered expression with respect to differences in year, season, geographical sampling location within Alberta and bear biological parameters, suggesting that these general variables may influence expression of specific proteins in the microarray. Our goal is to apply the protein microarray as a conservation physiology tool that can detect, evaluate and monitor physiological stress in grizzly bears and other species at risk over time in response to environmental change.

摘要

开发了一种基于抗体的新型蛋白质微阵列,可同时测定从加拿大艾伯塔省自由放养的灰熊(棕熊)采集的皮肤样本中31种应激相关蛋白的表达。该微阵列可测定属于与应激生理学相关的四个广泛功能类别的蛋白质:下丘脑-垂体-肾上腺轴蛋白、凋亡/细胞周期蛋白、细胞应激/蛋白毒性蛋白和氧化应激/炎症蛋白。使用活检打孔器从捕获的熊身上采集小皮肤样本(50-100毫克)。分离蛋白质并用荧光染料标记,将标记的蛋白质匀浆加载到微阵列上与抗体杂交。通过与合并的标准皮肤样本比较来确定相对蛋白质表达。该检测方法灵敏,每个样本需要80微克蛋白质,在微阵列上一式三份运行。单个蛋白质的阵列内和阵列间变异系数通常分别<10%和<15%。在n = 4只熊的子样本中,从颈部、前肢、后肢和耳朵采集的皮肤样本之间,除一个例外,蛋白质表达没有显著差异。这表明远程递送的活检飞镖可用于未来的采样。使用广义线性混合模型,每个功能类别中的某些蛋白质在年份、季节、艾伯塔省内的地理采样位置和熊的生物学参数方面表现出表达变化,这表明这些一般变量可能影响微阵列中特定蛋白质的表达。我们的目标是将蛋白质微阵列作为一种保护生理学工具,随着时间的推移,能够检测、评估和监测灰熊和其他濒危物种因环境变化而产生的生理应激。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e4f/4771112/4722a8538824/cow00101.jpg

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