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首页> 外文期刊>Frontiers in Immunology >Selective Hyaluronan–CD44 Signaling Promotes miRNA-21 Expression and Interacts with Vitamin D Function during Cutaneous Squamous Cell Carcinomas Progression Following UV Irradiation
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Selective Hyaluronan–CD44 Signaling Promotes miRNA-21 Expression and Interacts with Vitamin D Function during Cutaneous Squamous Cell Carcinomas Progression Following UV Irradiation

机译:选择性透明质酸–CD44信号在紫外线照射后皮肤鳞状细胞癌进展过程中促进miRNA-21表达并与维生素D功能相互作用

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摘要

Hyaluronan (HA), the major extracellular matrix component, is often anchored to CD44, a family of structurally/functionally important cell surface receptors. Recent results indicate that UV irradiation (UVR)-induced cutaneous squamous cell carcinomas (SCC) overexpress a variety of CD44 variant isoforms (CD44v), with different CD44v isoforms appear to confer malignant SCC properties. UVR also stimulates HA degradation in epidermal keratinocytes. Both large HA polymers and their UVR-induced catabolic products (small HA) selectively activate CD44-mediated cellular signaling in normal keratinocytes and SCC cells, with all of the downstream processes being mediated by RhoGTPases (e.g., Rac1 and Rho). Importantly, we found that the hormonally active form of vitamin D 1,25(OH)_(2)D_(3)not only prevents the UVR-induced small HA activation of abnormal keratinocyte behavior and SCC progression, but also enhances large HA stimulation of normal keratinocyte activities and epidermal function(s). The aim of this hypothesis and theory article is to question whether matrix HA and its UVR-induced catabolic products (e.g., large and small HA) can selectively activate CD44-mediated cellular signaling such as GTPase (Rac and RhA) activation. We suggested that large HA–CD44 interaction promotes Rac-signaling and normal keratinocyte differentiation (lipid synthesis), DNA repair, and keratinocyte survival function. Conversely, small HA–CD44 interaction stimulates RhoA activation, NFκB/Stat-3 signaling, and miR-21 production, resulting in inflammation and proliferation as well as SCC progression. We also question whether vitamin D treatment displays any effect on small HA–CD44v-mediated RhoA signaling, inflammation, and SCC progression, as well as large HA–CD44-mediated differentiation, DNA repair, keratinocyte survival, and normal keratinocyte function. In addition, we discussed that the topical application of signaling perturbation agents (e.g., Y27623, a ROK inhibitor) may be used to treat certain skin diseases displaying upregulation of keratinocyte proliferation such as psoriasis and actinic keratoses in order to correct the imbalance between Rac and RhoA signaling during various UV irradiation-induced skin diseases in patients. Finally, we proposed that matrix HA/CD44-signaling strategies and matrix HA (HA_(S)vs. HA_(L)or HA_(S)?→?HA_(L))-based therapeutic approaches (together with vitamin D) may be used for the treatment of patients suffering a number of UV irradiation-induced skin diseases (e.g., inflammation, skin cancer, and chronic non-healing wounds).
机译:透明质酸(HA),主要的细胞外基质成分,通常锚定在CD44上,CD44是结构/功能上重要的细胞表面受体家族。最近的结果表明,紫外线照射(UVR)引起的皮肤鳞状细胞癌(SCC)过表达多种CD44变异同工型(CD44v),而不同的CD44v同工型似乎赋予了恶性SCC特性。 UVR还刺激表皮角质形成细胞中的HA降解。大型HA聚合物及其UVR诱导的分解代谢产物(小型HA)均选择性激活正常角质形成细胞和SCC细胞中CD44介导的细胞信号传导,所有下游过程均由RhoGTPases(例如Rac1和Rho)介导。重要的是,我们发现维生素D 1,25(OH)_(2)D_(3)的激素活性形式不仅可以防止UVR诱导的异常角质形成细胞行为和SCC进程的小HA激活,还可以增强大HA刺激正常的角质形成细胞活性和表皮功能该假设和理论文章的目的是质疑基质HA及其UVR诱导的分解代谢产物(例如大和小HA)是否可以选择性激活CD44介导的细胞信号转导,例如GTPase(Rac和RhA)激活。我们建议,大的HA–CD44相互作用可促进Rac信号传导和正常的角质形成细胞分化(脂质合成),DNA修复和角质形成细胞存活功能。相反,小的HA–CD44相互作用刺激RhoA激活,NFκB/ Stat-3信号传导和miR-21产生,从而导致炎症和增殖以及SCC进程。我们还质疑维生素D治疗是否对小HA-CD44v介导的RhoA信号传导,炎症和SCC进程以及大HA-CD44介导的分化,DNA修复,角质形成细胞存活和正常的角质形成细胞功能是否显示任何影响。此外,我们讨论了信号传导干扰剂(例如,Y27623,一种ROK抑制剂)的局部应用可用于治疗某些表现出角化细胞增殖上调的皮肤疾病,例如牛皮癣和光化性角化病,以纠正Rac和Rac之间的失衡。在各种紫外线辐射诱发的患者皮肤疾病中的RhoA信号传导。最后,我们提出基于矩阵HA / CD44的信号传导策略和基于矩阵HA(HA_(S)vs HA_(L)或HA_(S)?→?HA_(L))的治疗方法(以及维生素D)可以用于治疗患有多种紫外线辐射引起的皮肤疾病(例如炎症,皮肤癌和慢性非愈合性伤口)的患者。

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