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果蝇中的功能分析表明,NBCCS/PTCH1突变G509V通过显性负性机制导致 smoothened 的激活。

Functional analysis in Drosophila indicates that the NBCCS/PTCH1 mutation G509V results in activation of smoothened through a dominant-negative mechanism.

作者信息

Hime Gary R, Lada Hania, Fietz Michael J, Gillies Susan, Passmore Abraham, Wicking Carol, Wainwright Brandon J

机构信息

Department of Anatomy and Cell Biology, University of Melbourne, Australia.

出版信息

Dev Dyn. 2004 Apr;229(4):780-90. doi: 10.1002/dvdy.10499.

Abstract

Mutations in the human homolog of the patched gene are associated with the developmental (and cancer predisposition) condition Nevoid Basal Cell Carcinoma Syndrome (NBCCS), as well as with sporadic basal cell carcinomas. Most mutations that have been identified in the germline of NBCCS patients are truncating or frameshift mutations, with amino acid substitutions rarely found. We show that a missense mutation in the sterol-sensing domain G509V acts as a dominant negative when assayed in vivo in Drosophila. Ectopic expression of a Drosophila patched transgene, carrying the analogous mutation to G509V, causes ectopic activation of Hedgehog target genes and ectopic membrane stabilisation of Smoothened. The G509V transgene behaves in a manner similar, except in its subcellular distribution, to a C-terminal truncation that has been characterised previously as a dominant-negative protein. G509V exhibits vesicular localisation identical to the wild-type protein, but the C-terminal truncated Patched molecule is localised predominantly to the plasma membrane. This finding suggests that dominant-negative function can be conferred by interruption of different aspects of Patched protein behaviour. Another mutation at the same residue, G509R, did not exhibit dominant-negative activity, suggesting that simple removal of the glycine at 509 is not sufficient to impart dominant-negative function.

摘要

人patched基因同源物中的突变与发育性(及癌症易感性)疾病痣样基底细胞癌综合征(NBCCS)以及散发性基底细胞癌相关。在NBCCS患者种系中已鉴定出的大多数突变是截短突变或移码突变,很少发现氨基酸替换。我们发现,在果蝇体内检测时,固醇感应结构域中的错义突变G509V起显性负性作用。携带与G509V类似突变的果蝇patched转基因的异位表达会导致Hedgehog靶基因的异位激活和平滑蛋白的异位膜稳定化。G509V转基因的行为方式与先前被表征为显性负性蛋白的C末端截短相似,只是在亚细胞分布方面有所不同。G509V表现出与野生型蛋白相同的囊泡定位,但C末端截短的Patched分子主要定位于质膜。这一发现表明,显性负性功能可通过Patched蛋白行为不同方面的中断来赋予。同一残基处的另一个突变G509R未表现出显性负性活性,这表明简单去除509位的甘氨酸不足以赋予显性负性功能。

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