Department of Biomedical Sciences, Tuskegee University College of Veterinary Medicine, Tuskegee, Alabama.
Department of Biomedical Sciences, Tuskegee University College of Veterinary Medicine, Tuskegee, Alabama.
Cell Mol Gastroenterol Hepatol. 2022;14(3):643-668.e1. doi: 10.1016/j.jcmgh.2022.06.001. Epub 2022 Jun 9.
BACKGROUND & AIMS: Mesenchymal-epithelial crosstalk (MEC) in the stomach is executed by pathways such as bone morphogenetic protein (BMP) and extracellular signal-regulated kinase (ERK). Mis-regulation of MEC disrupts gastric homeostasis and causes tumorigenesis. Protein Kinase A (PKA) crosstalks with BMP and ERK signaling; however, PKA function(s) in stomach development and homeostasis remains undefined.
We generated a novel Six2-CrePKAcαR (CA-PKA) mouse in which expression of constitutive-active PKAcαR was induced in gastric mesenchyme progenitors. Lineage tracing determined spatiotemporal activity of Six2-Cre in the stomach. For phenotyping CA-PKA mice histological, co-immunofluorescence, immunoblotting, mRNA sequencing, and bioinformatics analyses were performed.
Lineage tracing showed that Six2-Cre activity in the stomach is restricted to the mesenchymal compartment. CA-PKA mice showed disruption of gastric homeostasis characterized by aberrant mucosal development and epithelial hyperproliferation; ultimately developing multiple features of gastric corpus preneoplasia including decreased parietal cells, mucous cell hyperplasia, spasmolytic peptide expressing metaplasia with intestinal characteristics, and dysplastic and invasive cystic glands. Furthermore, mutant corpus showed marked chronic inflammation characterized by infiltration of lymphocytes and myeloid-derived suppressor cells along with the upregulation of innate and adaptive immune system components. Striking upregulation of inflammatory mediators and STAT3 activation was observed. Mechanistically, we determined there is an activation of ERK1/2 and downregulation of BMP/SMAD signaling characterized by marked upregulation of BMP inhibitor gremlin 1.
We report a novel role of PKA signaling in gastric MEC execution and show that PKA activation in the gastric mesenchyme drives preneoplasia by creating a proinflammatory and proproliferative microenvironment associated with the downregulation of BMP/SMAD signaling and activation of ERK1/2.
胃中的间质-上皮细胞串扰(MEC)由骨形态发生蛋白(BMP)和细胞外信号调节激酶(ERK)等途径执行。MEC 的失调会破坏胃的内稳态并导致肿瘤发生。蛋白激酶 A(PKA)与 BMP 和 ERK 信号转导相互作用;然而,PKA 在胃发育和内稳态中的功能尚不清楚。
我们生成了一种新型的 Six2-CrePKAcαR(CA-PKA)小鼠,其中组成型活性 PKAcαR 在胃间质祖细胞中被诱导表达。谱系追踪确定了 Six2-Cre 在胃中的时空活性。为了对 CA-PKA 小鼠进行表型分析,进行了组织学、共免疫荧光、免疫印迹、mRNA 测序和生物信息学分析。
谱系追踪表明,Six2-Cre 在胃中的活性仅限于间质区室。CA-PKA 小鼠表现出胃内稳态的破坏,其特征是异常的黏膜发育和上皮过度增殖;最终发展为胃体前肿瘤的多种特征,包括壁细胞减少、粘液细胞增生、具有肠特征的平滑肌肽表达化生、发育不良和侵袭性囊性腺体。此外,突变体胃体表现出明显的慢性炎症,其特征是淋巴细胞和髓样来源的抑制细胞浸润,以及先天和适应性免疫系统成分的上调。观察到炎症介质的显著上调和 STAT3 的激活。在机制上,我们确定存在 ERK1/2 的激活和 BMP/SMAD 信号的下调,其特征是 BMP 抑制剂 Gremlin 1 的显著上调。
我们报告了 PKA 信号在胃 MEC 执行中的新作用,并表明胃间质中 PKA 的激活通过创建与 BMP/SMAD 信号下调和 ERK1/2 激活相关的促炎和促增殖微环境,驱动前肿瘤发生。