Uziel Daniela, Mühlfriedel Sven, Bolz Jürgen
University of Jena, Institute for General Zoology, Erberstrasse 1, Jena, Germany.
Neuroreport. 2008 May 28;19(8):877-81. doi: 10.1097/WNR.0b013e3282ffdeec.
Ephrins-A5 are expressed in the cortical target layer of thalamic afferents at the time when these axons form terminal arbors. Previous in-vitro studies provided evidence that ephrin-A5 supports the branching of thalamic axons, but there is no direct in-vivo evidence for such a growth-promoting effect. Here we examined thalamocortical projections in ephrins-A5 deficient mice. Our results demonstrate that the laminar specificity of thalamic afferents in ephrin-A5 mutants remains preserved, but axonal arbor formation is greatly reduced. Thus, ephrin-A5 specifically regulates branch formation of thalamic axons, but does not affect target layer selection. Ephrin-A5-mutant mice are, therefore, a unique model to study the effects of reduced thalamic innervation on the assembly of cortical circuits and sensory processing.
在丘脑传入轴突形成终末分支时,Ephrins - A5在丘脑传入纤维的皮质靶层中表达。先前的体外研究表明,ephrin - A5支持丘脑轴突的分支,但尚无直接的体内证据证明这种促进生长的作用。在此,我们研究了ephrins - A5基因缺陷小鼠的丘脑皮质投射。我们的结果表明,ephrin - A5突变体中丘脑传入纤维的层特异性得以保留,但轴突分支的形成大大减少。因此,ephrin - A5特异性调节丘脑轴突的分支形成,但不影响靶层选择。因此,ephrin - A5突变小鼠是研究丘脑神经支配减少对皮质回路组装和感觉处理影响的独特模型。