Kawakami Y, Ishikawa T, Shimabara M, Tanda N, Enomoto-Iwamoto M, Iwamoto M, Kuwana T, Ueki A, Noji S, Nohno T
Department of Molecular Biology, Kawasaki Medical School, Kurashiki, Japan.
Development. 1996 Nov;122(11):3557-66. doi: 10.1242/dev.122.11.3557.
To examine the role of BMP signaling during limb pattern formation, we isolated chicken cDNAs encoding type I (BRK-1 and BRK-2) and type II (BRK-3) receptors for bone morphogenetic proteins. BRK-2 and BRK-3, which constitute dual-affinity signaling receptor complexes for BMPs, are co-expressed in condensing precartilaginous cells, while BRK-1 is weakly expressed in the limb mesenchyme. BRK-3 is also expressed in the apical ectodermal ridge and interdigital limb mesenchyme. BRK-2 is intensely expressed in the posterior-distal region of the limb bud. During digit duplication by implanting Sonic hedgehog-producing cells, BRK-2 expression is induced anteriorly in the new digit forming region as observed for BMP-2 and BMP-7 expression in the limb bud. Dominant-negative effects on BMP signaling were obtained by over-expressing kinase domain-deficient forms of the receptors. Chondrogenesis of limb mesenchymal cells is markedly inhibited by dominant-negative BRK-2 and BRK-3, but not by BRK-1. Although the bone pattern was not disturbed by expressing individual dominant-negative BRK independently, preferential distal and posterior limb truncations resulted from co-expressing the dominant-negative forms of BRK-2 and BRK-3 in the whole limb bud, thus providing evidence that BMPs are essential morphogenetic signals for limb bone patterning.
为了研究骨形态发生蛋白(BMP)信号传导在肢体模式形成过程中的作用,我们分离了编码BMPs的I型(BRK - 1和BRK - 2)和II型(BRK - 3)受体的鸡cDNA。构成BMPs双亲和性信号受体复合物的BRK - 2和BRK - 3在软骨前凝聚细胞中共同表达,而BRK - 1在肢体间充质中弱表达。BRK - 3也在顶端外胚层嵴和趾间肢体间充质中表达。BRK - 2在肢芽的后远端区域强烈表达。在通过植入产生音猬因子的细胞进行趾复制过程中,如在肢芽中观察到的BMP - 2和BMP - 7表达一样,BRK - 2表达在前部新趾形成区域被诱导。通过过表达受体的激酶结构域缺陷形式获得了对BMP信号传导的显性负效应。显性负性的BRK - 2和BRK - 3显著抑制肢体间充质细胞的软骨形成,但BRK - 1则无此作用。虽然单独表达显性负性BRK不会干扰骨模式,但在整个肢芽中共表达显性负性形式的BRK - 2和BRK - 3会导致肢体优先出现远端和后部截断,从而提供证据表明BMPs是肢体骨模式形成所必需的形态发生信号。