Hu G, Vastardis H, Bendall A J, Wang Z, Logan M, Zhang H, Nelson C, Stein S, Greenfield N, Seidman C E, Seidman J G, Abate-Shen C
Center for Advanced Biotechnology and Medicine, Piscataway, New Jersey 08854, USA.
Mol Cell Biol. 1998 Oct;18(10):6044-51. doi: 10.1128/MCB.18.10.6044.
Previously, we found that the cause of autosomal dominant selective tooth agenesis in one family is a missense mutation resulting in an arginine-to-proline substitution in the homeodomain of MSX1. To determine whether the tooth agenesis phenotype may result from haploinsufficiency or a dominant-negative mechanism, we have performed biochemical and functional analyses of the mutant protein Msx1(R31P). We show that Msx1(R31P) has perturbed structure and reduced thermostability compared with wild-type Msx1. As a consequence, the biochemical activities of Msx1(R31P) are severely impaired, since it exhibits little or no ability to interact with DNA or other protein factors or to function in transcriptional repression. We also show that Msx1(R31P) is inactive in vivo, since it does not display the activities of wild-type Msx1 in assays of ectopic expression in the limb. Furthermore, Msx1(R31P) does not antagonize the activity of wild-type Msx1 in any of these assays. Because Msx1(R31P) appears to be inactive and does not affect the action of wild-type Msx1, we propose that the phenotype of affected individuals with selective tooth agenesis is due to haploinsufficiency.
此前,我们发现一个家族中常染色体显性选择性牙齿发育不全的病因是一个错义突变,该突变导致MSX1同源结构域中的精氨酸被脯氨酸取代。为了确定牙齿发育不全的表型是由单倍剂量不足还是显性负性机制引起的,我们对突变蛋白Msx1(R31P)进行了生化和功能分析。我们发现,与野生型Msx1相比,Msx1(R31P)的结构受到干扰,热稳定性降低。因此,Msx1(R31P)的生化活性严重受损,因为它与DNA或其他蛋白质因子相互作用的能力很小或没有,也无法在转录抑制中发挥作用。我们还发现Msx1(R31P)在体内无活性,因为在肢体异位表达试验中,它不表现出野生型Msx1的活性。此外,在任何这些试验中,Msx1(R31P)都不拮抗野生型Msx1的活性。由于Msx1(R31P)似乎无活性且不影响野生型Msx1的作用,我们认为选择性牙齿发育不全的受累个体的表型是由于单倍剂量不足所致。