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Functional and Proteomic Investigations Reveal Major Royal Jelly Protein 1 Associated with Anti-hypertension Activity in Mouse Vascular Smooth Muscle Cells

机译:功能和蛋白质组学研究揭示了与抗高血压活性相关的小鼠血管平滑肌细胞中的主要蜂王浆蛋白1。

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摘要

Vascular smooth muscle cells (VSMCs) are a major cell type of the arterial wall and their functionality is associated with blood pressure regulation. Although royal jelly (RJ) has reported effects on anti-hypertension, the mechanism of blood pressure regulation by major royal jelly protein 1 (MRJP1), the most abundant RJ protein, is still unknown. The mrjp1 gene was inserted into mouse VSMCs to investigate how MRJP1 influences VSMC functionality by functional and proteomic analysis. The expression of MRJP1 in VSMCs significantly reduced cell contraction, migration, and proliferation, suggesting a potential role in decreasing hypertension via action on VSMCs. These anti-hypertension activities were further observed in the changes of the proteome setting of mouse VSMCs. Among 675 different proteins after MRJP1 expression, 646 were down-regulated and significantly enriched in pathways implicated in VSMC contraction and migration, which suggest MRJP1 lowers VSMC contraction and migration by inhibiting muscle filament movement. The down-regulated proteins also enriched pathways in proliferation, indicating that MRJP1 hinders VSMC proliferation by reducing the supply of energy and genetic material. This is the first report integrating MRJP1 into VSMC, revealing the function and mechanism correlated with anti-hypertensive activity. This offers a therapeutic potential to control hypertension by gene-therapy using bee-products.
机译:血管平滑肌细胞(VSMC)是动脉壁的主要细胞类型,其功能与血压调节相关。尽管蜂王浆(RJ)对抗高血压有作用,但主要的蜂王浆蛋白1(MRJP1)是最丰富的RJ蛋白,其血压调节机制仍然未知。将mrjp1基因插入小鼠VSMC中,以通过功能和蛋白质组分析研究MRJP1如何影响VSMC功能。 MRJP1在VSMC中的表达显着降低了细胞的收缩,迁移和增殖,提示通过作用于VSMC可以降低高血压。在小鼠VSMC蛋白质组设置的变化中进一步观察到了这些抗高血压活性。在MRJP1表达后的675种不同蛋白中,有646种蛋白被下调并显着丰富了VSMC收缩和迁移相关的途径,这表明MRJP1通过抑制肌肉细丝运动来降低VSMC收缩和迁移。下调的蛋白质还丰富了增殖途径,表明MRJP1通过减少能量和遗传物质的供应来阻碍VSMC增殖。这是第一份将MRJP1整合到VSMC中的报告,揭示了与抗高血压活性相关的功能和机制。这提供了通过使用蜂产品的基因疗法来控制高血压的治疗潜力。

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