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蝾螈Msx-1基因的表达及活性与肢体再生的关系

Expression and activity of the newt Msx-1 gene in relation to limb regeneration.

作者信息

Crews L, Gates P B, Brown R, Joliot A, Foley C, Brockes J P, Gann A A

机构信息

Ludwig Institute for Cancer Research, University College London, U.K.

出版信息

Proc Biol Sci. 1995 Feb 22;259(1355):161-71. doi: 10.1098/rspb.1995.0024.

Abstract

The Msx-1 homeobox gene is expressed in various contexts during vertebrate development, including the progress zone of the avian and mouse limb bud. Expression of mouse Msx-1 in a cultured myogenic cell line conferred a transformed phenotype and inhibited fusion into myotubes. It has been proposed that Msx-1 expression is required to maintain certain cells in a proliferating and undifferentiated state and may be associated with the ability to regenerate limbs. Urodele amphibians such as the newt regenerate their limbs by formation of a growth zone or blastema, and we have isolated and sequenced newt Msx-1 (NvMsx-1) from a limb blastemal cDNA library. NvMsx-1 expression was detectable in RNA preparations from both limb and tail and their regeneration blastemas, although cultured cells established from limb blastemal mesenchyme gave negative results. When either COS cells or cultured newt blastemal cells were cotransfected with an expression vector for NvMsx-1 and reporter plasmids containing multiple homeobox protein binding sites, NvMsx-1 repressed reporter expression. If NvMsx-1 was expressed together with a marker enzyme in cultured newt blastemal cells, no significant difference in DNA synthesis was observed relative to control transfectants. When myogenic mononucleate cells were transfected with NvMsx-1 and subsequently exposed to low serum to promote fusion, the fraction of Msx-1 positive cells in myotubes was comparable to a control transfected population analysed in the same culture. These results indicate that although Msx-1 expression could be important for limb regeneration, it does not exert a cell-autonomous effect on proliferation or myogenic differentiation of cultured blastemal cells.

摘要

Msx-1同源框基因在脊椎动物发育的不同阶段均有表达,包括鸟类和小鼠肢芽的进展区。在培养的成肌细胞系中表达小鼠Msx-1可赋予其转化表型并抑制其融合形成肌管。有人提出,Msx-1的表达对于维持某些细胞处于增殖和未分化状态是必需的,并且可能与肢体再生能力有关。蝾螈等有尾两栖动物通过形成生长区或芽基来再生肢体,我们从肢体芽基cDNA文库中分离并测序了蝾螈Msx-1(NvMsx-1)。在来自肢体和尾巴及其再生芽基的RNA制剂中均可检测到NvMsx-1的表达,尽管从肢体芽基间充质建立的培养细胞给出了阴性结果。当COS细胞或培养的蝾螈芽基细胞与NvMsx-1的表达载体和含有多个同源框蛋白结合位点的报告质粒共转染时,NvMsx-1抑制了报告基因的表达。如果在培养的蝾螈芽基细胞中将NvMsx-1与一种标记酶一起表达,则相对于对照转染细胞,未观察到DNA合成有显著差异。当用NvMsx-1转染成肌单核细胞,随后暴露于低血清中以促进融合时,肌管中Msx-1阳性细胞的比例与在同一培养物中分析的对照转染群体相当。这些结果表明,尽管Msx-1的表达对于肢体再生可能很重要,但它对培养的芽基细胞的增殖或成肌分化并不发挥细胞自主效应。

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