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AUF-1 敲低在小鼠中破坏了肠道微生物丁酸驱动的降胆固醇血症,通过 AUF-1-Dicer-1-mir-122 级联反应。

AUF-1 knockdown in mice undermines gut microbial butyrate-driven hypocholesterolemia through AUF-1-Dicer-1-mir-122 hierarchy.

机构信息

Department of Immunology, Indian Council of Medical Research-National Institute of Cholera and Enteric Diseases, Kolkata, India.

School of Applied and Interdisciplinary Sciences, Indian Associations for Cultivation of Science, Kolkata, India.

出版信息

Front Cell Infect Microbiol. 2022 Dec 19;12:1011386. doi: 10.3389/fcimb.2022.1011386. eCollection 2022.

Abstract

INTRODUCTION AND OBJECTIVE

Cholesterol homeostasis is a culmination of cellular synthesis, efflux, and catabolism to important physiological entities where short chain fatty acid, butyrate embodied as a key player. This discourse probes the mechanistic molecular details of butyrate action in maintaining host-cholesterol balance.

METHODS

Hepatic mir-122 being the most indispensable regulator of cholesterol metabolic enzymes, we studied upstream players of mir-122 biogenesis in the presence and absence of butyrate in Huh7 cells and mice model. We synthesized unique self-transfecting GMO (guanidinium-morpholino-oligo) linked PMO (Phosphorodiamidate-Morpholino Oligo)-based antisense cell-penetrating reagent to selectively knock down the key player in butyrate mediated cholesterol regulation.

RESULTS

We showed that butyrate treatment caused upregulation of RNA-binding protein, AUF1 resulting in RNase-III nuclease, Dicer1 instability, and significant diminution of mir-122. We proved the importance of AUF1 and sequential downstream players in AUF1-knock-down mice. Injection of GMO-PMO of AUF1 in mouse caused near absence of AUF1 coupled with increased Dicer1 and mir-122, and reduced serum cholesterol regardless of butyrate treatment indicating that butyrate acts through AUF1.

CONCLUSION

The roster of intracellular players was as follows: AUF1-Dicer1-mir-122 for triggering butyrate driven hypocholesterolemia. To our knowledge this is the first report linking AUF-1 with cholesterol biogenesis.

摘要

简介与目的

胆固醇稳态是细胞合成、外排和分解代谢为短链脂肪酸(丁酸)等重要生理实体的结果,丁酸是其中的关键参与者。本研究探讨了丁酸在维持宿主胆固醇平衡中的作用机制分子细节。

方法

肝 miR-122 是胆固醇代谢酶最不可或缺的调节剂,我们研究了在存在和不存在丁酸的情况下 Huh7 细胞和小鼠模型中 miR-122 生物发生的上游调控因子。我们合成了独特的自转染 GMO(胍基-吗啉-寡核苷酸)连接 PMO(磷酰二酰胺-吗啉寡核苷酸)基于反义细胞穿透试剂,以选择性敲低丁酸介导的胆固醇调节中的关键调控因子。

结果

我们表明,丁酸处理导致 RNA 结合蛋白 AUF1 的上调,从而导致核糖核酸酶 III 核酸酶 Dicer1 的不稳定性,以及 miR-122 的显著减少。我们证明了 AUF1 和下游关键调控因子在 AUF1 敲除小鼠中的重要性。AUF1 的 GMO-PMO 注射到小鼠体内会导致 AUF1 几乎不存在,同时伴随着 Dicer1 和 miR-122 的增加,以及血清胆固醇的降低,无论丁酸治疗与否,这表明丁酸通过 AUF1 起作用。

结论

细胞内调控因子的作用机制如下:AUF1-Dicer1-mir-122 触发丁酸驱动的降胆固醇作用。据我们所知,这是首次将 AUF-1 与胆固醇生物合成联系起来的报道。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ecc/9806232/abe0bd7f67ac/fcimb-12-1011386-g001.jpg

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