Lefebvre O, Wolf C, Kédinger M, Chenard M P, Tomasetto C, Chambon P, Rio M C
Laboratoire de Génétique Moléculaire des Eucaryotes du Centre National de la Recherche Scientific, Institut National de la Santé et de la Recherche Médicale, Strasbourg, France.
J Cell Biol. 1993 Jul;122(1):191-8. doi: 10.1083/jcb.122.1.191.
We have previously shown that the human pS2 gene, which codes for a secreted peptide of 60 amino acids, is expressed in a number of human carcinomas, including carcinomas of the breast, the pancreas, and the large bowel. Strong pS2 gene expression was also observed in the normal gastric mucosa and in the regenerative tissues surrounding ulcerous lesions of the gastrointestinal tract. A number of pS2 similar peptides, designated as P-domain peptides, have been described, notably the porcine (PSP), murine (mSP), and human (hSP) spasmolytic polypeptides, which correspond to duplicated pS2 proteins. We have now cloned a mouse homolog of the human pS2 cDNA to dispose of an animal model to study the pS2 protein function, which remains unknown at the present time. We show that the mouse putative pS2 protein sequence and the physiological pattern of expression of the mouse pS2 gene are well conserved. The mouse pS2 gene is highly expressed in the stomach mucosa cells, whereas no pS2 gene expression could be detected in the mouse mammary gland, even during postnatal development processes dependent on growth factors or hormones. Using in situ hybridization, we show that although coexpressed in the fundus, the antrum and the antrum-pyloric regions of the stomach, the mouse pS2 and mSP genes exhibit distinct and complementary cellular patterns of expression.
我们先前已经表明,编码一种60个氨基酸的分泌肽的人pS2基因,在多种人类癌症中表达,包括乳腺癌、胰腺癌和大肠癌。在正常胃黏膜以及胃肠道溃疡病变周围的再生组织中也观察到强烈的pS2基因表达。已经描述了许多pS2类似肽,称为P结构域肽,特别是猪(PSP)、小鼠(mSP)和人(hSP)解痉多肽,它们对应于重复的pS2蛋白。我们现在已经克隆了人pS2 cDNA的小鼠同源物,以建立一个动物模型来研究目前仍未知的pS2蛋白功能。我们表明,小鼠推定的pS2蛋白序列和小鼠pS2基因的生理表达模式高度保守。小鼠pS2基因在胃黏膜细胞中高度表达,而在小鼠乳腺中,即使在依赖生长因子或激素的出生后发育过程中,也检测不到pS2基因表达。通过原位杂交,我们表明,尽管小鼠pS2和mSP基因在胃底、胃窦和胃窦幽门区域共表达,但它们表现出不同且互补的细胞表达模式。