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斑马鱼肌肉细胞中nic1乙酰胆碱受体突变的自主表达。

Autonomous expression of the nic1 acetylcholine receptor mutation in zebrafish muscle cells.

作者信息

Sepich D S, Ho R K, Westerfield M

机构信息

Institute of Neuroscience, University of Oregon, Eugene 97403.

出版信息

Dev Biol. 1994 Jan;161(1):84-90. doi: 10.1006/dbio.1994.1010.

Abstract

The nic1b107 (nic1) mutation blocks expression of both functional and clustered acetylcholine receptors (AChRs) in zebrafish muscle. Normally, signaling between motoneurons and muscles regulates AChR clustering. To learn if signaling is affected and to identify the primary cellular target of the nic1 mutation, we made mosaic embryos by transplanting motoneurons and muscle precursors from wild-type to mutant embryos. Genotypically mutant muscle cells fail to cluster AChRs even when contacted by wild-type motoneurons, whereas genotypically mutant motoneurons induce AChR clustering on wild-type muscle cells. Moreover, mutant muscle cells fail to cluster AChRs under culture conditions that induce AChR clustering on wild-type cells. We conclude that the nic1 mutation acts autonomously in muscle cells rather than by affecting signaling between motoneurons and muscle. The wild-type nic1 gene is necessary in muscle for expression and clustering of AChRs.

摘要

nic1b107(nic1)突变会阻断斑马鱼肌肉中功能性和聚集型乙酰胆碱受体(AChRs)的表达。正常情况下,运动神经元与肌肉之间的信号传导会调节AChR的聚集。为了了解信号传导是否受到影响以及确定nic1突变的主要细胞靶点,我们通过将野生型的运动神经元和肌肉前体细胞移植到突变胚胎中制作了嵌合胚胎。基因型为突变型的肌肉细胞即使与野生型运动神经元接触也无法使AChRs聚集,而基因型为突变型的运动神经元能诱导野生型肌肉细胞上的AChR聚集。此外,在能诱导野生型细胞上AChR聚集的培养条件下,突变型肌肉细胞仍无法使AChRs聚集。我们得出结论,nic1突变在肌肉细胞中自主发挥作用,而非通过影响运动神经元与肌肉之间的信号传导。野生型nic1基因对于肌肉中AChRs的表达和聚集是必需的。

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