Minematsu Takeo, Suzuki Masanori, Sanno Naoko, Takekoshi Susumu, Teramoto Akira, Osamura R Yoshiyuki
Department of Pathology, Tokai University School of Medicine. Bohseidai, Isehara, Kanagawa 259-1193, Japan.
Endocr Pathol. 2006 Summer;17(2):143-53. doi: 10.1385/ep:17:2:143.
Human pituitary tumor transforming gene (hPTTG1) was recently identified as a protooncogene, which is a regulator of the cell cycle, as a homolog of yeast securin and a transcriptional activator of several angiogenic factors. Here we examined the relationships of hPTTG1 expression with cell proliferation, expression of the angiogenic factor, VEGF (vascular endothelial growth factor), and numbers of the blood vessels in the normal and/or adenomatous pituitary. With the exception of TSHoma, the expression of hPTTG1 was significantly higher in pituitary adenomas than in the normal pituitary gland. The cell proliferation activity was higher in pituitary adenomas than in the normal pituitary. Pituitary cell proliferation was significantly correlated with the level of hPTTG1 expression in the normal pituitary tissue, but there was no such correlation in the adenomas. The significant correlation of hPTTG1 with the VEGF expression and the numbers of the blood vessels was elucidated in pituitary adenomas. It is particularly noteworthy that immunohistochemical double staining indicated co-localization of VEGF in many hPTTG1-positive tumor cells. In conclusion, higher levels of hPTTG1 expression contribute to the pathobiology of pituitary adenomas by promoting angiogenesis rather than by activating cell proliferation, whereas hPTTG1 expression is related to mitotic activity in the normal pituitary gland.
人垂体肿瘤转化基因(hPTTG1)最近被鉴定为一种原癌基因,它是细胞周期的调节因子,是酵母分离酶的同源物,也是几种血管生成因子的转录激活剂。在此,我们研究了hPTTG1表达与正常和/或腺瘤性垂体中细胞增殖、血管生成因子血管内皮生长因子(VEGF)的表达以及血管数量之间的关系。除促甲状腺素瘤外,垂体腺瘤中hPTTG1的表达明显高于正常垂体。垂体腺瘤中的细胞增殖活性高于正常垂体。垂体细胞增殖与正常垂体组织中hPTTG1的表达水平显著相关,但在腺瘤中不存在这种相关性。在垂体腺瘤中明确了hPTTG1与VEGF表达及血管数量之间的显著相关性。特别值得注意的是,免疫组织化学双重染色显示VEGF在许多hPTTG1阳性肿瘤细胞中共定位。总之,较高水平的hPTTG1表达通过促进血管生成而非激活细胞增殖来促进垂体腺瘤的病理生物学过程,而hPTTG1表达与正常垂体中的有丝分裂活性相关。