Human Genetics, David Geffen School of Medicine at UCLA,
Bioinformatics Interdepartmental Program and.
JCI Insight. 2021 Sep 8;6(17):e150114. doi: 10.1172/jci.insight.150114.
Lipin 1 regulates cellular lipid homeostasis through roles in glycerolipid synthesis (through phosphatidic acid phosphatase activity) and transcriptional coactivation. Lipin 1-deficient individuals exhibit episodic disease symptoms that are triggered by metabolic stress, such as stress caused by prolonged fasting. We sought to identify critical lipin 1 activities during fasting. We determined that lipin 1 deficiency induces widespread alternative mRNA splicing in liver during fasting, much of which is normalized by refeeding. The role of lipin 1 in mRNA splicing was largely independent of its enzymatic function. We identified interactions between lipin 1 and spliceosome proteins, as well as a requirement for lipin 1 to maintain homeostatic levels of spliceosome small nuclear RNAs and specific RNA splicing factors. In fasted Lpin1-/- liver, we identified a correspondence between alternative splicing of phospholipid biosynthetic enzymes and dysregulated phospholipid levels; splicing patterns and phospholipid levels were partly normalized by feeding. Thus, lipin 1 influences hepatic lipid metabolism through mRNA splicing, as well as through enzymatic and transcriptional activities, and fasting exacerbates the deleterious effects of lipin 1 deficiency on metabolic homeostasis.
脂肪酶 1 通过参与甘油磷脂合成(通过磷酸酸酯酶活性)和转录共激活作用来调节细胞脂质稳态。脂肪酶 1 缺陷个体表现出间歇性疾病症状,这些症状是由代谢应激引起的,如长时间禁食引起的应激。我们试图确定禁食期间脂肪酶 1 的关键活性。我们确定,在禁食期间,脂肪酶 1 缺乏会诱导肝脏中广泛的替代 mRNA 剪接,其中大部分通过再喂养得到正常化。脂肪酶 1 在 mRNA 剪接中的作用在很大程度上与其酶活性无关。我们发现了脂肪酶 1 与剪接体蛋白之间的相互作用,以及脂肪酶 1 维持剪接体小核 RNA 和特定 RNA 剪接因子稳态水平的必要性。在禁食的 Lpin1-/- 肝脏中,我们发现磷脂生物合成酶的替代剪接与磷脂水平的失调之间存在对应关系;通过喂养,剪接模式和磷脂水平部分得到正常化。因此,脂肪酶 1 通过 mRNA 剪接以及酶和转录活性影响肝脂质代谢,禁食加剧了脂肪酶 1 缺乏对代谢稳态的有害影响。