Lilleväli K, Kulla A, Ord T
Institute of Molecular and Cell Biology, Tartu University, Tartu, Estonia.
Mech Dev. 2001 Mar;101(1-2):217-20. doi: 10.1016/s0925-4773(00)00566-9.
The polypyrimidine tract binding protein (PTB) and its recently discovered homologue brain-enriched PTB (brPTB) are RNA binding proteins involved in the control of alternative splicing. We have characterized expression patterns of the PTB and brPTB in course of mouse brain development, using mRNA in situ hybridization. PTB is expressed in choroid plexi and ependyma at all the stages of development and temporarily in the mantle layer of migrating neuroblasts of fore-, mid- and hindbrain and in the external granular layer of cerebellum. In the neurons of adult mouse cerebrum and cerebellum expression of PTB is undetectable. In contrast to this, brPTB is expressed ubiquitously in neuroblasts of various parts of embryonic brain and in the differentiated neurons of postnatal cerebrum and cerebellum. brPTB mRNA is not observed in choroid plexi and ependymal layer. Thus, in the embryonic brain expression patterns of PTB and brPTB overlap, but in the course of brain development the patterns become complementary to each other.
多嘧啶序列结合蛋白(PTB)及其最近发现的同源物脑富集PTB(brPTB)是参与可变剪接调控的RNA结合蛋白。我们利用mRNA原位杂交技术,对小鼠脑发育过程中PTB和brPTB的表达模式进行了表征。PTB在发育的各个阶段均在脉络丛和室管膜中表达,并在前脑、中脑和后脑迁移神经母细胞的套层以及小脑的外颗粒层中短暂表达。在成年小鼠大脑和小脑中,未检测到PTB的表达。与此相反,brPTB在胚胎脑各部分的神经母细胞以及出生后大脑和小脑的分化神经元中普遍表达。在脉络丛和室管膜层中未观察到brPTB mRNA。因此,在胚胎脑中,PTB和brPTB的表达模式重叠,但在脑发育过程中,这些模式变得相互补充。