Stromal Rigidity Stress Accelerates Pancreatic Intraepithelial Neoplasia Progression and Chromosomal Instability via Nuclear Protein Tyrosine Kinase 2 Localization

IF 4.7 2区 医学 Q1 PATHOLOGY
Li-Yun Ding , Chia-Jung Chang , Szu-Ying Chen , Kuan-Lin Chen , Yueh-Shan Li , Yun-Chieh Wu , Ting-Yi Hsu , Hsin-Yu Ying , Hsin-Yi Wu , Michael W. Hughes , Chia-Yih Wang , Chih-Han Chang , Ming-Jer Tang , Woei-Jer Chuang , Yan-Shen Shan , Chia-Jung Chang , Po-Hsien Huang
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Abstract

Because the mechanotransduction by stromal stiffness stimulates the rupture and repair of the nuclear envelope in pancreatic progenitor cells, accumulated genomic aberrations are under selection in the tumor microenvironment. Analysis of cell growth, micronuclei, and phosphorylated Ser-139 residue of the histone variant H2AX (γH2AX) foci linked to mechanotransduction pressure in vivo during serial orthotopic passages of mouse KrasLSL-G12D/+;Trp53flox/flox;Pdx1-Cre (KPC) cancer cells in the tumor and in migrating through the size-restricted 3-μm micropores. To search for pancreatic cancer cell-of-origin, analysis of single-cell data sets revealed that the extracellular matrix shaped an alternate route of acinar-ductal transdifferentiation of acinar cells into topoisomerase II α (TOP2A)–overexpressing cancer cells and derived subclusters with copy number amplifications in MYC-PTK2 (protein tyrosine kinase 2) locus and PIK3CA. High-PTK2 expression is associated with 171 differentially methylated CpG loci, 319 differentially expressed genes, and poor overall survival in The Cancer Genome Atlas–Pancreatic Adenocarcinoma cohort. Abolished RGD-integrin signaling by disintegrin KG blocked the PTK2 phosphorylation, increased cancer apoptosis, decreased vav guanine nucleotide exchange factor 1 (VAV1) expression, and prolonged overall survival in the KPC mice. Reduction of α-smooth muscle actin deposition in the CD248 knockout KPC mice remodeled the tissue stroma and down-regulated TOP2A expression in the epithelium. In summary, stromal stiffness induced the onset of cancer cells-of-origin by ectopic TOP2A expression, and the genomic amplification of MYC-PTK2 locus via alternative transdifferentiation of pancreatic progenitor cells is the vulnerability useful for disintegrin KG treatment.

Abstract Image

Abstract Image

基质僵化应激通过核 PTK2 定位加速胰腺上皮内肿瘤的发展和染色体不稳定性。
由于基质硬度的机械传导会刺激胰腺祖细胞核膜的破裂和修复,因此在肿瘤微环境中会选择积累基因组畸变。小鼠KrasLSL-G12D/+;Trp53flox/flox;Pdx1-Cre(KPC)癌细胞在肿瘤内连续正位传代和通过大小受限的3微米微孔迁移时,分析了细胞生长、微核和组蛋白变体H2AX(γH2AX)的磷酸化Ser-139残基病灶与体内机械传导压力的关系。为了寻找胰腺癌的原发细胞,对单细胞数据集的分析表明,细胞外基质是胰腺细胞向胰导管转分化的另一条途径,胰腺细胞转分化为拓扑异构酶II α(TOP2A)表达的癌细胞,并衍生出MYC-PTK2(蛋白酪氨酸激酶2)基因座和PIK3CA拷贝数扩增的亚群。在癌症基因组图谱-胰腺腺癌队列中,PTK2的高表达与171个不同甲基化的CpG位点、319个不同表达的基因和较差的总生存率有关。通过崩解素KG消除RGD-整合素信号传导阻断了PTK2磷酸化,增加了癌症凋亡,降低了VAV鸟嘌呤核苷酸交换因子1(VAV1)的表达,延长了KPC小鼠的总生存期。CD248 基因敲除 KPC 小鼠体内α-平滑肌肌动蛋白沉积的减少重塑了组织基质,并下调了上皮中 TOP2A 的表达。总之,基质僵化通过异位TOP2A表达诱导原发癌细胞的发生,而通过胰腺祖细胞的替代性转分化扩增MYC-PTK2位点的基因组是有助于分解素KG治疗的脆弱性。
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来源期刊
CiteScore
11.40
自引率
0.00%
发文量
178
审稿时长
30 days
期刊介绍: The American Journal of Pathology, official journal of the American Society for Investigative Pathology, published by Elsevier, Inc., seeks high-quality original research reports, reviews, and commentaries related to the molecular and cellular basis of disease. The editors will consider basic, translational, and clinical investigations that directly address mechanisms of pathogenesis or provide a foundation for future mechanistic inquiries. Examples of such foundational investigations include data mining, identification of biomarkers, molecular pathology, and discovery research. Foundational studies that incorporate deep learning and artificial intelligence are also welcome. High priority is given to studies of human disease and relevant experimental models using molecular, cellular, and organismal approaches.
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