International Institute of Molecular and Cell Biology in Warsaw, Warsaw, Poland.
Medical University of Warsaw, Warsaw, Poland.
Am J Hematol. 2024 Apr;99(4):543-554. doi: 10.1002/ajh.27223. Epub 2024 Jan 31.
BMP6 is an iron-sensing cytokine whose transcription in liver sinusoidal endothelial cells (LSECs) is enhanced by high iron levels, a step that precedes the induction of the iron-regulatory hormone hepcidin. While several reports suggested a cell-autonomous induction of Bmp6 by iron-triggered signals, likely via sensing of oxidative stress by the transcription factor NRF2, other studies proposed the dominant role of a paracrine yet unidentified signal released by iron-loaded hepatocytes. To further explore the mechanisms of Bmp6 transcriptional regulation, we used female mice aged 10-11 months, which are characterized by hepatocytic but not LSEC iron accumulation, and no evidence of systemic iron overload. We found that LSECs of aged mice exhibit increased Bmp6 mRNA levels as compared to young controls, but do not show a transcriptional signature characteristic of activated NFR2-mediated signaling in FACS-sorted LSECs. We further observed that primary murine LSECs derived from both wild-type and NRF2 knock-out mice induce Bmp6 expression in response to iron exposure. By analyzing transcriptomic data of FACS-sorted LSECs from aged versus young mice, as well as early after iron citrate injections, we identified ETS1 as a candidate transcription factor involved in Bmp6 transcriptional regulation. By performing siRNA-mediated knockdown, small-molecule treatments, and chromatin immunoprecipitation in primary LSECs, we show that Bmp6 transcription is regulated by iron via ETS1 and p38/JNK MAP kinase-mediated signaling, at least in part independently of NRF2. Thereby, these findings identify the new components of LSEC iron sensing machinery broadly associated with cellular stress responses.
BMP6 是一种铁感应细胞因子,其在肝窦内皮细胞(LSEC)中的转录被高水平的铁所增强,这是诱导铁调节激素 hepcidin 的一个步骤。虽然有几项报道表明铁触发的信号可能通过转录因子 NRF2 对氧化应激的感知,导致 Bmp6 的细胞自主诱导,但其他研究提出了铁负荷肝细胞释放的旁分泌但未识别信号的主导作用。为了进一步探讨 Bmp6 转录调控的机制,我们使用了年龄为 10-11 个月的雌性小鼠,这些小鼠的特征是肝细胞而非 LSEC 铁积累,并且没有全身铁过载的证据。我们发现,与年轻对照组相比,老年小鼠的 LSEC 表现出 Bmp6 mRNA 水平的增加,但在 FACS 分选的 LSEC 中未显示出与激活的 NFR2 介导信号相关的转录特征。我们进一步观察到,来自野生型和 NRF2 敲除小鼠的原代鼠 LSEC 在暴露于铁时诱导 Bmp6 表达。通过分析来自老年和年轻小鼠的 FACS 分选的 LSEC 的转录组数据,以及铁柠檬酸注射后的早期,我们将 ETS1 鉴定为参与 Bmp6 转录调控的候选转录因子。通过在原代 LSEC 中进行 siRNA 介导的敲低、小分子处理和染色质免疫沉淀,我们表明 Bmp6 转录受铁通过 ETS1 和 p38/JNK MAP 激酶介导的信号的调节,至少部分独立于 NRF2。因此,这些发现确定了与细胞应激反应广泛相关的 LSEC 铁感应机制的新成分。