Howard P W, Maurer R A
Department of Cell and Developmental Biology, Oregon Health Sciences University, Portland, Oregon 97201, USA.
J Biol Chem. 2001 Jun 1;276(22):19020-6. doi: 10.1074/jbc.M101782200. Epub 2001 Mar 15.
Lhx3, a member of the LIM homeodomain family of transcription factors, is required for development of the pituitary in mice. A recent report has described a point mutation in the human LHX3 gene that is associated with a combined pituitary hormone disorder. The mutation is predicted to lead to the replacement of a tyrosine residue with a cysteine in the second LIM domain of LHX3. We have characterized the effects of this point mutation (Y114C) when analyzed in the context of the mouse Lhx3 coding sequence. Mobility shift assays demonstrated that the Lhx3 Y114C mutant is capable of binding DNA, although a decrease in the formation of a specific complex was observed. Transfection assays using an expression vector for either full-length Lhx3 or a GAL4-Lhx3 LIM domain fusion provided evidence that the Lhx3 Y114C mutant has a decreased ability to stimulate transcription. In particular, a GAL4-Lhx3 Y114C LIM mutant was unable to support Ras responsiveness of a modified glycoprotein hormone alpha-subunit reporter gene. Protein interaction studies suggest that the Y114C mutation may modestly reduce binding to the POU transcription factor, Pit-1. Interestingly, the Y114C mutation essentially abrogated binding to the putative co-activator/adapter, selective LIM-binding protein. The findings provide insights into the mechanisms mediating transcriptional activation by Lhx3 and suggest that the observed phenotype of the human mutation probably involves reduced transcriptional activity of the mutant LHX3.
Lhx3是转录因子LIM同源结构域家族的成员之一,对小鼠垂体的发育至关重要。最近的一份报告描述了人类LHX3基因中的一个点突变,该突变与一种联合垂体激素紊乱有关。预计该突变会导致LHX3第二个LIM结构域中的一个酪氨酸残基被半胱氨酸取代。我们已经在小鼠Lhx3编码序列的背景下分析了这个点突变(Y114C)的影响。凝胶迁移实验表明,Lhx3 Y114C突变体能够结合DNA,尽管观察到特异性复合物的形成有所减少。使用全长Lhx3或GAL4-Lhx3 LIM结构域融合表达载体的转染实验提供了证据,表明Lhx3 Y114C突变体刺激转录的能力下降。特别是,GAL4-Lhx3 Y114C LIM突变体无法支持修饰的糖蛋白激素α亚基报告基因对Ras的反应性。蛋白质相互作用研究表明,Y114C突变可能会适度降低与POU转录因子Pit-1的结合。有趣的是,Y114C突变基本上消除了与假定的共激活因子/衔接蛋白——选择性LIM结合蛋白的结合。这些发现为介导Lhx3转录激活的机制提供了见解,并表明观察到的人类突变表型可能涉及突变型LHX3转录活性的降低。