Division of Hematology, Oncology, and Blood & Marrow Transplantation, Department of Internal Medicine, Carver College of Medicine, University of Iowa, Iowa City, IA 52242, USA.
Dis Model Mech. 2011 Mar;4(2):240-54. doi: 10.1242/dmm.004564. Epub 2010 Dec 23.
Genetic analysis of pancreatic development has provided new insights into the mechanisms underlying the formation of exocrine pancreatic neoplasia. Zebrafish sweetbread (swd) mutants develop hypoplastic acini and dysmorphic ducts in the exocrine pancreas, with impeded progression of cell division cycle and of epithelial growth. Positional cloning and allelic complementation have revealed that the swd mutations affect the transient receptor potential melastatin-subfamily member 7 (trpm7) gene, which encodes a divalent cation-permeable channel with kinase activity. Supplementary Mg(2+) partially rescued the exocrine pancreatic defects of the trpm7 mutants by improving cell-cycle progression and growth and repressing the suppressor of cytokine signaling 3a (socs3a) gene. The role of Socs3a in Trpm7-mediated signaling is supported by the findings that socs3a mRNA level is elevated in the trpm7 mutants, and antisense inhibition of socs3a expression improved their exocrine pancreatic growth. TRPM7 is generally overexpressed in human pancreatic adenocarcinoma. TRPM7-deficient cells are impaired in proliferation and arrested in the G0-G1 phases of the cell division cycle. Supplementary Mg(2+) rescued the proliferative defect of the TRPM7-deficient cells. Results of this study indicate that Trpm7 regulates exocrine pancreatic development via the Mg(2+)-sensitive Socs3a pathway, and suggest that aberrant TRPM7-mediated signaling contributes to pancreatic carcinogenesis.
胰腺发育的遗传学分析为研究外分泌胰腺肿瘤形成的机制提供了新的见解。斑马鱼甜面包(swd)突变体在外分泌胰腺中发育出腺泡发育不全和导管形态异常,细胞分裂周期和上皮生长受阻。定位克隆和等位基因互补表明,swd 突变影响短暂受体电位 melastatin 亚家族成员 7(trpm7)基因,该基因编码具有激酶活性的二价阳离子渗透性通道。补充 Mg(2+)通过改善细胞周期进程和生长以及抑制细胞因子信号转导抑制因子 3a(socs3a)基因,部分挽救了 trpm7 突变体的外分泌胰腺缺陷。Socs3a 在 Trpm7 介导的信号转导中的作用得到了支持,即 trpm7 突变体中 socs3a mRNA 水平升高,并且反义抑制 socs3a 表达改善了它们的外分泌胰腺生长。TRPM7 在人类胰腺腺癌中普遍过表达。TRPM7 缺陷细胞增殖受损,并在细胞分裂周期的 G0-G1 期停滞。补充 Mg(2+)挽救了 TRPM7 缺陷细胞的增殖缺陷。这项研究的结果表明,Trpm7 通过 Mg(2+)敏感的 Socs3a 途径调节外分泌胰腺发育,并表明异常的 TRPM7 介导的信号转导有助于胰腺癌发生。