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首页> 外文期刊>Developmental biology >Regulation of cell polarity in the cartilage growth plate and perichondrium of metacarpal elements by HOXD13 and WNT5A
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Regulation of cell polarity in the cartilage growth plate and perichondrium of metacarpal elements by HOXD13 and WNT5A

机译:HOXD13和WNT5A对软骨生长板和掌骨膜软骨膜细胞极性的调节

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摘要

The morphology of bones is genetically determined, but the molecular mechanisms that control shape, size and the overall gestalt of bones remain unclear. We previously showed that metacarpals in the synpolydactyly homolog (spdh) mouse, which carries a mutation in Hoxd13 similar to the human condition synpolydactyly (SPD), were transformed to carpal-like bones with cuboid shape that lack cortical bone and a perichondrium and are surrounded by a joint surface. Here we provide evidence that spdh metacarpal growth plates have a defect in cell polarization with a random instead of linear orientation. In parallel prospective perichondral cells failed to adopt the characteristic flattened cell shape. We observed a similar cell polarity defect in metacarpals of Wnt5a-/- mice. Wnt5a and the closely related Wnt5b were downregulated in spdh handplates, and HOXD13 induced expression of both genes in vitro. Concomitant we observed mislocalization of core planar cell polarity (PCP) components DVL2 and PRICKLE1 in spdh metacarpals indicating a defect in the WNT/PCP pathway. Conversely the WNT/β-CATENIN pathway, a hallmark of joint cells lining carpal bones, was upregulated in the perichondral region. Finally, providing spdh limb explant cultures with cells expressing either HOXD13 or WNT5A led to a non-cell autonomous partial rescue of cell polarity the perichondral region and restored the expression of perichondral markers. This study provides a so far unrecognized link between HOX proteins and cell polarity in the perichondrium and the growth plate, a failure of which leads to transformation of metacarpals to carpal-like structures.
机译:骨骼的形态是由遗传决定的,但是控制骨骼的形状,大小和总体构形的分子机制仍不清楚。我们以前表明,在同义双歧同系物(spdh)小鼠中的掌骨,其在Hoxd13中携带的突变与人类条件同义双歧状(SPD)类似,被转化为具有长方体形状的腕状骨头,缺少皮质骨和软骨膜,被包围通过关节表面。在这里,我们提供了证据,表明spdh掌骨生长板具有随机而不是线性方向的细胞极化缺陷。在平行的前瞻性软骨细胞未能采取特征扁平的细胞形状。我们在Wnt5a-/-小鼠的掌骨中观察到类似的细胞极性缺陷。 Wnt5a和密切相关的Wnt5b在spdh手板上被下调,而HOXD13在体外诱导这两个基因的表达。与此同时,我们观察到了spdh掌骨中核心平面细胞极性(PCP)组件DVL2和PRICKLE1的错误定位,表明WNT / PCP途径存在缺陷。相反,WNT /β-CATENIN途径是腕骨区域的关节细胞标志,在软骨周围区域被上调。最后,为spdh肢外植体培养物表达HOXD13或WNT5A的细胞导致软骨周围区域的细胞极性的非细胞自主部分抢救,并恢复了软骨周围标志物的表达。这项研究提供了迄今为止还无法识别的HOX蛋白与软骨膜和生长板中细胞极性之间的联系,失败的原因是掌骨转化为腕骨状结构。

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