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钙流入通道调控的 O-GlcNAc 化平衡控制多发性骨髓瘤的扩散。

O-GlcNAcylation homeostasis controlled by calcium influx channels regulates multiple myeloma dissemination.

机构信息

Graduate Program in Immunology, Department of Immunology, Faculty of Medicine Siriraj Hospital, Mahidol University, Bangkok, Thailand.

Siriraj Center of Excellence for Stem Cell Research, Faculty of Medicine Siriraj Hospital, Mahidol University, 2 Siriraj Hospital, Bangkoknoi, Bangkok, 10700, Thailand.

出版信息

J Exp Clin Cancer Res. 2021 Mar 16;40(1):100. doi: 10.1186/s13046-021-01876-z.

Abstract

BACKGROUND

Multiple myeloma (MM) cell motility is a critical step during MM dissemination throughout the body, but how it is regulated remains largely unknown. As hypercalcemia is an important clinical feature of MM, high calcium (Ca) and altered Ca signaling could be a key contributing factor to the pathological process.

METHODS

Bioinformatics analyses were employed to assess the clinical significance of Ca influx channels in clinical specimens of smoldering and symptomatic MM. Functional and regulatory roles of influx channels and downstream signaling in MM cell migration and invasion were conducted and experimental MM dissemination was examined in a xenograft mouse model using in vivo live imaging and engraftment analysis.

RESULTS

Inhibition of TRPM7, ORAI1, and STIM1 influx channels, which are highly expressed in MM patients, and subsequent blockage of Ca influx by CRISPR/Cas9 and small molecule inhibitors, effectively inhibit MM cell migration and invasion, and attenuate the experimental MM dissemination. Mechanistic studies reveal a nutrient sensor O-GlcNAcylation as a downstream regulator of Ca influx that specifically targets cell adhesion molecules. Hyper-O-GlcNAcylation following the inhibition of Ca influx channels induces integrin α4 and integrin β7 downregulation via ubiquitin-proteasomal degradation and represses the aggressive MM phenotype.

CONCLUSIONS

Our findings unveil a novel regulatory mechanism of MM cell motility via Ca influx/O-GlcNAcylation axis that directly targets integrin α4 and integrin β7, providing mechanistic insights into the pathogenesis and progression of MM and demonstrating potential predictive biomarkers and therapeutic targets for advanced MM.

摘要

背景

多发性骨髓瘤(MM)细胞的迁移能力是 MM 全身扩散过程中的关键步骤,但目前其调控机制仍知之甚少。高钙血症是 MM 的重要临床特征,因此过高的钙(Ca)和 Ca 信号的改变可能是导致病理性进程的关键因素。

方法

采用生物信息学分析方法评估 Ca 内流通道在惰性和有症状 MM 临床标本中的临床意义。研究了内流通道及其下游信号在 MM 细胞迁移和侵袭中的功能和调节作用,并在异种移植小鼠模型中通过体内活体成像和移植分析研究了实验性 MM 的传播。

结果

抑制在 MM 患者中高表达的 TRPM7、ORAI1 和 STIM1 内流通道,以及通过 CRISPR/Cas9 和小分子抑制剂阻断 Ca 内流,可有效抑制 MM 细胞的迁移和侵袭,并减轻实验性 MM 的传播。机制研究揭示了一种营养传感器 O-GlcNAc 化作为 Ca 内流的下游调节剂,其特异性靶向细胞黏附分子。抑制 Ca 内流通道后 O-GlcNAc 化过度会通过泛素-蛋白酶体降解下调整合素 α4 和整合素 β7,并抑制侵袭性 MM 表型。

结论

我们的研究结果揭示了通过 Ca 内流/O-GlcNAc 轴调控 MM 细胞迁移的新机制,该机制直接靶向整合素 α4 和整合素 β7,为 MM 的发病机制和进展提供了机制上的见解,并为晚期 MM 提供了潜在的预测生物标志物和治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a22/7968185/cff0cb3c7c5d/13046_2021_1876_Fig1_HTML.jpg

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