Winyard P J, Risdon R A, Sams V R, Dressler G R, Woolf A S
Developmental Biology Unit, Institute of Child Health, University of London, United Kingdom.
J Clin Invest. 1996 Jul 15;98(2):451-9. doi: 10.1172/JCI118811.
Human dysplastic kidneys are developmental aberrations which are responsible for many of the very young children with chronic renal failure. They contain poorly differentiated metanephric cells in addition to metaplastic elements. We recently demonstrated that apoptosis was prominent in undifferentiated cells around dysplastic tubules (Winyard, P.J.D., J. Nauta, D.S. Lirenman, P. Hardman, V.R. Sams, R.A. Risdon, and A.S. Woolf. 1996. Kidney Int. 49:135-146), perhaps explaining the tendency of some of these organs to regress. In contrast, apoptosis was rare in dysplastic epithelia which are thought to be ureteric bud malformations. On occasion, these tubules form cysts which distend the abdominal cavity (the multicystic dysplastic kidney) and dysplastic kidneys may rarely become malignant. We now demonstrate that dysplastic tubules maintain a high rate of proliferation postnatally and that PAX2, a potentially oncogenic transcription factor, is expressed in these epithelia. In contrast, both cell proliferation and PAX2 are downregulated during normal maturation of human collecting ducts. We demonstrate that BCL2, a protein which prevents apoptosis in renal mesenchymal to epithelia] conversion, is expressed ectopically in dysplastic kidney epithelia. We propose that dysplastic cyst formation may be understood in terms of aberrant temporal and spatial expression of master genes which are tightly regulated in the normal program of human nephrogenesis.
人类发育异常的肾脏是发育畸变,是许多幼儿慢性肾衰竭的病因。除化生成分外,它们还含有分化不良的后肾细胞。我们最近证明,发育异常的肾小管周围未分化细胞中凋亡很明显(Winyard, P.J.D., J. Nauta, D.S. Lirenman, P. Hardman, V.R. Sams, R.A. Risdon, and A.S. Woolf. 1996. Kidney Int. 49:135 - 146),这或许可以解释其中一些器官退化的倾向。相比之下,在被认为是输尿管芽畸形的发育异常上皮中凋亡很少见。这些肾小管偶尔会形成囊肿,使腹腔扩张(多囊性发育异常肾),发育异常的肾脏很少会恶变。我们现在证明,发育异常的肾小管在出生后维持着较高的增殖率,并且PAX2,一种潜在的致癌转录因子,在这些上皮中表达。相比之下,在人类集合管的正常成熟过程中,细胞增殖和PAX2均下调。我们证明,BCL2,一种在肾间充质向上皮转化过程中阻止凋亡的蛋白质,在发育异常的肾上皮中异位表达。我们提出,发育异常的囊肿形成可以从在人类肾发生正常程序中受到严格调控的主控基因的异常时空表达方面来理解。