Institute of Developmental Biology, University of Cologne, Cologne, Gyrhofstrasse 17, D-50931, Germany.
Dev Biol. 2010 Sep 1;345(1):80-93. doi: 10.1016/j.ydbio.2010.05.019. Epub 2010 May 26.
The formation of the BMP gradient which patterns the DV axis in flies and vertebrates requires several extracellular modulators like the inhibitory protein Sog/Chordin, the metalloprotease Tolloid (Tld), which cleaves Sog/Chordin, and the CR domain protein Twisted gastrulation (Tsg). While flies and vertebrates have only one sog/chordin gene they possess several paralogues of tld and tsg. A simpler and probably ancestral situation is observed in the short-germ beetle Tribolium castaneum (Tc), which possesses only one tld and one tsg gene. Here we show that in T. castaneum tld is required for early BMP signalling except in the head region and Tc-tld function is, as expected, dependent on Tc-sog. In contrast, Tc-tsg is required for all aspects of early BMP signalling and acts in a Tc-sog-independent manner. For comparison with Drosophila melanogaster we constructed fly embryos lacking all early Tsg activity (tsg;;srw double mutants) and show that they still establish a BMP signalling gradient. Thus, our results suggest that the role of Tsg proteins for BMP gradient formation has changed during insect evolution.
BMP 梯度的形成模式在苍蝇和脊椎动物的 DV 轴上需要几种细胞外调节剂,如抑制蛋白 Sog/Chordin、金属蛋白酶 Tolloid(Tld),它能切割 Sog/Chordin,以及 CR 结构域蛋白 Twisted gastrulation(Tsg)。虽然苍蝇和脊椎动物只有一个 sog/chordin 基因,但它们拥有几个 tld 和 tsg 的基因。在短 germ 甲虫 Tribolium castaneum(Tc)中观察到一种更简单且可能是原始的情况,它只拥有一个 tld 和一个 tsg 基因。在这里,我们表明在 T. castaneum 中,tld 除了在头部区域外,都需要早期 BMP 信号,并且 Tc-tld 功能如预期的那样依赖于 Tc-sog。相比之下,Tc-tsg 是早期 BMP 信号的所有方面所必需的,并且以 Tc-sog 独立的方式起作用。为了与果蝇 melanogaster 进行比较,我们构建了缺乏所有早期 Tsg 活性的果蝇胚胎(tsg;;srw 双突变体),并表明它们仍然建立了 BMP 信号梯度。因此,我们的结果表明,Tsg 蛋白在 BMP 梯度形成中的作用在昆虫进化过程中发生了变化。