Cellular and molecular characteristics of stromal Lkb1 deficiency-induced gastrointestinal polyposis based on single-cell RNA sequencing
Zhaohua Cai, Yangjing Jiang, Huan Tong, Min Liang, Yijie Huang, Liang Fang, Feng Liang, Yunwen Hu, Xin Shi, Jian Wang, Zi Wang, Qingqi Ji, Huanhuan Huo, Linghong Shen, Ben He
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Abstract
Liver kinase B1 (Lkb1), encoded by serine/threonine kinase (Stk11 ), is a serine/threonine kinase and tumor suppressor that is strongly implicated in Peutz–Jeghers syndrome (PJS). Numerous studies have shown that mesenchymal-specific Lkb1 is sufficient for the development of PJS-like polyps in mice. However, the cellular origin and components of these Lkb1-associated polyps and underlying mechanisms remain elusive. In this study, we generated tamoxifen-inducible Lkb1 flox/flox ;Myh11-Cre/ERT2 and Lkb1 flox/flox ;PDGFRα-Cre/ERT2 mice, performed single-cell RNA sequencing (scRNA-seq) and imaging-based lineage tracing, and aimed to investigate the cellular complexity of gastrointestinal polyps associated with PJS. We found that Lkb1 flox/+ ;Myh11-Cre/ERT2 mice developed gastrointestinal polyps starting at 9 months after tamoxifen treatment. scRNA-seq revealed aberrant stem cell-like characteristics of epithelial cells from polyp tissues of Lkb1 flox/+ ;Myh11-Cre/ERT2 mice. The Lkb1-associated polyps were further characterized by a branching smooth muscle core, abundant extracellular matrix deposition, and high immune cell infiltration. In addition, the Spp1–Cd44 or Spp1–Itga8/Itgb1 axes were identified as important interactions among epithelial, mesenchymal, and immune compartments in Lkb1-associated polyps. These characteristics of gastrointestinal polyps were also demonstrated in another mouse model, tamoxifen-inducible Lkb1 flox/flox ;PDGFRα-Cre/ERT2 mice, which developed obvious gastrointestinal polyps as early as 2–3 months after tamoxifen treatment. Our findings further confirm the critical role of mesenchymal Lkb1/Stk11 in gastrointestinal polyposis and provide novel insight into the cellular complexity of Lkb1-associated polyp biology. © 2024 The Pathological Society of Great Britain and Ireland.
基于单细胞 RNA 测序的基质 Lkb1 缺乏症诱发的胃肠道息肉病的细胞和分子特征。
由丝氨酸/苏氨酸激酶(Stk11)编码的肝激酶 B1(Lkb1)是一种丝氨酸/苏氨酸激酶和肿瘤抑制因子,与 Peutz-Jeghers 综合征(PJS)密切相关。大量研究表明,间质特异性 Lkb1 足以导致小鼠出现 PJS 样息肉。然而,这些与 Lkb1 相关的息肉的细胞起源、组成成分和内在机制仍然难以捉摸。在这项研究中,我们培育了他莫昔芬诱导的Lkb1flox/flox ;Myh11-Cre/ERT2和Lkb1flox/flox ;PDGFRα-Cre/ERT2小鼠,进行了单细胞RNA测序(scRNA-seq)和基于成像的品系追踪,旨在研究与PJS相关的胃肠道息肉的细胞复杂性。我们发现,Lkb1flox/+ ;Myh11-Cre/ERT2小鼠在他莫昔芬治疗9个月后开始出现胃肠道息肉。scRNA-seq揭示了Lkb1flox/+ ;Myh11-Cre/ERT2小鼠息肉组织上皮细胞的异常干细胞样特征。Lkb1相关息肉的进一步特征是平滑肌核心分支、大量细胞外基质沉积和免疫细胞高度浸润。此外,Spp1-Cd44 或 Spp1-Itga8/Itgb1 轴被确定为 Lkb1 相关息肉中上皮细胞、间充质细胞和免疫细胞之间的重要相互作用。胃肠道息肉的这些特征在另一种小鼠模型中也得到了证实,即他莫昔芬诱导的 Lkb1flox/flox ;PDGFRα-Cre/ERT2 小鼠,这些小鼠在他莫昔芬治疗后 2-3 个月就出现了明显的胃肠道息肉。我们的研究结果进一步证实了间质 Lkb1/Stk11 在胃肠道息肉病中的关键作用,并对 Lkb1 相关息肉生物学的细胞复杂性提供了新的见解。© 2024 大不列颠及爱尔兰病理学会。
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