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迟发性脊椎骨骺发育不良的sedlin基因逃避X染色体失活并包含一个非经典剪接位点。

The sedlin gene for spondyloepiphyseal dysplasia tarda escapes X-inactivation and contains a non-canonical splice site.

作者信息

Mumm S, Zhang X, Vacca M, D'Esposito M, Whyte M P

机构信息

Division of Bone and Mineral Diseases, Washington University School of Medicine and Barnes-Jewish Hospital Research Institute, St. Louis, MO 63110, USA.

出版信息

Gene. 2001 Aug 8;273(2):285-93. doi: 10.1016/s0378-1119(01)00571-6.

Abstract

Mutations in the sedlin gene cause spondyloepiphyseal dysplasia tarda (SEDT), a rare X-linked chondrodysplasia. Affected males suffer short stature, deformation of the spine and hips, and deterioration of intervertebral discs with characteristic radiographic changes in the vertebrae. We have sequenced two full-length cDNA clones corresponding to the human sedlin gene. The longest cDNA is 2836 bp, containing a 218 bp 5' untranslated region, a 423 bp coding region, and a 2195 bp 3' untranslated region. The second cDNA does not contain exon 2, suggesting alternative splicing. Sedlin was finely mapped in Xp22.2 by Southern blot analysis on a yeast artificial chromosome/bacterial artificial chromosome map. Comparison of the cDNA sequence and genomic sequence identified six sedlin exons of 67, 142, 112, 147, 84, and 2259 bp. The corresponding introns vary in size from 339 to 14,061 bp. Splice site sequences for four of the five introns conform to the GT/AG consensus sequences, however, the splice site between exons 4 and 5 displays a rare non-canonical splice site sequence, AT/AC. Northern blot analysis showed expression of the sedlin gene in all human adult and fetal tissues tested, with the highest levels in kidney, heart, skeletal muscle, liver, and placenta. Four mRNA sizes were detected with the major band being 3 kb and minor bands of 5, 1.6, and 0.9 kb (the smallest product may reflect a sedlin pseudogene). Sedlin is expressed from both the active and the inactive human X chromosomes helping to explain the recessive nature and consistent presentation of the disease. Human sedlin shows homology to a yeast gene, which conditions endoplasmic reticulum/golgi transport. Characterization of the human sedlin cDNA and determination of the sedlin gene structure enable functional studies of sedlin and elucidation of the pathogenesis of SEDT.

摘要

Sedlin基因的突变会导致迟发性脊椎骨骺发育不良(SEDT),这是一种罕见的X连锁软骨发育不良。受影响的男性身材矮小,脊柱和臀部变形,椎间盘退变,椎体有特征性的影像学改变。我们对两个对应于人sedlin基因的全长cDNA克隆进行了测序。最长的cDNA为2836 bp,包含一个218 bp的5'非翻译区、一个423 bp的编码区和一个2195 bp的3'非翻译区。第二个cDNA不包含外显子2,提示存在可变剪接。通过酵母人工染色体/细菌人工染色体图谱上的Southern印迹分析,将Sedlin精细定位在Xp22.2。比较cDNA序列和基因组序列,确定了sedlin的6个外显子,大小分别为67、142、112、147、84和2259 bp。相应的内含子大小从339到14061 bp不等。五个内含子中的四个的剪接位点序列符合GT/AG共有序列,然而,外显子4和5之间的剪接位点显示出罕见的非典型剪接位点序列AT/AC。Northern印迹分析显示sedlin基因在所有检测的成人和胎儿组织中均有表达,在肾脏、心脏、骨骼肌、肝脏和胎盘中表达水平最高。检测到四种mRNA大小,主要条带为3 kb,次要条带为5、1.6和0.9 kb(最小的产物可能反映一个sedlin假基因)。Sedlin在人类活跃和不活跃的X染色体上均有表达,这有助于解释该疾病的隐性性质和一致表现。人类Sedlin与一个酵母基因具有同源性,该酵母基因调控内质网/高尔基体运输。对人sedlin cDNA的表征和sedlin基因结构的确定有助于对sedlin进行功能研究,并阐明SEDT的发病机制。

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