RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Breast cancer bone metastasis and bone metastatic cells retain NKG2DLs intracellularly: could this be a strategy to evade immune recognition?
Breast cancer bone metastasis and bone metastatic cells retain NKG2DLs intracellularly: could this be a strategy to evade immune recognition?
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骨转移显著恶化乳腺癌(BC)预后,降低总生存期。自然杀伤(NK)细胞通过识别癌细胞上的 NKG2D 受体配体(NKG2DLs)并与之相互作用来识别和消灭恶性细胞。肿瘤常通过下调 NKG2DLs 表达来逃避 NK 监视并避免被识别,但这是否发生在骨转移中仍不清楚。
本研究探讨原发性 BC 和骨转移(BoMet)中 NKG2DLs 下调的机制。在 BC 组织(伴和不伴转移)、配对骨转移性导管癌(bmDC)、BoMet 以及不同侵袭性的 BC 细胞系中,研究了 NKG2D/NKG2DL 轴组分的表达和定位。在 bmDC 和 BoMet 中,主要组织相容性复合体 I 类链相关蛋白 A 和 B(MICA/B)以及 UL16 结合蛋白 2(ULBP2)定位于核周区域,而非转移性 BC 中则主要呈胞质分布。类似地,侵袭性 MDA-MB-231 和 MDA-BoM-1833 显示 NKG2DLs 核周定位并与高尔基体共定位,而侵袭性较低的 MCF7 则显示明显的胞质分布。NKG2DLs 在膜和细胞骨架组分中的积聚进一步支持这一模式。
此外,当 N-糖基化受损时,转移性细胞系中的 NKG2DLs 无法到达细胞表面,而仍通过高尔基体运输并递送至质膜,导致表面表达增加,与正确糖基化无关。
我们的发现表明,侵袭性和骨转移性乳腺癌细胞比非转移性乳腺癌细胞更依赖正确的糖基化和细胞内运输来实现 NKG2DL 表面表达。这一差异可能对潜在的免疫逃逸机制以及针对乳腺癌骨转移的治疗策略开发具有重要意义。
Bone metastases dramatically worsen breast cancer (BC) prognosis reducing overall survival. Natural killer (NK) cells recognize and eliminate malignant cells through the interaction with NKG2D receptor ligands (NKG2DLs) on cancer cells. Tumors often evade NK surveillance by downregulating the NKG2DLs expression and avoid recognition, but whether this occurs in bone metastases remains unclear.
This study investigates mechanisms of NKG2DLs downregulation in primary BC and bone metastases (BoMet). Expression and localization of the NKG2D/NKG2DL axis components were investigated in BC tissues (with and without metastases), paired bone metastatic ductal carcinoma (bmDC), BoMet, and in BC cells lines of varying invasiveness.
In bmDC and BoMet, major histocompatibility complex class I chain-related protein A and B (MICA/B) and UL16-binding protein 2 (ULBP2) localized in perinuclear area, contrasting with predominantly cytosolic distribution in non-metastatic BC. Similarly, invasive MDA-MB-231 and MDA-BoM-1833 showed NKG2DLs perinuclear localization and co-localization with the Golgi apparatus, while less invasive MCF7 showed a prominent cytosolic distribution. Accumulation of NKG2DLs in membrane and cytoskeletal fractions further supports this pattern.
Additionally, when N-glycosilation is impaired, NKG2DLs fail to reach the cell surface in metastatic cell lines, while are still transported through the Golgi apparatus and delivered to the plasma membrane, resulting in increased surface expression irrespective of correct glycosylation.
Our findings suggest that invasive and bone-metastatic breast cancer cells are more dependent on correct glycosylation and intracellular trafficking for NKG2DL surface expression than non-metastatic breast cancer cells. This difference may have important implications for potential immune evasion mechanisms and for the development of therapeutic strategies targeting bone metastases in breast cancer.
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