Department of Genetics, INSERM U781, Université Paris Descartes- Sorbonne Paris Cité, Institut Imagine, Hôpital Necker Enfants Malades (AP-HP), Paris 75015, France.
Department of Pediatric Genetics, Cerrahpasa Medical Faculty, Istanbul University, Istanbul 34098, Turkey.
Am J Hum Genet. 2014 Mar 6;94(3):405-14. doi: 10.1016/j.ajhg.2014.01.020. Epub 2014 Feb 27.
Desbuquois dysplasia (DBQD) is a severe condition characterized by short stature, joint laxity, and advanced carpal ossification. Based on the presence of additional hand anomalies, we have previously distinguished DBQD type 1 and identified CANT1 (calcium activated nucleotidase 1) mutations as responsible for DBQD type 1. We report here the identification of five distinct homozygous xylosyltransferase 1 (XYLT1) mutations in seven DBQD type 2 subjects from six consanguineous families. Among the five mutations, four were expected to result in loss of function and a drastic reduction of XYLT1 cDNA level was demonstrated in two cultured individual fibroblasts. Because xylosyltransferase 1 (XT-I) catalyzes the very first step in proteoglycan (PG) biosynthesis, we further demonstrated in the two individual fibroblasts a significant reduction of cellular PG content. Our findings of XYLT1 mutations in DBQD type 2 further support a common physiological basis involving PG synthesis in the multiple dislocation group of disorders. This observation sheds light on the key role of the XT-I during the ossification process.
德斯布夸斯发育不良症(DBQD)是一种严重的疾病,其特征为身材矮小、关节松弛和腕骨提前骨化。基于手部畸形的存在,我们此前区分了 DBQD 1 型,并确定 CANT1(钙激活核苷酸酶 1)突变是 DBQD 1 型的原因。我们在此报告了在来自六个近亲家庭的七个 DBQD 2 型患者中鉴定出的五个不同的同源性木糖基转移酶 1(XYLT1)突变。在这五个突变中,四个预期会导致功能丧失,并且在两个培养的个体成纤维细胞中证明了 XYLT1 cDNA 水平的急剧降低。由于木糖基转移酶 1(XT-I)催化蛋白聚糖(PG)生物合成的第一步,我们进一步在两个个体成纤维细胞中证明了细胞 PG 含量的显著减少。我们在 DBQD 2 型中发现的 XYLT1 突变进一步支持了涉及多脱位组疾病中 PG 合成的共同生理基础。这一观察结果揭示了 XT-I 在骨化过程中的关键作用。