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:Lentiviral vectors for precise expression to treat X-linked lymphoproliferative disease.
Lentiviral vectors for precise expression to treat X-linked lymphoproliferative disease.
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X连锁淋巴增殖性疾病1型(XLP1)由SH2D1A基因突变导致,影响SLAM相关蛋白(SAP)。调控型慢病毒载体(LV)XLP-SMART LV旨在使T、NK和NKT细胞表达治疗水平的SAP,对有效基因治疗至关重要。研究者实验鉴定了SH2D1A基因的34个基因组调控元件,并设计XLP-SMART LV以模拟SAP的谱系及阶段特异性调控。研究者筛选其在T、NK和NKT细胞中的靶向增强子活性,以及在B细胞和髓系细胞群中的脱靶增强子活性。联合使用其中3种增强子元件,可使体外靶向细胞群中的SAP启动子表达提高至多4倍。采用XLP-SMART LV的NSG-Tg(Hu-IL15)异种移植研究显示,相比对照EFS-LV,靶向细胞中的表达最多提高7倍,且未见脱靶表达。XLP-SMART LV在外周血、骨髓、脾脏及胸腺组织中呈现阶段特异性的T细胞及NK细胞表达模式,与SAP表达模式相似。将XLP1患者CD8阳性T细胞或骨髓CD34阳性细胞用XLP-SMART LV转导后,分别将再刺激诱导的细胞死亡及NK细胞细胞毒性恢复至野生型水平。这些数据证明,构建谱系和阶段特异性LV以通过基因治疗恢复XLP1表型是可行的。
X-linked lymphoproliferative disease (XLP1) results from SH2D1A gene mutations affecting the SLAM-associated protein (SAP). A regulated lentiviral vector (LV), XLP-SMART LV, designed to express SAP at therapeutic levels in T, NK, and NKT cells, is crucial for effective gene therapy.
We experimentally identified 34 genomic regulatory elements of the SH2D1A gene and designed XLP-SMART LVs to emulate the lineage and stage-specific control of SAP.
We screened them for their on-target enhancer activity in T, NK, and NKT cells and their off-target enhancer activity in B cell and myeloid populations. In combination, three enhancer elements increased SAP promoter expression up to 4-fold in on-target populations in vitro . NSG-Tg(Hu-IL15) xenograft studies with XLP-SMART LVs demonstrated up to 7-fold greater expression in on-target cells over a control EFS-LV, with no off-target expression.
The XLP-SMART LVs exhibited stage-specific T and NK cell expression in peripheral blood, bone marrow, spleen, and thymic tissues (mimicking expression patterns of SAP). Transduction of XLP1 patient CD8+ T cells or BM CD34+ cells with XLP-SMART LVs restored restimulation-induced cell death and NK cytotoxicity to wild-type levels, respectively. These data demonstrate that it is feasible to create a lineage and stage-specific LV to restore the XLP1 phenotype by gene therapy.
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