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TAK1 蛋白激酶活性对于髓样细胞中的 TLR 信号和细胞因子产生是必需的。

TAK1 protein kinase activity is required for TLR signalling and cytokine production in myeloid cells.

机构信息

MRC Protein Phosphorylation and Ubiquitylation Unit, School of Life Sciences, University of Dundee, Dundee, Scotland.

Division of Cell Signalling and Immunology, School of Life Sciences, University of Dundee, Dundee, Scotland.

出版信息

Biochem J. 2022 Sep 16;479(17):1891-1907. doi: 10.1042/BCJ20220314.

Abstract

A conditional knock-in mouse was generated in which the TAK1 catalytic subunit was largely replaced by the kinase-inactive TAK1[D175A] mutant in immune cells. The activation of p38α MAP kinase, c-Jun N-terminal kinases 1 and 2 (JNK1/2) and the canonical IKK complex induced by stimulation with several TLR-activating ligands was reduced in bone marrow-derived macrophages (BMDM) from TAK1[D175A] mice. TLR signalling in TAK1[D175A] BMDM was catalysed by the residual wild-type TAK1 in these cells because it was abolished by either of two structurally unrelated TAK1 inhibitors (NG25 and 5Z-7-oxozeaenol) whose off-target effects do not overlap. The secretion of inflammatory mediators and production of the mRNAs encoding these cytokines induced by TLR ligation was greatly reduced in peritoneal neutrophils or BMDM from TAK1[D175A] mice. The Pam3CSK4- or LPS-stimulated activation of MAP kinases and the canonical IKK complex, as well as cytokine secretion, was also abolished in TAK1 knock-out human THP1 monocytes or macrophages. The results establish that TAK1 protein kinase activity is required for TLR-dependent signalling and cytokine secretion in myeloid cells from mice. We discuss possible reasons why other investigators, studying myeloid mice with a conditional knock-out of TAK1 or a different conditional kinase-inactive knock-in of TAK1, reported TAK1 to be a negative regulator of LPS-signalling and cytokine production in mouse macrophages and neutrophils.

摘要

在免疫细胞中,通过条件性基因敲入产生了一种 TAK1 催化亚基被激酶失活的 TAK1[D175A]突变体大量取代的条件性敲入小鼠。用几种 TLR 激活配体刺激后,骨髓来源的巨噬细胞(BMDM)中 p38α MAP 激酶、c-Jun N 端激酶 1 和 2(JNK1/2)和经典的 IKK 复合物的激活减少。TAK1[D175A]BMDM 中的 TLR 信号由这些细胞中残留的野生型 TAK1 催化,因为两种结构上无关的 TAK1 抑制剂(NG25 和 5Z-7-氧杂豆醇)都能消除其非靶点效应,而这两种抑制剂都能消除 TLR 信号。TAK1[D175A]小鼠腹膜中性粒细胞或 BMDM 中 TLR 连接诱导的炎症介质分泌和这些细胞因子的 mRNA 产生大大减少。TAK1 敲除人 THP1 单核细胞或巨噬细胞中 Pam3CSK4 或 LPS 刺激的 MAP 激酶和经典 IKK 复合物的激活以及细胞因子分泌也被消除。结果表明,TAK1 蛋白激酶活性是小鼠髓样细胞 TLR 依赖性信号和细胞因子分泌所必需的。我们讨论了为什么其他研究人员在研究条件性敲除 TAK1 的髓样小鼠或不同的条件性激酶失活 TAK1 敲入小鼠时,报告 TAK1 是小鼠巨噬细胞和中性粒细胞中 LPS 信号和细胞因子产生的负调节剂的可能原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e653/9555797/a264dd7e940a/BCJ-479-1891-g0001.jpg

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