van de Sluis B J, Breen M, Nanji M, van Wolferen M, de Jong P, Binns M M, Pearson P L, Kuipers J, Rothuizen J, Cox D W, Wijmenga C, van Oost B A
Department of Human Genetics, Utrecht University, PO Box 80030, 3508 TA Utrecht, The Netherlands.
Hum Mol Genet. 1999 Mar;8(3):501-7. doi: 10.1093/hmg/8.3.501.
Abnormal hepatic copper accumulation is recognized as an inherited disorder in man, mouse, rat and dog. The major cause of hepatic copper accumulation in man is a dysfunctional ATP7B gene, causing Wilson disease (WD). Mutations in the ATP7B genes have also been demonstrated in mouse and rat. The ATP7B gene has been excluded in the much rarer human copper overload disease non-Indian childhood cirrhosis, indicating genetic heterogeneity. By investigating the common autosomal recessive copper toxicosis (CT) in Bedlington terriers, we have identified a new locus involved in progressive liver disease. We examined whether the WD gene ATP7B was also causative for CT by investigating the chromosomal co-localization of ATP7B and C04107, using fluorescence in situ hybridization (FISH). C04107 is an anonymous microsatellite marker closely linked to CT. However, BAC clones containing ATP7B and C04107 mapped to the canine chromosome regions CFA22q11 and CFA10q26, respectively, demonstrating that WD cannot be homologous to CT. The copper transport genes CTR1 and CTR2 were also excluded as candidate genes for CT since they both mapped to canine chromosome region CFA11q22. 2-22.5. A transcribed sequence identified from the C04107-containing BAC was found to be homologous to a gene expressed from human chromosome 2p13-p16, a region devoid of any positional candidate genes.
肝脏铜异常蓄积在人类、小鼠、大鼠和犬类中被认为是一种遗传性疾病。人类肝脏铜蓄积的主要原因是ATP7B基因功能失调,导致威尔逊病(WD)。在小鼠和大鼠中也已证实ATP7B基因存在突变。在极为罕见的人类铜过载疾病非印度儿童肝硬化中,ATP7B基因已被排除,这表明存在遗传异质性。通过对贝德灵顿梗犬常见的常染色体隐性铜中毒(CT)进行研究,我们发现了一个与进行性肝病相关的新基因座。我们通过荧光原位杂交(FISH)研究ATP7B和C04107的染色体共定位,来检测WD基因ATP7B是否也是CT的病因。C04107是一个与CT紧密连锁的匿名微卫星标记。然而,包含ATP7B和C04107的BAC克隆分别定位于犬染色体区域CFA22q11和CFA10q26,这表明WD与CT不同源。铜转运基因CTR1和CTR2也被排除作为CT的候选基因,因为它们都定位于犬染色体区域CFA11q22.2 - 22.5。从包含C04107的BAC中鉴定出的一个转录序列被发现与人类染色体2p13 - p16上表达的一个基因同源,该区域没有任何定位候选基因。