Sater A K, Alderton J M, Steinhardt R A
Department of Molecular and Cell Biology, University of California, Berkeley 94720.
Development. 1994 Feb;120(2):433-42. doi: 10.1242/dev.120.2.433.
In this paper, we show that an intracellular alkalinization of the dorsal ectoderm cells is among the earliest responses to neural induction in Xenopus. Planar explants of the dorsal marginal zone were prepared from embryos that had been microinjected during cleavage stages with the fluorescent pH indicator bis-carboxyethyl-carboxyfluorescein-dextran (BCECF-dextran), and intracellular pH (pHi) was monitored continuously by emission ratio microfluorimetry. During stage 10.5, the dorsal ectoderm cells undergo a sustained intracellular alkalinization of approximately 0.1 pH units in response to neural induction; in the absence of the inductive signal, the pH of the dorsal ectoderm cells decreases slightly. Ectoderm cells within planar explants of the ventral marginal zone show little change in pH during a similar period. This increase in intracellular pH is inhibited by 4, 4'-dihydrodiisothiocyanatostilbene-2, 2'-disulfonate (H2DIDS) or a low Na+/high Cl- medium, treatments that presumably affect anion transport. Under these conditions, expression of the anterior neural-specific homeobox gene engrailed is not detected, while the notochord-specific epitope recognized by the Tor-70 antibody is expressed in the presence of H2DIDS. This characteristic alkalinization is not evoked by pharmacological agents that reportedly alter ectodermal developmental pathways in Xenopus embryos, such as NH4Cl, phorbol esters, or cAMP-dependent protein kinase agonists. Our results suggest that an ionic regulatory event may participate in the regulation of gene expression in response to neural induction.
在本文中,我们表明非洲爪蟾背侧外胚层细胞的细胞内碱化是对神经诱导的最早反应之一。从在卵裂期显微注射了荧光pH指示剂双羧乙基羧基荧光素葡聚糖(BCECF - 葡聚糖)的胚胎制备背侧边缘区的平面外植体,并通过发射比率显微荧光测定法连续监测细胞内pH(pHi)。在10.5期,背侧外胚层细胞响应神经诱导经历约0.1个pH单位的持续细胞内碱化;在没有诱导信号的情况下,背侧外胚层细胞的pH略有下降。腹侧边缘区平面外植体内的外胚层细胞在相似时期pH变化很小。细胞内pH的这种升高受到4,4'-二氢二异硫氰酸芪-2,2'-二磺酸盐(H2DIDS)或低Na⁺/高Cl⁻培养基的抑制,这些处理可能影响阴离子转运。在这些条件下,未检测到前神经特异性同源框基因engrailed的表达,而在存在H2DIDS的情况下,Tor - 70抗体识别的脊索特异性表位表达。这种特征性碱化不会由据报道改变非洲爪蟾胚胎外胚层发育途径的药物诱导,例如氯化铵、佛波酯或cAMP依赖性蛋白激酶激动剂。我们的结果表明,离子调节事件可能参与响应神经诱导的基因表达调控。