首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Chymase in exocytosed rat mast cell granules effectively proteolyzes apolipoprotein AI-containing lipoproteins so reducing the cholesterol efflux-inducing ability of serum and aortic intimal fluid.
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Chymase in exocytosed rat mast cell granules effectively proteolyzes apolipoprotein AI-containing lipoproteins so reducing the cholesterol efflux-inducing ability of serum and aortic intimal fluid.

机译:胞吐的大鼠肥大细胞颗粒中的糜蛋白酶可有效地蛋白水解含载脂蛋白AI的脂蛋白从而降低血清和主动脉内膜液的胆固醇外流诱导能力。

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摘要

Degranulated mast cells are present in human fatty streaks. Chymase in granules released from degranulated rat serosal mast cells, i.e., in granule remnants, proteolyzes human high density lipoprotein3 (HDL3), and so reduces its ability to induce cholesterol efflux from macrophage foam cells in vitro. In this study we found that remnant chymase, by proteolyzing human serum and human aortic intimal fluid, prevents these two physiologic fluids from effectively inducing cholesterol efflux from cultured macrophage foam cells. Inhibition was strongest when remnants were added to apolipoprotein AI (apoAI)-containing lipoproteins; the remnants had no effect on the weaker efflux produced by apoAI-deficient serum. Western blot analysis showed that granule remnants degrade apoAI in serum and in internal fluid. When released from remnants, chymase lost its ability to proteolyze HDL3 in the presence of serum. Thus, remnant chymase (but not isolated chymase) was able to resist the natural protease inhibitors present in serum and in intimal fluid. The results imply participation of exocytosed mast cell granules in foam cell formation in atherogenesis.
机译:人脂肪条纹中存在脱粒的肥大细胞。从脱颗粒的大鼠浆膜肥大细胞释放的颗粒中的糜酶,即颗粒残余物中的酶,可以蛋白水解人高密度脂蛋白3(HDL3),因此降低了其体外诱导巨噬细胞泡沫细胞分泌胆固醇的能力。在这项研究中,我们发现残留的糜酶通过蛋白水解人的血清和人的主动脉内膜液,可以阻止这两种生理液有效地诱导培养的巨噬细胞泡沫细胞分泌胆固醇。当将残余物添加到含载脂蛋白AI(apoAI)的脂蛋白中时,抑制作用最强。残留物对缺乏apoAI的血清产生的弱流出没有影响。蛋白质印迹分析表明,颗粒残留物会降解血清和体内液体中的apoAI。当从残余物中释放时,糜酶在存在血清的情况下丧失了其蛋白水解HDL3的能力。因此,残留的糜酶(但不是分离的糜酶)能够抵抗血清和内膜液中存在的天然蛋白酶抑制剂。结果暗示胞吐的肥大细胞颗粒参与动脉粥样硬化形成中泡沫细胞的形成。

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