Zheng K, Harvey S, Sado Y, Naito I, Ninomiya Y, Jacobs R, Thorner P S
Division of Pathology, Hospital for Sick Children, University of Toronto, Canada.
Am J Pathol. 1999 Jun;154(6):1883-91. doi: 10.1016/s0002-9440(10)65446-6.
X-linked Alport syndrome is a progressive nephropathy associated with mutations in the COL4A5 gene. The kidney usually lacks the alpha3-alpha6 chains of collagen type IV, although each is coded by a separate gene. The molecular basis for this loss remains unclear. In canine X-linked hereditary nephritis, a model for X-linked Alport syndrome, a COL4A5 mutation results in reduced mRNA levels for the alpha3, alpha4, and alpha5 chains in the kidney, implying a mechanism coordinating the production of these 3 chains. To examine whether production of alpha6 chain is under the same control, we studied smooth muscle cells from this animal model. We determined the canine COL4A5 and COL4A6 genes are separated by 435 bp, with two first exons for COL4A6 separated by 978 bp. These two regions are >/= 78% identical to the human sequences that have promoter activity. Despite this potential basis for coordinated transcription of the COL4A5 and COL4A6 genes, the alpha6 mRNA level remained normal in affected male dog smooth muscle while the alpha5 mRNA level was markedly reduced. However, both alpha5 and alpha6 chains were absent at the protein level. Our results suggest that production of the alpha6 chain is under a control mechanism separate from that coordinating the alpha3-alpha5 chains and that the lack of the alpha6 chain in Alport syndrome is related to a failure at the protein assembly level, raising the possibility that the alpha5 and alpha6 chains are present in the same network. The lack of the alpha6 chain does not obviously result in disease, in particular leiomyomatosis, as is seen in Alport patients with deletions involving the COL4A5 and COL4A6 genes.
X连锁遗传性肾炎是一种与COL4A5基因突变相关的进行性肾病。尽管α3-α6链各自由一个单独的基因编码,但肾脏通常缺乏IV型胶原蛋白的α3-α6链。这种缺失的分子基础尚不清楚。在犬类X连锁遗传性肾炎(一种X连锁遗传性肾炎的模型)中,COL4A5突变导致肾脏中α3、α4和α5链的mRNA水平降低,这意味着存在一种协调这3条链产生的机制。为了研究α6链的产生是否受相同控制,我们研究了这种动物模型的平滑肌细胞。我们确定犬类COL4A5和COL4A6基因相隔435 bp,COL4A6的两个第一外显子相隔978 bp。这两个区域与具有启动子活性的人类序列的同源性≥78%。尽管存在COL4A5和COL4A6基因协调转录的潜在基础,但在受影响的雄性犬平滑肌中,α6 mRNA水平保持正常,而α5 mRNA水平明显降低。然而,在蛋白质水平上,α5和α6链均缺失。我们的结果表明,α6链的产生受一种与协调α3-α5链的机制不同的控制机制调控,并且遗传性肾炎中α6链的缺失与蛋白质组装水平的缺陷有关,这增加了α5和α6链存在于同一网络中的可能性。与涉及COL4A5和COL4A6基因缺失的遗传性肾炎患者不同,α6链的缺失并未明显导致疾病,尤其是平滑肌瘤病。