Harfe B D, Branda C S, Krause M, Stern M J, Fire A
Carnegie Institution of Washington, Department of Embryology, Baltimore, MD 21210, USA.
Development. 1998 Jul;125(13):2479-88. doi: 10.1242/dev.125.13.2479.
Basic-helix-loop helix factors of the myoD/myf5/ myogenin/MRF4 family have been implicated in acquisition and elaboration of muscle cell fates. Here we describe both myogenic and non-myogenic roles for the Caenorhabditis elegans member of this family (CeMyoD) in postembryonic mesodermal patterning. The postembryonic mesodermal lineage in C. elegans provides a paradigm for many of the issues in mesodermal fate specification: a single mesoblast ('M') divides to generate 14 striated muscles, 16 non-striated muscles, and two non-muscle cells. To study CeMyoD function in the M lineage, we needed to circumvent an embryonic requirement for the protein. Two approaches were used: (1) isolation of mutants that decrease CeMyoD levels while retaining viability, and (2) analysis of genetic mosaics that had lost CeMyoD in the M lineage. With either manipulation, we observed a series of cell-fate transformations affecting a subset of both striated muscles and non-muscle cells. In place of these normal fates, the affected lineages produced a number of myoblast-like cells that initially failed to differentiate, instead swelling to acquire a resemblance to sex myoblasts (M-lineage-derived precursors to non-striated uterine and vulval muscles). Like normal sex myoblasts, the ectopic myoblast-like cells were capable of migration and proliferation followed by differentiation of progeny cells into vulval and uterine muscle. Our results demonstrate a cell-intrinsic contribution of CeMyoD to specification of both non-muscle and muscle fates.
肌分化因子 MyoD/myf5/肌细胞生成素/MRF4 家族的碱性螺旋-环-螺旋因子与肌肉细胞命运的获得和细化有关。在此,我们描述了该家族的秀丽隐杆线虫成员(CeMyoD)在胚胎后中胚层模式形成中的成肌和非成肌作用。秀丽隐杆线虫的胚胎后中胚层谱系为中胚层命运特化中的许多问题提供了一个范例:单个中胚层母细胞(“M”)分裂产生 14 条横纹肌、16 条非横纹肌和两个非肌肉细胞。为了研究 CeMyoD 在 M 谱系中的功能,我们需要规避该蛋白在胚胎期的需求。我们采用了两种方法:(1)分离降低 CeMyoD 水平但仍保持活力的突变体,以及(2)分析在 M 谱系中失去 CeMyoD 的遗传嵌合体。通过任何一种操作,我们都观察到了一系列影响横纹肌和非肌肉细胞子集的细胞命运转变。替代这些正常命运,受影响的谱系产生了许多最初未能分化的成肌细胞样细胞,而是肿胀以获得类似于性成肌细胞(非横纹子宫和外阴肌的 M 谱系来源前体)的外观。与正常性成肌细胞一样,异位成肌细胞样细胞能够迁移和增殖,随后子代细胞分化为外阴和子宫肌肉。我们的结果证明了 CeMyoD 对非肌肉和肌肉命运特化的细胞内在贡献。