TNF inhibits NKCC2 phosphorylation by a calcineurin-dependent pathway.

IF 3.4 American journal of physiology. Renal physiology Pub Date : 2025-04-01 Epub Date: 2025-03-10 DOI:10.1152/ajprenal.00251.2024
Shoujin Hao, Anna Pia Lasaracina, Jarred Epps, Nicholas R Ferreri
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Abstract

We previously demonstrated that tumor necrosis factor-alpha (TNF) inhibits Na+-K+-2Cl- cotransporter (NKCC2) phosphorylation in the thick ascending limb (TAL); however, the underlying mechanism remains unclear. We tested the hypothesis that the induction of calcineurin (CN) activity and the expression of CN isoforms contribute to the mechanism by which TNF inhibits phospho-NKCC2 (pNKCC2) expression. CN activity increased by approximately twofold in primary cultures of medullary (m)TAL cells challenged with mouse recombinant TNF. In contrast, silencing TNF production in mTAL cells using lentivirus U6-TNF-ex4 reduced CN activity. pNKCC2 expression decreased in mTAL cells challenged with TNF, whereas inhibition of CN activity with cyclosporine A (CsA) increased pNKCC2 expression. Although mTAL cells express both the calcineurin A subunit (CNA) α and β isoforms, only CNA β isoform mRNA increased after mTAL cells were challenged with TNF. In vivo, both TNF and CNA β expression increased in outer medulla (OM) from mice given 1% NaCl in the drinking water for 7 days and intrarenal lentivirus silencing of TNF selectively reduced expression of CNA β. Intrarenal injection of a lentivirus that specifically silenced CNA β (U6-CNAβ-ex6) increased pNKCC2 expression and attenuated the inhibitory effects of TNF on pNKCC2 expression in freshly isolated TAL tubules. Collectively, the study is the first to demonstrate that TNF increases CN activity and specifically induces β-isoform expression in the kidney. Since NKCC2 is a known target of the CNA β isoform, these findings suggest that a CN-dependent signaling pathway involving this isoform contributes to the mechanism by which TNF inhibits pNKCC2 expression.NEW & NOTEWORTHY The beneficial immunosuppressive effects of CsA are tempered by renal side effects including reduction of GFR, proximal tubule damage, reduced urinary concentration, fibrosis and hypertension. As chronic administration of CN inhibitors frequently induce hypertension and renal nephropathy in humans, understanding the molecular mechanisms by which CN isoforms regulate the activity of renal transporters may provide the framework for developing new drugs that more selectively modulate the diverse functions of CN.

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TNF通过钙调磷酸酶依赖途径抑制NKCC2磷酸化。
我们之前证明TNF抑制NKCC2在厚升肢(TAL)中的磷酸化;然而,其潜在机制尚不清楚。我们验证了一个假设,即钙调磷酸酶(CN)活性的诱导和CN异构体的表达参与了TNF抑制磷酸化- nkcc2 (pNKCC2)表达的机制。在原代培养的小鼠重组TNF激发的髓质TAL细胞中,CN活性增加了大约2倍。相反,使用慢病毒U6-TNF-ex4沉默金属tal细胞中TNF的产生可降低CN活性。pNKCC2在TNF刺激的tal细胞中表达降低,而环孢素A (CsA)抑制CN活性可增加pNKCC2的表达。尽管mTAL细胞同时表达钙调神经磷酸酶A亚基(CNA) A和b亚型,但TNF刺激后只有CNA b亚型mRNA升高。在体内,给予1% NaCl饮用水7天的小鼠的外髓质(OM)中TNF和CNAb的表达均增加,肾内慢病毒沉默TNF选择性地降低CNAb的表达。肾内注射特异性沉默CNAb (U6-CNAb-ex6)的慢病毒可增加pNKCC2的表达,并减弱TNF对新鲜分离的TAL小管中pNKCC2表达的抑制作用。总的来说,该研究首次证明TNF增加CN活性并特异性诱导肾脏中β-异构体的表达。由于NKCC2是已知的CNA b异构体的靶标,这些发现表明,涉及该异构体的cn依赖信号通路有助于TNF抑制pNKCC2表达的机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Correction for Trott et al., volume 315, 2018, p. F1855-F1868. Correction for Hamatani et al., volume 330, 2026, p. F269-F284. The transcription factor Tcf21 is necessary for adoption of cell fates by Foxd1+ stromal progenitors during kidney development. Making a portal for podocyte-parietal cell communication in glomerular injury. Kidney kallikrein-1 contributes to cleavage of γ-ENaC in vivo.
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