Hsueh Y P, Sheng M
Howard Hughes Medical Institute and Department of Neurobiology, Massachusetts General Hospital and Harvard Medical School, Boston, Massachusetts 02114, USA.
J Neurosci. 1999 Sep 1;19(17):7415-25. doi: 10.1523/JNEUROSCI.19-17-07415.1999.
The syndecan family of cell surface heparan sulfate proteoglycans interacts via their cytoplasmic C-terminal tail with the PDZ domain of CASK/LIN-2, a membrane-associated guanylate kinase homolog. The syndecan-CASK interaction may be involved in intercellular signaling and/or cell adhesion. Here we show that syndecan-1 to syndecan-4 have distinctive mRNA distributions in adult rat brain by in situ hybridization, with syndecan-2 and -3 being the major syndecans expressed in neurons of the forebrain. At the protein level, syndecan-2 and -3 are differentially localized within neurons; syndecan-3 is concentrated in axons, whereas syndecan-2 is localized in synapses. The synaptic accumulation of syndecan-2 occurs late in synapse development. CASK is a cytoplasmic-binding partner for syndecans, and its subcellular distribution changes strikingly during development, shifting from a primarily axonal distribution in the first 2 postnatal weeks to a somatodendritic distribution in adult brain. This change in CASK distribution correlates temporally and spatially with the expression patterns of syndecan-3 and -2, consistent with the association of both of these syndecans with CASK in vivo. In support of this, we were able to coimmunoprecipitate a complex of CASK and syndecan-3 from brain extracts. Our results indicate that specific syndecans are differentially expressed in various cell types of the brain and are targeted to distinct subcellular compartments in neurons, where they may serve specialized functions. Moreover, CASK is appropriately expressed and localized to interact with both syndecan-2 and -3 in different compartments of the neuron throughout postnatal development.
细胞表面硫酸乙酰肝素蛋白聚糖的Syndecan家族通过其细胞质C末端尾巴与膜相关鸟苷酸激酶同系物CASK/LIN-2的PDZ结构域相互作用。Syndecan-CASK相互作用可能参与细胞间信号传导和/或细胞粘附。在这里,我们通过原位杂交表明,Syndecan-1至Syndecan-4在成年大鼠脑中具有独特的mRNA分布,其中Syndecan-2和-3是在前脑神经元中表达的主要Syndecan。在蛋白质水平上,Syndecan-2和-3在神经元内的定位不同;Syndecan-3集中在轴突中,而Syndecan-2定位于突触中。Syndecan-2在突触发育后期发生突触积累。CASK是Syndecan的细胞质结合伴侣,其亚细胞分布在发育过程中发生显著变化,从出生后前两周主要的轴突分布转变为成年大脑中的树突分布。CASK分布的这种变化在时间和空间上与Syndecan-3和-2的表达模式相关,这与这两种Syndecan在体内与CASK的关联一致。支持这一点的是,我们能够从脑提取物中共免疫沉淀CASK和Syndecan-3的复合物。我们的结果表明,特定的Syndecan在大脑的各种细胞类型中差异表达,并靶向神经元中不同的亚细胞区室,在那里它们可能发挥特殊功能。此外,在出生后的整个发育过程中,CASK在神经元的不同区室中都有适当的表达和定位,以与Syndecan-2和-3相互作用。