Thorner P S, Zheng K, Kalluri R, Jacobs R, Hudson B G
Department of Pathology, The Hospital for Sick Children and the University of Toronto, Toronto, Ontario M5G 1X8, Canada.
J Biol Chem. 1996 Jun 7;271(23):13821-8. doi: 10.1074/jbc.271.23.13821.
Canine X-linked hereditary nephritis is an animal model for human X-linked hereditary nephritis with a premature stop codon in the alpha5(IV) gene of collagen type IV. We used this model to examine the other alpha(IV) chains at the mRNA and protein level in the kidney, since in human X-linked hereditary nephritis, the alpha3(IV) and alpha4(IV) chains are often absent from the glomerular basement membrane, although both are encoded by autosomal genes. cDNA probes for the alpha1(IV)-alpha6(IV) chains were generated from normal dog kidney using the polymerase chain reaction. Sequences were >/=88% identical at the DNA level and >/=92% identical at the protein level to the respective human alpha(IV) chains. By Northern analysis, transcripts for the alpha1(IV), alpha2(IV), and alpha6(IV) chains were detected at comparable levels in both normal and affected male dog kidney RNA. As previously shown, the transcript for the alpha5(IV) chain was reduced to approximately 10% of normal. Unexpectedly, the alpha3(IV) and alpha4(IV) transcripts were both decreased >/=77% in affected male dog kidney, suggesting a mechanism coordinating the expression of these three basement membrane components. The NC1 domain of collagen type IV isolated from normal dog glomeruli was positive for the alpha3(IV), alpha4(IV), and alpha5(IV) chains by Western blotting. In contrast, in the NC1 domain isolated from affected dog glomeruli, these three chains were not detectable, except for a trace of alpha3(IV) dimer. In X-linked hereditary nephritis, the absence of the alpha3(IV) and alpha4(IV) chains from glomerular basement membrane may reflect factors acting at the transcriptional and/or translational level in addition to the protein assembly level.
犬X连锁遗传性肾炎是一种人类X连锁遗传性肾炎的动物模型,其IV型胶原的α5(IV)基因存在过早终止密码子。我们使用该模型在mRNA和蛋白质水平检测肾脏中的其他α(IV)链,因为在人类X连锁遗传性肾炎中,尽管α3(IV)和α4(IV)链均由常染色体基因编码,但肾小球基底膜中通常不存在这两条链。利用聚合酶链反应从正常犬肾中生成了α1(IV)-α6(IV)链的cDNA探针。这些序列在DNA水平上与相应的人类α(IV)链的同一性≥88%,在蛋白质水平上≥92%。通过Northern分析,在正常和患病雄性犬肾RNA中均检测到α1(IV)、α2(IV)和α6(IV)链的转录本,水平相当。如先前所示,α5(IV)链的转录本减少至正常水平约10%。出乎意料的是,患病雄性犬肾中α3(IV)和α4(IV)转录本均减少≥77%,提示存在协调这三种基底膜成分表达的机制。通过蛋白质印迹法检测,从正常犬肾小球分离的IV型胶原的NC1结构域对α3(IV)、α4(IV)和α5(IV)链呈阳性。相比之下,在从患病犬肾小球分离的NC1结构域中,除了微量的α3(IV)二聚体之外,未检测到这三条链。在X连锁遗传性肾炎中,肾小球基底膜中α3(IV)和α4(IV)链的缺失可能反映了除蛋白质组装水平之外,在转录和/或翻译水平起作用的因素。