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解析血管生成素样蛋白4/8复合物介导的纤溶酶生成在脂蛋白脂肪酶活性调节中的作用。

Decoding the role of angiopoietin-like protein 4/8 complex-mediated plasmin generation in the regulation of LPL activity.

作者信息

Chen Yan Q, Zhen Eugene Y, Russell Anna M, Ehsani Mariam, Siegel Robert W, Qian Yuewei, Konrad Robert J

机构信息

Lilly Research Laboratories, Eli Lilly, and Company, Indianapolis, IN, USA.

Lilly Research Laboratories, Eli Lilly, and Company, Indianapolis, IN, USA.

出版信息

J Lipid Res. 2023 Oct;64(10):100441. doi: 10.1016/j.jlr.2023.100441. Epub 2023 Sep 4.

Abstract

After feeding, adipose tissue lipoprotein lipase (LPL) activity should be maximized, therefore the potent LPL-inhibitory activity of angiopoietin-like protein 4 (ANGPTL4) must be blocked by ANGPTL8 through formation of ANGPTL4/8 complexes. ANGPTL4/8 tightly binds and protects LPL but also partially inhibits its activity. Recently, we demonstrated ANGPTL4/8 also binds tissue plasminogen activator (tPA) and plasminogen to generate plasmin that cleaves ANGPTL4/8 to restore LPL activity. Although fully active LPL in the fat postprandially is desirable, ANGPTL4/8 removal could subject LPL to profound inhibition by ANGPTL3/8 (the most potent circulating LPL inhibitor), inhibition by other LPL inhibitors like ANGPTL4, ANGPTL3, and ApoC3 or interfere with ApoC2-mediated LPL activation. To understand better these potential paradoxes, we examined LPL inhibition by ANGPTL3/8, ANGPTL4, ANGPTL3, and ApoC3 and LPL stimulation by ApoC2 in the presence of ANGPTL4/8 + tPA + plasminogen. Remarkably, ANGPTL3/8-mediated LPL inhibition was almost completely blocked, with the mechanism being cleavage of fibrinogen-like domain-containing ANGPTL3 present in the ANGPTL3/8 complex. The LPL-inhibitory effects of ANGPTL4, ANGPTL3, and ApoC3 were also largely reduced in the presence of ANGPTL4/8 + tPA + plasminogen. In contrast, the ability of ApoC2 to stimulate LPL activity was unaffected by ANGPTL4/8-mediated plasmin generation. Together, these results explain how plasmin generated by increased postprandial ANGPTL4/8 levels in adipose tissue enables maximal LPL activity by preventing ANGPTL3/8, ANGPTL4, ANGPTL3, and ApoC3 from inhibiting LPL, while permitting ApoC2-mediated LPL activation to occur.

摘要

进食后,脂肪组织脂蛋白脂肪酶(LPL)的活性应最大化,因此血管生成素样蛋白4(ANGPTL4)强大的LPL抑制活性必须被ANGPTL8通过形成ANGPTL4/8复合物来阻断。ANGPTL4/8紧密结合并保护LPL,但也会部分抑制其活性。最近,我们证明ANGPTL4/8还能结合组织型纤溶酶原激活剂(tPA)和纤溶酶原以生成纤溶酶,后者可裂解ANGPTL4/8以恢复LPL活性。尽管餐后脂肪中具有完全活性的LPL是理想的,但ANGPTL4/8的去除可能会使LPL受到ANGPTL3/8(最有效的循环LPL抑制剂)的深度抑制、受到其他LPL抑制剂如ANGPTL4、ANGPTL3和载脂蛋白C3(ApoC3)的抑制,或干扰载脂蛋白C2(ApoC2)介导的LPL激活。为了更好地理解这些潜在的矛盾,我们研究了在存在ANGPTL4/8 + tPA + 纤溶酶原的情况下,ANGPTL3/8、ANGPTL4、ANGPTL3和ApoC3对LPL的抑制作用以及ApoC2对LPL的刺激作用。值得注意的是,ANGPTL3/8介导的LPL抑制几乎被完全阻断,其机制是裂解ANGPTL3/8复合物中存在的含纤维蛋白原样结构域的ANGPTL3。在存在ANGPTL4/8 + tPA + 纤溶酶原的情况下,ANGPTL4、ANGPTL3和ApoC3的LPL抑制作用也大大降低。相比之下,ApoC2刺激LPL活性的能力不受ANGPTL4/8介导的纤溶酶生成的影响。总之,这些结果解释了脂肪组织中餐后ANGPTL4/8水平升高所产生的纤溶酶如何通过防止ANGPTL3/8、ANGPTL4、ANGPTL3和ApoC3抑制LPL,同时允许ApoC2介导的LPL激活发生,从而实现最大的LPL活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/feeb/10550811/72e71b3fd797/gr1.jpg

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