Nagai Taylor Hanta, Mizoguchi Taiji, Wang Yanyan, Deik Amy, Bullock Kevin, Clish Clary B, Xu Yu-Xin
Center for Genomic Medicine, Massachusetts General Hospital, Simches 5.500, 185 Cambridge St., Boston, MA, 02114, USA.
Broad Institute of MIT and Harvard, Cambridge, MA, 02142, USA.
Sci Rep. 2025 Feb 11;15(1):5036. doi: 10.1038/s41598-025-89552-6.
Angiopoietin-like 3 (ANGPTL3) is a key regulator of lipoprotein metabolism, known for its potent inhibition on intravascular lipoprotein and endothelial lipase activities. Recent studies have shed light on the cellular functions of ANGPTL3. However, the precise mechanism underlying its regulation of cellular lipid metabolism remains elusive. We recently reported that ANGPTL3 interacts with the chromatin regulator SMARCAL1, which plays a pivotal role in maintaining cellular lipid homeostasis. Here, through a combination of in vitro and in vivo functional analyses, we provide evidence that ANGPTL3 indeed influences cellular lipid metabolism. Increased expression of Angptl3 prompted the formation of lipid droplets (LDs) in response to slow growth conditions. Notably, under the conditions, Angptl3 accumulated within cytoplasmic peroxisomes, where it interacts with SmarcAL1, which translocated from nucleus as observed previously. This translocation induced changes in gene expression favoring triglyceride (TG) accumulation. Indeed, ANGPTL3 gene knockout (KO) in human cells increased the expression of key lipid genes, which could be linked to elevated nuclear localization of SMARCAL1, whereas the expression of these genes decreased in SMARCAL1 KO cells. Consistent with these findings, the injection of Angptl3 protein to mice led to hepatic fat accumulation derived from circulating blood, a phenotype likely indicative of its long-term effect on blood TG, linked to SmarcAL1 activities. Thus, our results suggest that the Angptl3-SmarcAL1 pathway may confer the capacity for TG storage in cells in response to varying growth states, which may have broad implications for this pathway in regulating energy storage and trafficking.
血管生成素样 3(ANGPTL3)是脂蛋白代谢的关键调节因子,以其对血管内脂蛋白和内皮脂肪酶活性的强大抑制作用而闻名。最近的研究揭示了ANGPTL3的细胞功能。然而,其调节细胞脂质代谢的精确机制仍不清楚。我们最近报道,ANGPTL3与染色质调节因子SMARCAL1相互作用,后者在维持细胞脂质稳态中起关键作用。在此,通过体外和体内功能分析相结合,我们提供证据表明ANGPTL3确实影响细胞脂质代谢。Angptl3表达增加促使在生长缓慢条件下形成脂滴(LDs)。值得注意的是,在这些条件下,Angptl3在细胞质过氧化物酶体中积累,在那里它与如先前观察到的从细胞核转位的SmarcAL1相互作用。这种转位诱导了有利于甘油三酯(TG)积累的基因表达变化。事实上,人类细胞中ANGPTL3基因敲除(KO)增加了关键脂质基因的表达,这可能与SMARCAL1核定位升高有关,而在SMARCAL1 KO细胞中这些基因的表达下降。与这些发现一致,向小鼠注射Angptl3蛋白导致源自循环血液的肝脏脂肪积累,这一表型可能表明其对血液TG的长期影响,与SmarcAL1活性有关。因此,我们的结果表明Angptl3 - SmarcAL1途径可能赋予细胞在不同生长状态下储存TG的能力,这可能对该途径在调节能量储存和运输方面具有广泛意义。