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Phosphoproteome and transcription factor activity profiling identify actions of the anti-inflammatory agent UTL-5g in LPS stimulated RAW 264.7 cells including disrupting actin remodeling and STAT-3 activation

机译:磷酸化蛋白质组和转录因子活性分析鉴定了抗炎剂UTL-5g在LPS刺激的RAW 264.7细胞中的作用包括破坏肌动蛋白重塑和STAT-3活化

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摘要

UTL-5g is a novel small-molecule TNF-alpha modulator. It reduces cisplatin-induced side effects by protecting kidney, liver, and platelets, thereby increasing tolerance for cisplatin. UTL-5g also reduces radiation-induced acute liver toxicity. The mechanism of action for UTL-5g is not clear at the present time. A phosphoproteomic analysis to a depth of 4943 phosphopeptides and a luminescence-based transcription factor activity assay were used to provide complementary analyses of signaling events that were disrupted by UTL-5g in RAW 264.7 cells. Transcriptional activity downstream of the interferon gamma, IL-6, type 1 Interferon, TGF-β, PKC/Ca2+ and the glucocorticoid receptor pathways were disrupted by UTL-5g.Phosphoproteomic analysis indicated that hyperphosphorylation of proteins involved in actin remodeling was suppressed by UTL-5g (gene set analysis, FDR < 1%) as was phosphorylation of Stat3, consistent with the IL-6 results in the transcription factor assay. Neither analysis indicated that LPS-induced activation of the NF-κB, cAMP/PKA and JNK signaling pathways were affected by UTL-5g. This global characterization of UTL-5g activity in a macrophage cell line discovered that it disrupts selected aspects of LPS signaling including Stat3 activation and actin remodeling providing new insight on how UTL-5g acts to reduce cisplatin-induced side effects.
机译:UTL-5g是新型的小分子TNF-α调节剂。它通过保护肾脏,肝脏和血小板减少顺铂引起的副作用,从而提高对顺铂的耐受性。 UTL-5g还可以减少辐射引起的急性肝毒性。 UTL-5g的作用机理目前尚不清楚。磷酸蛋白质组学分析对4943磷酸肽的深度和基于发光的转录因子活性分析可用于提供信号分析事件的补充分析,这些信号事件在RAW 264.7细胞中被UTL-5g破坏。干扰素γ,IL-6、1型干扰素,TGF-β,PKC / Ca 2 + 和糖皮质激素受体的下游转录活性被UTL-5g破坏。磷酸化蛋白质组学分析表明,肌动蛋白重塑相关蛋白被UTL-5g抑制(基因组分析,FDR <1%),Stat3的磷酸化也被抑制,这与转录因子测定中的IL-6结果一致。两项分析均未表明UTL-5g会影响LPS诱导的NF-κB,cAMP / PKA和JNK信号通路的激活。巨噬细胞系中UTL-5g活性的这种全球表征发现,它破坏了LPS信号传导的选定方面,包括Stat3激活和肌动蛋白重塑,从而提供了有关UTL-5g如何减少顺铂诱导的副作用的新见识。

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