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果蝇HB9在一部分运动神经元和中间神经元中表达,在这些神经元中它调节基因表达和轴突导向。

Drosophila HB9 is expressed in a subset of motoneurons and interneurons, where it regulates gene expression and axon pathfinding.

作者信息

Odden Joanne P, Holbrook Scott, Doe Chris Q

机构信息

Institute of Neuroscience, Institute of Molecular Biology, Howard Hughes Medical Institute, University of Oregon, Eugene, Oregon 97403-1254, USA.

出版信息

J Neurosci. 2002 Nov 1;22(21):9143-9. doi: 10.1523/JNEUROSCI.22-21-09143.2002.

Abstract

Motoneurons are an essential component of all metazoan nervous systems, but it is unknown whether there is an evolutionarily conserved mechanism for generating motoneurons during neurogenesis. In the vertebrate CNS, HB9/MNR2 transcription factors are specifically expressed in all somatic motoneurons and are necessary to distinguish motoneurons from interneurons, in part by repressing interneuron-specific gene expression. Here, we identify and characterize the single Drosophila ortholog of the HB9/MNR2 gene family. Drosophila HB9 is detected in a subset of motoneurons with ventral muscle targets and in a small group of interneurons, including the well characterized serotonergic interneurons. RNA interference knockdown of HB9 levels leads to defects in motoneuron ventral muscle target recognition, ectopic expression of a marker for dorsally projecting motoneurons (Even-skipped), and defects in serotonergic interneuronal projections. Conversely, ectopic HB9 expression causes an expansion of ventral motoneuron projections and repression of Even-skipped. Thus, Drosophila HB9 is required in a subset of motoneurons and interneurons for establishing proper axon projections but does not have a general role in distinguishing motoneuron and interneuron cell types.

摘要

运动神经元是所有后生动物神经系统的重要组成部分,但在神经发生过程中是否存在进化上保守的运动神经元生成机制尚不清楚。在脊椎动物中枢神经系统中,HB9/MNR2转录因子在所有躯体运动神经元中特异性表达,并且对于区分运动神经元和中间神经元是必需的,部分原因是通过抑制中间神经元特异性基因表达来实现。在这里,我们鉴定并表征了HB9/MNR2基因家族的单个果蝇直系同源基因。在具有腹侧肌肉靶点的一部分运动神经元以及一小群中间神经元中检测到果蝇HB9,包括特征明确的5-羟色胺能中间神经元。RNA干扰降低HB9水平会导致运动神经元腹侧肌肉靶点识别缺陷、背侧投射运动神经元(Even-skipped)标志物的异位表达以及5-羟色胺能中间神经元投射缺陷。相反,异位表达HB9会导致腹侧运动神经元投射扩展并抑制Even-skipped。因此,果蝇HB9在一部分运动神经元和中间神经元中对于建立正确的轴突投射是必需的,但在区分运动神经元和中间神经元细胞类型方面没有普遍作用。

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