Chen Y, Gutmann D H, Haipek C A, Martinsen B J, Bronner-Fraser M, Krull C E
Division of Biological Sciences,University of Missouri-Colombia, Colombia, Missouri 65211, USA.
Dev Dyn. 2004 Mar;229(3):541-54. doi: 10.1002/dvdy.20002.
The neurofibromatosis 2 (NF2) tumor suppressor protein merlin, or schwannomin, functions as a negative growth regulator such that inactivating mutations in Nf2 predispose humans to tumors. In addition, merlin has a critical role during embryonic development. Nf2-deficient mice die early during embryogenesis, with defects in gastrulation and extraembryonic tissues. To investigate the function of Nf2/merlin during embryonic development, we first identified the homologous Nf2 gene in chicken (cNf2) and examined the distribution of chicken merlin (c-merlin) during myogenesis. cNf2 encoded a full-length mRNA of 1,770 nucleotides and a protein of 589 residues. C-merlin shared high sequence homology and common protein motifs with vertebrate and Drosophila merlins. In addition, cNF2 functions as a negative growth regulator similar to human and Drosophila merlin in vitro. In vivo, c-merlin was expressed diffusely in the forming dermomyotome but down-regulated in migratory muscle precursors in the forelimb. As muscle formed in the limb, c-merlin expression was up-regulated. As an initial examination of c-merlin function during myogenesis, c-merlin was ectopically expressed in muscle precursors and the effects on muscle development were examined. We show that ectopic merlin expression reduces the proliferation of muscle precursors as well as their ability to migrate effectively in limb mesoderm. Collectively, these results demonstrate that c-merlin is developmentally regulated in migrating and differentiating myogenic cells, where it functions as a negative regulator of both muscle growth and motility.
神经纤维瘤病2型(NF2)肿瘤抑制蛋白默林,又称施万瘤蛋白,作为一种负性生长调节因子发挥作用,因此Nf2基因的失活突变会使人类易患肿瘤。此外,默林在胚胎发育过程中起关键作用。Nf2基因缺陷的小鼠在胚胎发生早期死亡,出现原肠胚形成和胚外组织缺陷。为了研究Nf2/默林在胚胎发育过程中的功能,我们首先在鸡中鉴定出同源的Nf2基因(cNf2),并检测了鸡默林(c-默林)在肌生成过程中的分布。cNf2编码一个1770个核苷酸的全长mRNA和一个589个残基的蛋白质。C-默林与脊椎动物和果蝇的默林具有高度的序列同源性和共同的蛋白质基序。此外,cNF2在体外作为一种负性生长调节因子发挥作用,类似于人和果蝇的默林。在体内,c-默林在形成的皮肌节中广泛表达,但在前肢迁移的肌肉前体细胞中表达下调。随着肢体中肌肉的形成,c-默林的表达上调。作为对c-默林在肌生成过程中功能的初步研究,我们在肌肉前体细胞中异位表达c-默林,并检测其对肌肉发育的影响。我们发现,异位表达默林会降低肌肉前体细胞的增殖以及它们在肢体中胚层有效迁移的能力。总的来说,这些结果表明,c-默林在迁移和分化的成肌细胞中受到发育调控,在其中它作为肌肉生长和运动的负调节因子发挥作用。