Pavel Emilia, Zhao Wenning, Powell Kimerly A, Weinstein Michael, Kirschner Lawrence S
Department of Molecular Virology, Immunology and Molecular Genetics, The Ohio State University, Columbus, OH, USA.
Int J Dev Biol. 2007;51(4):273-81. doi: 10.1387/ijdb.062249ep.
The mouse limb deformity (ld) phenotype is characterized by developmental failure of distal limb structures often associated with renal anomalies. It is caused by loss of the BMP-antagonist Gremlin in the limb buds, either through mutation of Grem1, or by loss of a transcriptional global control region (GCR) located in the neighboring Fmn1 gene. In this report, we describe a new allele of ld due to complete deletion of Fmn1, including its GCR. Unlike many other ld strains, these mice are viable and fertile as homozygotes. As expected, this genomic deletion causes loss of Gremlin in the developing limb buds, but effects in other tissues are variable. Specifically, Grem1 expression is retained in the developing lung and kidney, whereas expression is lost from the corresponding adult tissues. In contrast, expression in the brain appears to be unaffected by loss of the GCR. To provide information about long-range transcriptional effects of this region, effects of the deletion on the transcription of neighboring genes were also investigated. This analysis revealed that alterations in neighboring genes do occur, but only in a limited fashion. These data indicate that the predominant effect of the Ld GCR is to activate the expression of Grem1 in the developing limb buds, although it may serve a minor role in long-range transcriptional effects that extend beyond Fmn1 and Grem1.
小鼠肢体畸形(ld)表型的特征是远端肢体结构发育失败,常伴有肾脏异常。它是由肢体芽中骨形态发生蛋白拮抗剂Gremlin的缺失引起的,这要么是由于Grem1的突变,要么是由于位于邻近Fmn1基因中的转录全局控制区域(GCR)的缺失。在本报告中,我们描述了一种由于Fmn1完全缺失(包括其GCR)而导致的ld新等位基因。与许多其他ld品系不同,这些小鼠作为纯合子是可存活且可育的。正如预期的那样,这种基因组缺失导致发育中的肢体芽中Gremlin缺失,但在其他组织中的影响是可变的。具体而言,Grem1在发育中的肺和肾中保留表达,而在相应的成年组织中表达丧失。相反,大脑中的表达似乎不受GCR缺失的影响。为了提供有关该区域远程转录效应的信息,还研究了缺失对邻近基因转录的影响。该分析表明邻近基因确实发生了改变,但只是以有限的方式。这些数据表明,Ld GCR的主要作用是在发育中的肢体芽中激活Grem1的表达,尽管它可能在超出Fmn1和Grem1的远程转录效应中起次要作用。