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多酚氧化酶(PPO)活性对摄入的红三叶草蛋白质组的影响及其对改善放牧牛营养的意义。

The effects of PPO activity on the proteome of ingested red clover and implications for improving the nutrition of grazing cattle.

作者信息

Hart E H, Onime L A, Davies T E, Morphew R M, Kingston-Smith A H

机构信息

Institute of Biological, Environmental and Rural Sciences (IBERS), Aberystwyth University, Penglais, Aberystwyth SY23 3FG, UK.

Institute of Biological, Environmental and Rural Sciences (IBERS), Aberystwyth University, Penglais, Aberystwyth SY23 3FG, UK.

出版信息

J Proteomics. 2016 Jun 1;141:67-76. doi: 10.1016/j.jprot.2016.04.023. Epub 2016 Apr 21.

Abstract

UNLABELLED

Increasing the rumen-stable protein content of feed would lead to improved nitrogen utilisation in cattle, and less nitrogenous waste. Red clover (Trifolium pratense L.) is a high protein ruminant feed containing high polyphenol oxidase (PPO) activity. PPO mediated protein-quinone binding has been linked to protecting plant proteins from proteolysis. To explore the mechanism underlying the effect of PPO on protein protection in fresh forage feeds, proteomic components of feed down-boli produced from wild-type red clover and a low PPO mutant, at point of ingestion and after 4h in vitro incubation with rumen inoculum were analysed. Significant differences in proteomic profiles between wild-type and mutant red clover were determined after 4h incubation, with over 50% less spots in mutant than wild-type proteomes, indicating decreased proteolysis in the latter. Protein identifications revealed preferentially retained proteins localised within the chloroplast, suggesting that PPO mediated protection in the wild-type operates due to the proximity of target proteins to the enzyme and substrates, either diffusing into this compartment from the vacuole or are present in the chloroplast. This increased understanding of protein targets of PPO indicates that wider exploitation of the trait could contribute to increased protein use efficiency in grazing cattle.

BIOLOGICAL SIGNIFICANCE

One of the main challenges for sustainable livestock farming is improving capture of dietary nitrogen by ruminants. Typically up to 70% of ingested protein-N is excreted representing a loss of productivity potential and a serious environmental problem in terms of nitrogenous pollution of lands and water. Identification of key characteristics of rumen-protected protein will deliver target traits for selection in forage breeding programmes. The chloroplastic enzyme PPO catalyzes the oxidation of phenols to quinones, which react with protein. Little is currently known about the intracellular protein targets of the products of PPO activity or the mechanism underlying protein complexing, including whether there is any specificity to the reaction. Here we have determined significant differences in the proteomes of freshly ingested down boli corresponding to the presence or absence of active PPO. These results show that in the presence of PPO the forage protein is less amenable to proteolysis and provide the novel information that the protected proteins are putatively chloroplastically located. These data also contribute to a growing evidence base that a chloroplastic PPO substrate exists in red clover in addition to the currently known vacuolar substrates.

摘要

未标记

提高饲料中瘤胃稳定蛋白含量可提高牛的氮利用率,并减少含氮废物。红三叶草(Trifolium pratense L.)是一种高蛋白反刍动物饲料,含有高多酚氧化酶(PPO)活性。PPO介导的蛋白质-醌结合与保护植物蛋白免被蛋白水解有关。为探究PPO对新鲜草料饲料中蛋白质保护作用的潜在机制,分析了野生型红三叶草和低PPO突变体产生的饲料下团在摄入时以及与瘤胃接种物体外培养4小时后的蛋白质组学成分。培养4小时后,确定了野生型和突变型红三叶草蛋白质组学图谱的显著差异,突变体中的斑点比野生型蛋白质组少50%以上,表明后者的蛋白水解减少。蛋白质鉴定显示优先保留的蛋白质定位于叶绿体,这表明野生型中PPO介导的保护作用是由于靶蛋白与酶和底物接近,底物要么从液泡扩散到这个区室,要么存在于叶绿体中。对PPO蛋白质靶标的进一步了解表明,更广泛地利用这一特性有助于提高放牧牛的蛋白质利用效率。

生物学意义

可持续畜牧业的主要挑战之一是提高反刍动物对日粮氮的摄取。通常,摄入的蛋白质氮中高达70%会被排泄掉,这代表着生产力潜力的损失,以及土地和水体含氮污染方面的严重环境问题。确定瘤胃保护蛋白的关键特征将为饲料育种计划中的选择提供目标性状。叶绿体酶PPO催化酚类氧化成醌,醌与蛋白质反应。目前对PPO活性产物的细胞内蛋白质靶标或蛋白质复合的潜在机制了解甚少,包括反应是否具有特异性。在这里,我们确定了对应于活性PPO存在与否的新鲜摄入下团蛋白质组的显著差异。这些结果表明,在PPO存在的情况下,草料蛋白不易被蛋白水解,并提供了新的信息,即受保护的蛋白质可能定位于叶绿体。这些数据也有助于越来越多的证据表明,除了目前已知的液泡底物外,红三叶草中还存在叶绿体PPO底物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a0b/4881418/5b4883ed2d39/fx1.jpg

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