A whole-animal phenotypic drug screen identifies suppressors of atherogenic lipoproteins.

Daniel J Kelpsch, Liyun Zhang, James H Thierer, Kobe Koren, Urmi Kumar, Yuki Lin, Monica R Hensley, Mira Sohn, Jun O Liu, Thomas Lectka, Jeff S Mumm, Steven A Farber
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Abstract

Lipoproteins are essential for lipid transport in all bilaterians. A single Apolipoprotein B (ApoB) molecule is the inseparable structural scaffold of each ApoB-containing lipoprotein (B-lps), which are responsible for transporting lipids to peripheral tissues. The cellular mechanisms that regulate ApoB and B-lp production, secretion, transport, and degradation remain to be fully defined. In humans, elevated levels of vascular B-lps play a causative role in cardiovascular disease. Previously, we have detailed that human B-lp biology is remarkably conserved in the zebrafish using an in vivo chemiluminescent reporter of ApoB (LipoGlo) that does not disrupt ApoB function. Thus, the LipoGlo model is an ideal system for identifying novel mechanisms of ApoB modulation and, due to the ability of zebrafish to generate many progeny, is particularly amenable to large-scale phenotypic drug screening. Here, we report a screen of roughly 3000 compounds that identified 49 unique ApoB-lowering hits. Nineteen hits passed orthogonal screening criteria. A licorice root component, enoxolone, significantly lowered B-lps only in animals that express a functional allele of the nuclear hormone receptor Hepatocyte Nuclear Factor 4⍺ (HNF4⍺). Consistent with this result, inhibitors of HNF4⍺ also reduce B-lp levels. These data demonstrate that mechanism(s) of action can be rapidly determined from a whole animal zebrafish phenotypic screen. Given the well documented role of HNF4⍺ in human B-lp biology, these data validate the LipoGlo screening platform for identifying small molecule modulators of B-lps that play a critical role in a leading cause of worldwide mortality.

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全动物表型药物筛选确定了致动脉粥样硬化脂蛋白的抑制因子。
脂蛋白对所有双脊类动物的脂质运输都至关重要。单个载脂蛋白 B(ApoB)分子是每个含载脂蛋白 B 的脂蛋白(B-lp)不可分割的结构支架,而脂蛋白 B 负责将脂质运输到外周组织。调节载脂蛋白B和B-lp产生、分泌、运输和降解的细胞机制仍未完全明确。在人体中,血管 B-lp 水平升高是心血管疾病的诱因之一。在此之前,我们曾使用一种不会破坏载脂蛋白功能的体内载脂蛋白化学发光报告物(LipoGlo)详细说明了人类 B-lp 生物学在斑马鱼中的显著保守性。因此,LipoGlo 模型是鉴定载脂蛋白调节新机制的理想系统,而且由于斑马鱼能产生许多后代,特别适合大规模表型药物筛选。在这里,我们报告了对大约 3000 种化合物的筛选结果,其中发现了 49 种独特的降低载脂蛋白B的药物。其中 19 个化合物通过了正交筛选标准。只有在表达核激素受体肝细胞核因子 4α (HNF4α)功能等位基因的动物中,甘草根成分烯诺酮才能显著降低 B-lps。与此结果一致的是,HNF4α抑制剂也会降低B-lp水平。这些数据表明,可以通过全动物斑马鱼表型筛选快速确定作用机制。鉴于 HNF4α 在人类 B-lp 生物学中的作用有据可查,这些数据验证了 LipoGlo 筛选平台在鉴定 B-lp 小分子调节剂方面的有效性。
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