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Twist基因缺失杂合子小鼠表型的可变表达性和不完全外显率与人类塞特雷-乔岑综合征相似。

The variable expressivity and incomplete penetrance of the twist-null heterozygous mouse phenotype resemble those of human Saethre-Chotzen syndrome.

作者信息

Bourgeois P, Bolcato-Bellemin A L, Danse J M, Bloch-Zupan A, Yoshiba K, Stoetzel C, Perrin-Schmitt F

机构信息

Laboratoire de Génétique Moléculaire des Eucaryotes du CNRS/INSERM U184, Institut de Chimie Biologique, Strasbourg Cedex, France.

出版信息

Hum Mol Genet. 1998 Jun;7(6):945-57. doi: 10.1093/hmg/7.6.945.

Abstract

Most targeted gene mutations are recessive and analyses of gene function often focus on homozygous mutant phenotypes. Here we describe parts of the expression pattern of M-twist in the head of developing wild-type mice and present our analysis of the phenotype of heterozygous twist- null animals at around birth and in adults. A number of twist -null heterozygous mice present skull and limb defects and, in addition, we observed other malformations, such as defects in middle ear formation and the xyphoïd process. Our study is of interest to understand bone formation and the role of M-twist during this process, as within the same animal growth of some bones can be accelerated while for others it can be delayed. Moreover, we show here that expressivity of the mouse mutant heterozygous phenotype is dependent on the genetic background. This information might also be helpful for clinicians, since molecular defects affecting one allele of the human H-twist ( TWIST ) gene were identified in patients affected with Saethre-Chotzen syndrome (SCS). Expressivity of this syndrome is variable, although most patients present craniofacial and limb malformations resembling those seen in mutant mice. Thus the mutant mouse twist -null strain might be a useful animal model for SCS. The twist -null mutant mouse model, combined with other mutant mouse strains, might also help in an understanding of the etiology of morphological abnormalities that appear in human patients affected by other syndromes.

摘要

大多数靶向基因突变是隐性的,基因功能分析通常集中在纯合突变体表型上。在此,我们描述了发育中的野生型小鼠头部中M-twist的部分表达模式,并展示了我们对出生前后及成年期杂合性twist基因缺失动物的表型分析。许多twist基因缺失的杂合小鼠出现颅骨和肢体缺陷,此外,我们还观察到其他畸形,如中耳形成缺陷和剑突异常。我们的研究对于理解骨形成以及M-twist在此过程中的作用具有重要意义,因为在同一动物体内,某些骨骼的生长可能加速而另一些可能延迟。此外,我们在此表明,小鼠突变杂合体表型的表现度取决于遗传背景。这一信息可能对临床医生也有帮助,因为在患有塞特勒-乔岑综合征(SCS)的患者中发现了影响人类H-twist(TWIST)基因一个等位基因的分子缺陷。尽管大多数患者表现出与突变小鼠相似的颅面和肢体畸形,但该综合征的表现度是可变的。因此,突变小鼠twist基因缺失品系可能是SCS的一个有用动物模型。twist基因缺失突变小鼠模型与其他突变小鼠品系相结合,也可能有助于理解受其他综合征影响的人类患者出现的形态异常的病因。

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