Ovchinnikov Dmitry A, Selever Jennifer, Wang Ying, Chen You-Tzung, Mishina Yuji, Martin James F, Behringer Richard R
Department of Molecular Genetics, University of Texas M. D. Anderson Cancer Center, 1515 Holcombe Blvd., Houston, TX 77030, USA.
Dev Biol. 2006 Jul 1;295(1):103-15. doi: 10.1016/j.ydbio.2006.03.013. Epub 2006 Apr 21.
The mesenchyme of the developing vertebrate limb responds to inductive signals, giving rise to skeletal elements that define limb shape and size. Several signals emanate from the limb ectoderm and in particular from the specialized epithelium of the apical ectodermal ridge (AER), including three members of the bone morphogenetic protein (BMP) family of signaling molecules, BMP2, BMP4 and BMP7. Using the Cre/loxP system in mice, we rendered limb bud mesenchyme insensitive to BMP signals through the type I receptor, BMPR-IA. Conditional mutants had shortened limbs and almost complete agenesis of the autopod because of reduced cell proliferation. Reduced expression of downstream BMP signaling targets, Msx1, Msx2 and gremlin in the distal mesenchyme (progress zone) correlated with decreased levels of cyclin D1 and Wnt5a. Ectopic anterior activation of sonic hedgehog (SHH) signaling and Hox expression revealed alterations in anterior-posterior (AP) patterning. Abnormal localization of Lmx1b-expressing cells in the ventral mesenchyme, along with histological alterations and an abnormal melanization pattern of the limb, indicate altered dorsal-ventral (DV) boundaries. These findings suggest that signaling through BMPR-IA in limb mesenchyme is essential for distal outgrowth and also influences AP and DV patterning.
发育中的脊椎动物肢体的间充质对诱导信号作出反应,产生决定肢体形状和大小的骨骼成分。几种信号源自肢体外胚层,特别是来自顶端外胚层嵴(AER)的特化上皮,包括信号分子骨形态发生蛋白(BMP)家族的三个成员,即BMP2、BMP4和BMP7。利用小鼠中的Cre/loxP系统,我们使肢芽间充质通过I型受体BMPR-IA对BMP信号不敏感。条件性突变体的肢体缩短,由于细胞增殖减少, autopod几乎完全发育不全(缺如)。远端间充质(进展区)中BMP信号下游靶点Msx1、Msx2和gremlin的表达降低,与细胞周期蛋白D1和Wnt5a水平降低相关。音猬因子(SHH)信号和Hox表达的异位前侧激活揭示了前后(AP)模式的改变。表达Lmx1b的细胞在腹侧间充质中的异常定位,以及肢体的组织学改变和异常的黑化模式,表明背腹(DV)边界改变。这些发现表明,肢体间充质中通过BMPR-IA的信号传导对于远端生长至关重要,并且还影响AP和DV模式形成。