Rossi A, van der Harten H J, Beemer F A, Kleijer W J, Gitzelmann R, Steinmann B, Superti-Furga A
Department of Pediatrics, University of Zurich, Switzerland.
Hum Genet. 1996 Dec;98(6):657-61. doi: 10.1007/s004390050279.
Mutations in the diastrophic dysplasia sulfate transporter gene DTDST have been associated with a family of chondrodysplasias that comprises, in order of increasing severity, diastrophic dysplasia (DTD), atelosteogenesis type 2 (AO2), and achondrogenesis type 1B (ACG1B). To learn more about the molecular basis of DTDST chondrodysplasias and about genotype-phenotype correlations, we studied fibroblast cultures of three new patients: one with AO-2, one with DTD, and one with an intermediate phenotype (AO2/DTD). Reduced incorporation of inorganic sulfate into macromolecules was found in all three. Each of the three patients was found to be heterozygous for a c862t transition predicting a R279W substitution in the third extracellular loop of DTDST. In two patients (DTD and AO2/DTD), no other structural mutation was found, but polymerase chain reaction amplification and single-strand conformation polymorphism analysis of fibroblast cDNA showed reduced mRNA levels of the wild-type DTDST allele: these two patients may be compound heterozygotes for the "Finnish" mutation (as yet uncharacterized at the DNA level), which causes reduced expression of DTDST. The third patient (with AO2) had the R279W mutation compounded with a novel mutation, the deletion of cytosine 418 (delta c418), predicting a frameshift with premature termination. Also the delta c418 allele was underrepresented in the cDNA, in accordance with previous observations that premature stop codons reduce mRNA levels. The presence of the DTDST R279W mutation in a total of 11 patients with AO2 or DTD emphasizes the overlap between these conditions. This mutation has not been found so far in 8 analyzed ACG1B patients, suggesting that it allows some residual activity of the sulfate transporter.
硫酸软骨发育不全硫酸盐转运体基因(DTDST)的突变与一系列软骨发育异常相关,这些疾病按严重程度递增依次为:硫酸软骨发育不全(DTD)、2型肢端骨发育不全(AO2)和1B型软骨发育不全(ACG1B)。为了更深入了解DTDST相关软骨发育异常的分子基础以及基因型与表型的相关性,我们研究了三名新患者的成纤维细胞培养物:一名患有AO - 2,一名患有DTD,一名具有中间表型(AO2/DTD)。在所有三名患者中均发现无机硫酸盐掺入大分子的量减少。三名患者均被发现为c862t转换的杂合子,该转换预测DTDST第三细胞外环中有R279W替代。在两名患者(DTD和AO2/DTD)中,未发现其他结构突变,但成纤维细胞cDNA的聚合酶链反应扩增和单链构象多态性分析显示野生型DTDST等位基因的mRNA水平降低:这两名患者可能是“芬兰”突变(在DNA水平上尚未鉴定)的复合杂合子,该突变导致DTDST表达降低。第三名患者(患有AO2)具有R279W突变并伴有一个新突变,即胞嘧啶418缺失(δc418),预测会出现移码并提前终止。同样,δc418等位基因在cDNA中的表达也不足,这与之前观察到的提前终止密码子会降低mRNA水平一致。在总共11名患有AO2或DTD的患者中存在DTDST R279W突变,这强调了这些病症之间的重叠。到目前为止,在8名分析的ACG1B患者中尚未发现该突变,这表明它允许硫酸盐转运体有一些残余活性。