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在早期肾脏器官发生过程中,输尿管分支的诱导是对Wnt-2b信号的一种反应。

Induction of ureter branching as a response to Wnt-2b signaling during early kidney organogenesis.

作者信息

Lin Y, Liu A, Zhang S, Ruusunen T, Kreidberg J A, Peltoketo H, Drummond I, Vainio S

机构信息

Biocenter Oulu and Department of Biochemistry, University of Oulu, Oulu, Finland.

出版信息

Dev Dyn. 2001 Sep;222(1):26-39. doi: 10.1002/dvdy.1164.

Abstract

Epithelial-mesenchymal tissue interactions play a central role in vertebrate organogenesis, but the molecular mediators and mechanisms of these morphogenetic interactions are still not well characterized. We report here on the expression pattern of Wnt-2b during mouse organogenesis and on tests of its function in epithelial- mesenchymal interactions during kidney development. Wnt-2b is expressed in numerous developing organs in the mouse embryo, including the kidney, lung, salivary gland, gut, pancreas, adrenal gland, and genital tubercle. Additional sites of expression include the branchial arches and craniofacial placodes such as the eye and ear. The data suggest that the expression of Wnt-2b is associated with organs regulated by epithelial-mesenchymal interactions. It is typically localized in the capsular epithelium or peripheral mesenchymal cells of organ rudiments, e.g., the perinephric mesenchymal cells in the region of the presumptive renal stroma in the developing kidney at E11.5. Functional studies of the kidney demonstrate that cells expressing Wnt-2b are not capable of inducing tubule formation but instead stimulate ureter development. Incubation of isolated ureteric buds on such cells supports bud growth and branching. In addition, recombination of Wnt-2b-pretreated ureteric bud tissue with isolated nephrogenic mesenchyme results in a recovery of organogenesis and the expression of epithelial genes within the reconstituted organ explant. Lithium, a known activator of Wnt signaling (Hedgepeth et al. [1997] Dev Biol 185:82-91), is also sufficient to promote ureter branching in the reconstituted kidney in a comparable manner to Wnt-2b signaling, whereas Wnt-4, which induces tubules, neither supports the growth of a ureteric bud nor leads to reconstitution of the ureteric bud with the kidney mesenchyme. We conclude that Wnt-2b may act in the mouse kidney as an early mesenchymal signal controlling morphogenesis of epithelial tissue, and that the Wnt pathway may regulate ureter branching directly. In addition, Wnt signals in the kidney differ qualitatively and are specific to either the epithelial ureteric bud or the kidney mesenchyme.

摘要

上皮-间充质组织相互作用在脊椎动物器官发生过程中起着核心作用,但这些形态发生相互作用的分子介质和机制仍未得到充分表征。我们在此报告Wnt-2b在小鼠器官发生过程中的表达模式,以及其在肾脏发育过程中上皮-间充质相互作用中的功能测试。Wnt-2b在小鼠胚胎的许多发育器官中表达,包括肾脏、肺、唾液腺、肠道、胰腺、肾上腺和生殖结节。其他表达部位包括鳃弓和颅面部基板,如眼睛和耳朵。数据表明,Wnt-2b的表达与受上皮-间充质相互作用调节的器官有关。它通常定位在器官原基的被膜上皮或外周间充质细胞中,例如在E11.5发育中的肾脏中假定肾基质区域的肾周间充质细胞。肾脏的功能研究表明,表达Wnt-2b的细胞不能诱导肾小管形成,而是刺激输尿管发育。将分离的输尿管芽在这些细胞上孵育可支持芽的生长和分支。此外,用Wnt-2b预处理的输尿管芽组织与分离的肾源性间充质重组可导致器官发生的恢复以及重组器官外植体中上皮基因的表达。锂是一种已知的Wnt信号激活剂(Hedgepeth等人[1997]《发育生物学》185:82-91),也足以以与Wnt-2b信号相当的方式促进重组肾脏中的输尿管分支,而诱导肾小管的Wnt-4既不支持输尿管芽的生长,也不会导致输尿管芽与肾间充质的重组。我们得出结论,Wnt-2b可能在小鼠肾脏中作为控制上皮组织形态发生的早期间充质信号起作用,并且Wnt途径可能直接调节输尿管分支。此外,肾脏中的Wnt信号在质量上有所不同,并且对上皮输尿管芽或肾间充质具有特异性。

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