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ADAM17‐mediated CD44 cleavage promotes orasphere formation or stemness and tumorigenesis in HNSCC

机译:ADAM17介导的CD44裂解促进HNSCC的眼圈形成或干化和肿瘤发生

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AbstractCD44, an extracellular matrix (ECM) receptor, has been described as a cancer stem cell marker in multiple cancers, including head and neck squamous cell carcinoma (HNSCC). HNSCC orasphere formation or stemness was characterized by cleavage of CD44, and thus we hypothesized that this proteolytic processing may be critical to stemness and tumorigenesis. We tested this hypothesis by examining the mechanisms that regulate this process in vitro and in vivo, and by exploring its clinical relevance in human specimens. Sphere assays have been used to evaluate stemness in vitro. Spheres comprised of HNSCC cells or oraspheres and an oral cancer mouse model were used to examine the significance of CD44 cleavage using stable suppression and inhibition approaches. These mechanisms were also examined in HNSCC specimens. Oraspheres exhibited increased levels of CD44 cleavage compared to their adherent counterparts. Given that disintegrin and metalloproteinase domain-containing protein 17 (ADAM17) is a major matrix metalloproteinase known to cleave CD44, we chemically inhibited and stably suppressed ADAM17 expression in HNSCC cells and found that these treatments blocked CD44 cleavage and abrogated orasphere formation. Furthermore, stable suppression of ADAM17 in HNSCC cells also diminished tumorigenesis in an oral cancer mouse model. Consistently, stable suppression of CD44 in HNSCC cells abrogated orasphere formation and inhibited tumorigenesis in vivo. The clinical relevance of these findings was confirmed in matched primary and metastatic human HNSCC specimens, which exhibited increased levels of ADAM17 expression and concomitant CD44 cleavage compared to controls. CD44 cleavage by ADAM17 is critical to orasphere formation or stemness and HNSCC tumorigenesis.
机译:摘要CD44是一种细胞外基质(ECM)受体,已被描述为多种癌症的癌症干细胞标志物,包括头颈部鳞状细胞癌(HNSCC)。 HNSCC孔球的形成或干性以CD44的裂解为特征,因此我们假设这种蛋白水解过程可能对干性和肿瘤发生至关重要。我们通过检查在体外和体内调节该过程的机制,并探索其在人类标本中的临床意义,检验了这一假设。球形测定已用于评估体外干性。使用由HNSCC细胞或口腔球组成的球体和口腔癌小鼠模型,使用稳定的抑制和抑制方法检查CD44裂解的意义。在HNSCC标本中也检查了这些机制。与粘附的对应物相比,Oraspheres表现出增加的CD44裂解水平。鉴于含解整合素和含金属蛋白酶结构域的蛋白17(ADAM17)是已知的可裂解CD44的主要基质金属蛋白酶,我们化学抑制并稳定抑制了HNSCC细胞中ADAM17的表达,并发现这些处理可阻断CD44裂解和废除孔球形成。此外,HNSCC细胞中ADAM17的稳定抑制也减少了口腔癌小鼠模型的肿瘤发生。一致地,稳定抑制HNSCC细胞中的CD44可以消除孔球形成并抑制体内肿瘤发生。这些发现的临床相关性在匹配的原发性和转移性人类HNSCC标本中得到了证实,与对照组相比,标本显示出ADAM17表达水平的提高和伴随的CD44裂解。 ADAM17对CD44的切割对于孔球形成或干和HNSCC肿瘤发生至关重要。

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