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通过向非洲爪蟾神经胚胚胎右侧皮下显微注射激活素,诱导超过95%的左右轴反转。

More than 95% reversal of left-right axis induced by right-sided hypodermic microinjection of activin into Xenopus neurula embryos.

作者信息

Toyoizumi R, Mogi K, Takeuchi S

机构信息

Department of Biological Sciences, Faculty of Science, Kanagawa University, Tsuchiya 2946, Hiratsuka, 259-1293, Japan.

出版信息

Dev Biol. 2000 May 15;221(2):321-36. doi: 10.1006/dbio.2000.9666.

Abstract

In recent years, genes that show left-right (L-R) asymmetric expression patterns have been identified one after another in vertebrate gastrula-neurula embryos. However, we still have little information about when the irreversible L-R specification is established in vertebrate embryos. In this report, we show that almost 100% of the embryos develop to be L-R-inverted larvae after microinjection of activin molecules into the right lateral hypodermic space of Xenopus neurula embryos. After right-side injection of 10-250 pg activin protein, both early neurulae just after gastrulation movement (stage 13-14) and late neurulae just before neural tube closure (stage 17-18) showed almost 100% reversal of the heart and gut L-R axes. At higher doses of activin, more than 90% of the L-R-inverted embryos showed L-R reversal of both heart and gut. The survival ratio of the right-injected 4-day embryos was 90% on average. In the left-injected embryos, the occurrence of L-R inversion was less than 2% as observed in normal untreated siblings (1.7%). When the same amount of activin (1-50 pg) was microinjected into both sides of neurula embryos, the incidence of L-R inversion was reduced to 58%. The injection of activin along the dorsal midline in the trunk region also randomized the visceral L-R axis. Injection of activin into the right side changed normal left-handed expression of Xnr-1 to right-handed or bilateral expression. In contrast, left-handed expression of Pitx2 was switched to the right side by right activin injection. This is the first report of a method that achieves complete inversion of the visceral L-R axis by treatment of embryos at the neurula stage. Activin not only acts on the neurulae to cancel the original L-R specification up to the late neurula stage, but also rebuilds a new L-R axis whose left side coincides with the injection side. It is suggested that the left and right halves of neurulae have equal potential for L-R differentiation.

摘要

近年来,在脊椎动物原肠胚-神经胚胚胎中,陆续发现了呈现左右(L-R)不对称表达模式的基因。然而,我们对于脊椎动物胚胎中不可逆的左右模式确立时间仍知之甚少。在本报告中,我们表明,将激活素分子显微注射到非洲爪蟾神经胚胚胎的右侧皮下空间后,几乎100%的胚胎发育为左右反转的幼虫。在右侧注射10 - 250 pg激活素蛋白后,原肠胚运动刚结束的早期神经胚(13 - 14期)和神经管闭合前的晚期神经胚(17 - 18期),心脏和肠道的左右轴几乎100%反转。在激活素剂量更高时,超过90%的左右反转胚胎心脏和肠道均出现左右反转。右侧注射的4天胚胎平均存活率为90%。在左侧注射的胚胎中,左右反转的发生率低于2%,与正常未处理的同胞胚胎(1.7%)观察结果相似。当将等量的激活素(1 - 50 pg)显微注射到神经胚胚胎两侧时,左右反转的发生率降至58%。在躯干区域沿背中线注射激活素也会使内脏左右轴随机化。向右侧注射激活素会将Xnr - 1正常的左手性表达转变为右手性或双侧表达。相反,向右侧注射激活素会将Pitx2的左手性表达转变为右手性。这是关于一种在神经胚阶段处理胚胎实现内脏左右轴完全反转方法的首次报告。激活素不仅作用于神经胚,在晚期神经胚阶段之前消除原有的左右模式,还重建了一个新的左右轴,其左侧与注射侧一致。这表明神经胚的左右两半在左右分化方面具有相等的潜力。

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