Hino Jun, Nishimatsu Shin-ichiro, Nagai Takeharu, Matsuo Hisayuki, Kangawa Kenji, Nohno Tsutomu
Department of Biochemistry, National Cardiovascular Center Research Institute, Suita, Osaka 565-8565, Japan.
Dev Biol. 2003 Aug 1;260(1):138-57. doi: 10.1016/s0012-1606(03)00223-9.
Bone morphogenetic proteins (BMPs) and their antagonists are involved in the axial patterning of vertebrate embryos. We report that both BMP-3b and BMP-3 dorsalize Xenopus embryos, but act as dissimilar antagonists within the BMP family. BMP-3b injected into Xenopus embryos triggered secondary head formation in an autonomous manner, whereas BMP-3 induced aberrant tail formation. At the molecular level, BMP-3b antagonized nodal-like proteins and ventralizing BMPs, whereas BMP-3 antagonized only the latter. These differences are due to divergence of their pro-domains. Less BMP-3b than BMP-3 precursor is proteolytically processed in embryos. BMP-3b protein associated with a monomeric form of Xnrl, a nodal-like protein, whereas BMP-3 did not. These molecular features are consistent with their expression profiles during Xenopus development. XBMP-3b is expressed in the prechordal plate, while xBMP-3 is expressed in the notochord. Using antisense morpholino oligonucleotides, we found that the depletion of both xBMP-3b and cerberus, a head inducer, caused headless Xenopus embryos, whereas the depletion of both xBMP-3 and cerberus affected the size of the somite. These results revealed that xBMP-3b and cerberus are essential for head formation regulated by the Spemann organizer, and that xBMP-3b and perhaps xBMP-3 are involved in the axial patterning of Xenopus embryos.
骨形态发生蛋白(BMPs)及其拮抗剂参与脊椎动物胚胎的轴向模式形成。我们报告称,BMP-3b和BMP-3都能使非洲爪蟾胚胎背化,但在BMP家族中作为不同的拮抗剂发挥作用。将BMP-3b注入非洲爪蟾胚胎会以自主方式引发次级头部形成,而BMP-3则诱导异常尾部形成。在分子水平上,BMP-3b拮抗类节点蛋白和使胚胎腹化的BMPs,而BMP-3仅拮抗后者。这些差异是由于它们前结构域的差异所致。在胚胎中,经蛋白水解加工的BMP-3b比BMP-3前体少。BMP-3b蛋白与类节点蛋白Xnrl的单体形式相关联,而BMP-3则不然。这些分子特征与它们在非洲爪蟾发育过程中的表达谱一致。XBMP-3b在前索板中表达,而xBMP-3在脊索中表达。使用反义吗啉代寡核苷酸,我们发现耗尽xBMP-3b和头部诱导因子Cerberus会导致无头的非洲爪蟾胚胎,而耗尽xBMP-3和Cerberus则会影响体节大小。这些结果表明,xBMP-3b和Cerberus对于斯佩曼组织者调控的头部形成至关重要,并且xBMP-3b以及可能的xBMP-3参与了非洲爪蟾胚胎的轴向模式形成。