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小鼠中SGLT2阳性早期近端肾小管节段的转录组学:对1型糖尿病、SGLT1/2抑制或GLP1受体激动的反应。

Transcriptomics of SGLT2-positive early proximal tubule segments in mice: response to type 1 diabetes, SGLT1/2 inhibition, or GLP1 receptor agonism.

作者信息

Kim Young Chul, Das Vivek, Kanoo Sadhana, Yao Huazhen, Stanford Stephanie M, Bottini Nunzio, Karihaloo Anil, Vallon Volker

机构信息

Division of Nephrology & Hypertension, Department of Medicine, University of California San Diego, La Jolla, California, United States.

VA San Diego Healthcare System, San Diego, California, United States.

出版信息

Am J Physiol Renal Physiol. 2025 Jan 1;328(1):F68-F81. doi: 10.1152/ajprenal.00231.2024. Epub 2024 Nov 26.

Abstract

SGLT2 inhibitors (SGLT2i) and GLP1 receptor (GLP1R) agonists have kidney protective effects. To better understand their molecular effects, RNA sequencing was performed in SGLT2-positive proximal tubule segments isolated by immunostaining-guided laser capture microdissection. Male adult DBA wild-type (WT) and littermate diabetic Akita mice ± knockout (-KO) were given vehicle or SGLT2i dapagliflozin (dapa; 10 mg/kg diet) for 2 wk, and other Akita mice received GLP1R agonist semaglutide [sema; 3 nmol/(kg body wt·day), sc]. Dapa (254 ± 11 mg/dL) and -KO (367 ± 11 mg/dL) but not sema (407 ± 44 mg/dL) significantly reduced hyperglycemia in Akita mice (480 ± 33 mg/dL). The 20,748 detected annotated protein-coding genes included robust enrichment of S1-segment marker genes. Akita showed 198 (∼1%) differentially expressed genes versus WT (DEGs; adjusted ≤ 0.1), including downregulation of anionic transport, unsaturated fatty acid, and carboxylic acid metabolism. Dapa changed only two genes in WT but restored 43% of DEGs in Akita, including upregulation of the lipid metabolic pathway, carboxylic acid metabolism, and organic anion transport. In Akita, sema restored ∼10% of DEGs, and -KO and dapa were synergistic (restored ∼61%), possibly involving additive blood glucose effects (193 ± 15 mg/dL). Targeted analysis of transporters and channels ( test, < 0.05) revealed that ∼10% of 526 detectable transporters and channels were downregulated by Akita, with ∼60% restored by dapa. Dapa, dapa + -KO, and sema also altered Akita-insensitive genes. Among DEGs in Akita, ∼30% were unresponsive to any treatment, indicating potential new targets. In conclusion, SGLT2i restored transcription for multiple metabolic pathways and transporters in SGLT2-positive proximal tubule segments in diabetic mice, with a smaller effect also observed for GLP1R agonism. SGLT2 inhibitors and GLP1 receptor agonists have kidney protective effects. By combining immunostaining-guided laser capture microdissection and RNA sequencing, the study established how the gene expression profile changes in SGLT2-positive proximal tubule cells in response to type 1 Akita diabetes and to pharmacological intervention by SGLT2 inhibition or GLP1R agonism and genetic deletion of SGLT1. The data also indicate genes unresponsive to those treatments that may include new therapeutical candidates.

摘要

钠-葡萄糖协同转运蛋白2抑制剂(SGLT2i)和胰高血糖素样肽1受体(GLP1R)激动剂具有肾脏保护作用。为了更好地了解它们的分子效应,我们对通过免疫染色引导的激光捕获显微切割分离出的SGLT2阳性近端小管节段进行了RNA测序。给成年雄性DBA野生型(WT)和同窝出生的糖尿病阿基塔小鼠(±敲除(-KO))给予赋形剂或SGLT2i达格列净(dapa;10 mg/kg饮食),持续2周,其他阿基塔小鼠接受GLP1R激动剂司美格鲁肽[sema;3 nmol/(kg体重·天),皮下注射]。Dapa(254±11 mg/dL)和-KO(367±11 mg/dL)可显著降低阿基塔小鼠(480±33 mg/dL)的高血糖水平,但sema(407±44 mg/dL)无此作用。检测到的20,748个注释蛋白编码基因中包括S1节段标记基因的大量富集。与WT相比,阿基塔小鼠显示出198个(约1%)差异表达基因(DEGs;校正后≤0.1),包括阴离子转运、不饱和脂肪酸和羧酸代谢的下调。Dapa仅改变了WT中的两个基因,但恢复了阿基塔小鼠中43%的DEGs,包括脂质代谢途径、羧酸代谢和有机阴离子转运的上调。在阿基塔小鼠中,sema恢复了约10%的DEGs,-KO和dapa具有协同作用(恢复了约61%),可能涉及血糖的相加效应(193±15 mg/dL)。对转运体和通道的靶向分析(检验,P<0.05)显示,526个可检测的转运体和通道中约10%被阿基塔小鼠下调,约60%被dapa恢复。Dapa、dapa + -KO和sema也改变了阿基塔小鼠不敏感的基因。在阿基塔小鼠的DEGs中,约30%对任何治疗均无反应,表明存在潜在的新靶点。总之,SGLT2i恢复了糖尿病小鼠SGLT2阳性近端小管节段中多种代谢途径和转运体的转录,GLP1R激动作用的效果较小。SGLT2抑制剂和GLP1受体激动剂具有肾脏保护作用。通过结合免疫染色引导的激光捕获显微切割和RNA测序,该研究确定了SGLT2阳性近端小管细胞中基因表达谱如何响应1型阿基塔糖尿病以及SGLT2抑制、GLP1R激动和SGLT1基因缺失的药物干预而发生变化。数据还表明了对这些治疗无反应的基因,这些基因可能包括新的治疗候选物。

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