Division of Cardiology, Department of Medicine, Los Angeles, CA, USA.
The Vatche and Tamar Manoukian Division of Digestive Diseases, Los Angeles, CA, USA; UCLA Microbiome Center, Department of Medicine, David Geffen School of Medicine at UCLA, Los Angeles, CA, USA.
J Lipid Res. 2022 Jan;63(1):100153. doi: 10.1016/j.jlr.2021.100153. Epub 2021 Nov 20.
We previously reported that adding a concentrate of transgenic tomatoes expressing the apoA-I mimetic peptide 6F (Tg6F) to a Western diet (WD) ameliorated systemic inflammation. To determine the mechanism(s) responsible for these observations, Ldlr mice were fed chow, a WD, or WD plus Tg6F. We found that a WD altered the taxonomic composition of bacteria in jejunum mucus. For example, Akkermansia muciniphila virtually disappeared, while overall bacteria numbers and lipopolysaccharide (LPS) levels increased. In addition, gut permeability increased, as did the content of reactive oxygen species and oxidized phospholipids in jejunum mucus in WD-fed mice. Moreover, gene expression in the jejunum decreased for multiple peptides and proteins that are secreted into the mucous layer of the jejunum that act to limit bacteria numbers and their interaction with enterocytes including regenerating islet-derived proteins, defensins, mucin 2, surfactant A, and apoA-I. Following WD, gene expression also decreased for Il36γ, Il23, and Il22, cytokines critical for antimicrobial activity. WD decreased expression of both Atoh1 and Gfi1, genes required for the formation of goblet and Paneth cells, and immunohistochemistry revealed decreased numbers of goblet and Paneth cells. Adding Tg6F ameliorated these WD-mediated changes. Adding oxidized phospholipids ex vivo to the jejunum from mice fed a chow diet reproduced the changes in gene expression in vivo that occurred when the mice were fed WD and were prevented with addition of 6F peptide. We conclude that Tg6F ameliorates the WD-mediated increase in oxidized phospholipids that cause changes in jejunum mucus, which induce dysbiosis and systemic inflammation.
我们之前曾报道过,在西方饮食(WD)中添加表达载脂蛋白 A-I 模拟肽 6F(Tg6F)的转基因番茄浓缩物可改善全身炎症。为了确定这些观察结果的机制,我们用普通饲料、WD 或 WD 加 Tg6F 喂养 LDLR 小鼠。我们发现 WD 改变了空肠粘液中细菌的分类组成。例如,阿克曼氏菌几乎消失,而总细菌数量和脂多糖(LPS)水平增加。此外,WD 喂养的小鼠肠道通透性增加,空肠粘液中的活性氧和氧化磷脂含量增加。此外,在 WD 喂养的小鼠中,多种分泌到空肠粘液层以限制细菌数量及其与肠细胞相互作用的肽和蛋白质的基因表达减少,包括再生胰岛衍生蛋白、防御素、粘蛋白 2、表面活性剂 A 和载脂蛋白 A-I。在 WD 之后,IL36γ、IL23 和 IL22 的基因表达也减少,这些细胞因子对于抗菌活性至关重要。WD 降低了 Atoh1 和 Gfi1 的表达,这两种基因对于杯状细胞和潘氏细胞的形成是必需的,免疫组织化学显示杯状细胞和潘氏细胞的数量减少。添加 Tg6F 改善了这些 WD 介导的变化。将氧化磷脂体外添加到喂食普通饮食的小鼠的空肠中,复制了在喂食 WD 时体内发生的基因表达变化,并且添加 6F 肽可预防这些变化。我们得出结论,Tg6F 改善了 WD 介导的氧化磷脂增加,导致空肠粘液发生变化,从而引起肠道微生物失调和全身炎症。