首页> 美国卫生研究院文献>Journal of Anatomy and Physiology >The lectin Dolichos biflorus agglutinin is a sensitive indicator of branching morphogenetic activity in the developing mouse metanephric collecting duct system
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The lectin Dolichos biflorus agglutinin is a sensitive indicator of branching morphogenetic activity in the developing mouse metanephric collecting duct system

机译:凝集素Dolichos biflorus凝集素是正在发育的小鼠后肾收集导管系统中分支形态发生活性的敏感指标

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摘要

The urine collecting duct system of the metanephric kidney develops by growth and branching morphogenesis of an unbranched progenitor tubule, the ureteric bud. Bud branching is mainly dichotomous and new branches form from existing branch tips, which are also the main sites of cell proliferation in the system. This behaviour, and the fact that some genes (e.g. Wnt11, Sox9) are expressed only in tips, suggests that tip cells are in a specific state of differentiation. In this report, we show that the lectin Dolichos biflorus agglutinin (DBA), hitherto regarded and used as a general marker of developing renal collecting ducts, binds to most of the duct system but does not bind to the very tips of growing branches. The zone avoided by DBA corresponds to the zone that expresses Wnt11, and the zone that shows enhanced cell proliferation. If branching of the ureteric bud of cultured embryonic kidneys is inhibited in organ culture, by blocking the kidney's endogenous glial cell-derived neurothrophic factor (GDNF)-based branch-promoting signals, the DBA-binding zone extends to the very end of the tip but is lost from there when branching is re-activated. Similarly, if excess GDNF is provided to growing kidneys, the DBA-free zone expands. DBA-staining status therefore appears to be a sensitive indicator of the morphogenetic activity of the collecting duct system.
机译:后肾肾脏的尿液收集系统通过无分支的祖母管(输尿管芽)的生长和分支形态发生而发育。芽的分支主要是二分的,并且从现有的分支尖端形成新的分支,这也是系统中细胞增殖的主要部位。这种行为,以及某些基因(例如Wnt11,Sox9)仅在提示中表达的事实,表明提示细胞处于特定的分化状态。在此报告中,我们显示凝集素双连花凝集素(DBA)迄今被视为并被用作发展中的肾脏收集导管的一般标志物,它与大部分导管系统结合,但不与正在生长的树枝的顶端结合。 DBA避免的区域对应于表达Wnt11的区域,以及显示增强的细胞增殖的区域。如果在器官培养中通过抑制肾脏内源性神经胶质细胞源性神经营养因子(GDNF)的分支促进信号来抑制培养的胚胎肾脏的输尿管芽的分支,则DBA结合区会延伸到尖端的末端但是在重新激活分支后会从那里丢失。同样,如果向生长中的肾脏提供过量的GDNF,则无DBA的区域会扩大。因此,DBA染色状态似乎是收集管道系统形态发生活动的敏感指标。

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