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SOX9上游远距离调控元件的缺失会导致弯肢侏儒症。

Deletion of long-range regulatory elements upstream of SOX9 causes campomelic dysplasia.

作者信息

Wunderle V M, Critcher R, Hastie N, Goodfellow P N, Schedl A

机构信息

Department of Genetics, University of Cambridge, Downing Street, CB2 3EH Cambridge, United Kingdom.

出版信息

Proc Natl Acad Sci U S A. 1998 Sep 1;95(18):10649-54. doi: 10.1073/pnas.95.18.10649.

Abstract

Campomelic dysplasia (CD) is a rare, neonatal human chondrodysplasia characterized by bowing of the long bones and often associated with male-to-female sex-reversal. Patients present with either heterozygous mutations in the SOX9 gene or chromosome rearrangements mapping at least 50 kb upstream of SOX9. Whereas mutations in SOX9 ORF cause haploinsufficiency, the effects of translocations 5' to SOX9 are unclear. To test whether these rearrangements also cause haploinsufficiency by altering spatial and temporal expression of SOX9, we generated mice transgenic for human SOX9-lacZ yeast artificial chromosomes containing variable amounts of DNA sequences upstream of SOX9. We show that elements necessary for SOX9 expression during skeletal development are highly conserved between mouse and human and reveal that a rearrangement upstream of SOX9, similar to those observed in CD patients, leads to a substantial reduction of SOX9 expression, particularly in chondrogenic tissues. These data demonstrate that important regulatory elements are scattered over a large region upstream of SOX9 and explain how particular aspects of the CD phenotype are caused by chromosomal rearrangements 5' to SOX9.

摘要

弯肢侏儒症(CD)是一种罕见的新生儿软骨发育不良,其特征为长骨弯曲,常伴有男性向女性的性反转。患者存在SOX9基因的杂合突变或位于SOX9上游至少50 kb处的染色体重排。虽然SOX9开放阅读框中的突变会导致单倍剂量不足,但SOX9 5'端易位的影响尚不清楚。为了测试这些重排是否也通过改变SOX9的时空表达导致单倍剂量不足,我们构建了转人类SOX9 - lacZ酵母人工染色体的小鼠,这些染色体包含SOX9上游不同数量的DNA序列。我们发现,在骨骼发育过程中SOX9表达所必需的元件在小鼠和人类之间高度保守,并揭示出与CD患者中观察到的类似,SOX9上游的重排会导致SOX9表达大幅降低,尤其是在软骨形成组织中。这些数据表明,重要的调控元件散布在SOX9上游的大片区域,并解释了CD表型的特定方面是如何由SOX9 5'端的染色体重排引起的。

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