Harrison D J, Hallam L, Lauder J
Department of Pathology, University of Edinburgh, UK.
Br J Cancer. 1990 Jun;61(6):836-40. doi: 10.1038/bjc.1990.187.
The glutathione S-transferases (GSTs) have been implicated in carcinogenesis and tumour drug-therapy resistance. In this study GST pi was the predominant isoenzyme in the fetal human kidney. It was present in differentiated epithelial structures but never in the primitive mesenchyme. By contrast most cases of Wilms' tumours showed GST pi in both epithelial structures and undifferentiated blastema. The level of expression, as assessed by immunostaining, was no more than moderate, and was generally higher in differentiated elements. In only one case was GST alpha found in Wilms' tumour. This study had demonstrated a difference between fetal kidney and Wilms' tumour blastema in terms of GST expression.
谷胱甘肽S-转移酶(GSTs)与致癌作用及肿瘤药物治疗耐药性有关。在本研究中,GST π是胎儿人肾中的主要同工酶。它存在于分化的上皮结构中,但从未在原始间充质中出现。相比之下,大多数肾母细胞瘤病例在上皮结构和未分化的胚基中均显示有GST π。通过免疫染色评估,其表达水平不超过中等程度,且在分化成分中通常更高。在肾母细胞瘤中仅在1例中发现了GST α。本研究已证明胎儿肾与肾母细胞瘤胚基在GST表达方面存在差异。