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Changes in the soluble bone proteome of reared white seabream (Diplodus sargus) with skeletal deformities

机译:饲养的溶骨蛋白质组的变化白鲷科鱼类(Diplodus sargus)和骨骼畸形

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One of the main constrains for commercial aquaculture production of white seabream (Diplodus sargus) is the high incidence of skeletal malformations in reared fish. The purpose of this study was to obtain a better understanding of the mechanisms involved in the development of these types of skeletal malformations by comparative proteomic analysis of the vertebral column of normal and deformed fish using 2DE for protein separation and MS for protein identification. We observed a 3.2 and 3.4-fold increase in the expression of two tropomyosin isoforms, one of which (tropomyosin-4) is essential for the motility and polarization cycles of osteoclasts. Furthermore, a 1.6, 1.7 and 1.8-fold increase in three parvalbumin spots was detected, suggesting a cellular response to increased intracellular Ca2+ levels. These results can be interpreted as signs of increased cellular activity in the bone of white seabream with skeletal deformities coupled to a higher degree of calcium mobilization, which elicits further studies into the use of these proteins as indicators of skeletal metabolic state.
机译:对商业的一个主要限制水产养殖生产的白色鲷科鱼类(Diplodus sargus)的高发病率骨骼畸形饲养鱼。本研究的目的是为了获得一个更好的理解的机制这些类型的骨骼的发展畸形的比较蛋白质组学分析正常和脊柱的畸形鱼对蛋白质分离和女士使用2 de蛋白质的鉴定。3.4倍的表达增加原肌球蛋白亚型,其中一个能动性和(tropomyosin-4)是至关重要的破骨细胞的极化周期。1.6、1.7和1.8倍增加3小清蛋白点检测,暗示增加细胞内钙离子细胞反应的水平。骨细胞活动的增加白色鲷科鱼类骨骼畸形耦合更高程度的钙动员,抒发进一步研究使用这些蛋白质作为骨骼代谢的指标状态。

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