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通过ENU 诱变对鼠 Pax3 上的新型错义突变进行特征分析。

Characterization of a novel missense mutation on murine Pax3 through ENU mutagenesis.

机构信息

Bio-X Center, Key Laboratory for the Genetics of Developmental and Neuropsychiatric Disorders, Shanghai Jiao Tong University, China.

出版信息

J Genet Genomics. 2011 Aug 20;38(8):333-9. doi: 10.1016/j.jgg.2011.06.005. Epub 2011 Jul 19.

DOI:10.1016/j.jgg.2011.06.005
PMID:21867959
Abstract

N-ethyl-N-nitrosourea (ENU) mutagenesis has led to the elucidation of several regulator genes for melanocyte and skin development. Here we characterized a mutant from ENU mutagenesis with similar phenotype as that of Splotch mutant, including exencephaly, spina bifida and abnormal limbs in homozygotes as well as white belly spotting and occasionally loop-tail in heterozygotes. This novel mutant was named as Sp(xG). Through genome-wide linkage analysis in backcross progenies with microsatellite markers, the Sp(xG) was confined to a region between D1MIT415 and D1MIT7 on chromosome 1, where notable Pax3 gene was located. Direct sequencing revealed that Sp(xG) carried a nucleotide A894G missense transition in exon 6 of Pax3 gene that resulted in Asn to Asp substitution at amino acid 269 within the highly-conserved homeodomain (HD) DNA recognition module, which was the first point mutation found in this domain in mice. This N269D mutation impaired the transactivation capacity of Pax3 protein, but exerted no effect on Pax3 protein translation. The characterization of the new mutation expanded our understanding the transactivation and DNA-binding structure of Pax3 protein.

摘要

N-乙基-N-亚硝脲(ENU)诱变导致了几个黑素细胞和皮肤发育调节剂基因的阐明。在这里,我们对ENU 诱变产生的一个突变体进行了特征描述,该突变体与 Splotch 突变体具有相似的表型,包括纯合子的无脑畸形、脊柱裂和肢体异常,以及杂合子的白腹斑点和偶尔的环尾。这个新的突变体被命名为 Sp(xG)。通过与微卫星标记的回交后代进行全基因组连锁分析,Sp(xG)局限于染色体 1 上 D1MIT415 和 D1MIT7 之间的区域,其中显著的 Pax3 基因位于该区域。直接测序显示,Sp(xG)在 Pax3 基因的外显子 6 中携带核苷酸 A894G 错义转换,导致高度保守的同源域(HD)DNA 识别模块内的氨基酸 269 从天冬酰胺到天冬氨酸取代,这是在小鼠中发现的该结构域中的第一个点突变。这种 N269D 突变损害了 Pax3 蛋白的转录激活能力,但对 Pax3 蛋白翻译没有影响。对新突变的描述扩展了我们对 Pax3 蛋白转录激活和 DNA 结合结构的理解。

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