Albert Y'vonne, Whitehead Jennifer, Eldredge Laurie, Carter John, Gao Xiaoguang, Tourtellotte Warren G
Department of Pathology, Northwestern University, Chicago, IL 60611, USA.
J Cell Biol. 2005 Apr 25;169(2):257-68. doi: 10.1083/jcb.200501156. Epub 2005 Apr 18.
Vertebrate muscle spindle stretch receptors are important for limb position sensation (proprioception) and stretch reflexes. The structurally complex stretch receptor arises from a single myotube, which is transformed into multiple intrafusal muscle fibers by sensory axon-dependent signal transduction that alters gene expression in the contacted myotubes. The sensory-derived signal transduction pathways that specify the fate of myotubes are very poorly understood. The zinc finger transcription factor, early growth response gene 3 (Egr3), is selectively expressed in sensory axon-contacted myotubes, and it is required for normal intrafusal muscle fiber differentiation and spindle development. Here, we show that overexpression of Egr3 in primary myotubes in vitro leads to the expression of a particular repertoire of genes, some of which we demonstrate are also regulated by Egr3 in developing intrafusal muscle fibers within spindles. Thus, our results identify a network of genes that are regulated by Egr3 and are involved in intrafusal muscle fiber differentiation. Moreover, we show that Egr3 mediates myotube fate specification that is induced by sensory innervation because skeletal myotubes that express Egr3 independent of other sensory axon regulation are transformed into muscle fibers with structural and molecular similarities to intrafusal muscle fibers. Hence, Egr3 is a target gene that is regulated by sensory innervation and that mediates gene expression involved in myotube fate specification and intrafusal muscle fiber morphogenesis.
脊椎动物的肌梭牵张感受器对于肢体位置感觉(本体感觉)和牵张反射很重要。这种结构复杂的牵张感受器起源于单个肌管,通过感觉轴突依赖的信号转导,该肌管转变为多个梭内肌纤维,这种信号转导改变了所接触肌管中的基因表达。决定肌管命运的感觉源信号转导途径目前了解甚少。锌指转录因子早期生长反应基因3(Egr3)在感觉轴突接触的肌管中选择性表达,它是正常梭内肌纤维分化和纺锤体发育所必需的。在这里,我们表明体外原代肌管中Egr3的过表达导致特定基因库的表达,我们证明其中一些基因在纺锤体内发育中的梭内肌纤维中也受Egr3调控。因此,我们的结果确定了一个由Egr3调控并参与梭内肌纤维分化的基因网络。此外,我们表明Egr3介导感觉神经支配诱导的肌管命运决定,因为独立于其他感觉轴突调控而表达Egr3的骨骼肌管会转变为与梭内肌纤维在结构和分子上相似的肌纤维。因此,Egr3是一个受感觉神经支配调控的靶基因,它介导参与肌管命运决定和梭内肌纤维形态发生的基因表达。