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Heme Oxygenases: Cellular Multifunctional and Protective Molecules against UV-Induced Oxidative Stress

机译:血红素氧基酶:对紫外线诱导氧化应激的细胞多功能和保护分子

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Ultraviolet (UV) irradiation can be considered as a double-edged sword: not only is it a crucial environmental factor that can cause skin-related disorders but it can also be used for phototherapy of skin diseases. Inducible heme oxygenase-1 (HO-1) in response to a variety of stimuli, including UV exposure, is vital to maintain cell homeostasis. Heme oxygenase-2 (HO-2), another member of the heme oxygenase family, is constitutively expressed. In this review, we discuss how heme oxygenase (HO), a vital rate-limiting enzyme, participates in heme catabolism and cytoprotection. Phylogenetic analysis showed that there may exist a functional differentiation between HO-1 and HO-2 during evolution. Furthermore, depending on functions in immunomodulation and antioxidation, HO-1 participates in disease progression, especially in pathogenesis of skin diseases, such as vitiligo and psoriasis. To further investigate the particular role of HO-1 in diseases, we summarized the profile of the HO enzyme system and its related signaling pathways, such as Nrf2 and endoplasmic reticulum crucial signaling, both known to regulate HO-1 expression. Furthermore, we report on a C-terminal truncation of HO-1, which is generally considered as a signal molecule. Also, a newly identified alternative splice isoform of HO-1 not only provides us a novel perspective on comprehensive HO-1 alternative splicing but also offers us a basis to clarify the relationship between HO-1 transcripts and oxidative diseases. To conclude, the HO system is not only involved in heme catabolism but also involved in biological processes related to the pathogenesis of certain diseases, even though the mechanism of disease progression still remains sketchy. Further understanding the role of the HO system and its relationship to UV is helpful for revealing the HO-related signaling networks and the pathogenesis of many diseases.
机译:紫外线(UV)辐射可以被认为是双刃剑:不仅是可能导致皮肤相关疾病的重要环境因素,但它也可用于皮肤病的光疗法。诱导血红素氧酶-1(HO-1)响应各种刺激,包括紫外线暴露,对维持细胞稳态至关重要。血红素氧合酶-2(HO-2),血红素氧酶系列的另一个成员组成型成分表达。在本文中,我们讨论了血红素氧酶(HO)如何,一种重要的速率限制酶,参与血红素分解代谢和细胞保护。系统发育分析表明,在进化期间HO-1和HO-2之间可能存在功能分化。此外,根据免疫调节和抗氧化的功能,HO-1参与疾病进展,尤其是皮肤病的发病机制,如白癜风和牛皮癣。为了进一步研究HO-1在疾病中的特殊作用,我们总结了HO酶系统及其相关信号通路的概况,例如NRF2和内质网的关键信号传导,既已知调节HO-1表达。此外,我们报告了HO-1的C末端截短,其通常被认为是信号分子。此外,HO-1的新识别的替代剪接同种型不仅为我们提供了一种关于综合HO-1替代剪接的新型视角,而且还为我们提供了阐明HO-1转录物和氧化疾病之间的关系的基础。为了得出结论,HO系统不仅涉及血红素分解代谢,还参与了与某些疾病发病机制有关的生物过程,即使疾病进展仍然粗略仍然存在。进一步了解HO系统的作用及其与UV的关系有助于揭示HO相关的信号网络和许多疾病的发病机制。

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