首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Studies on the mechanism of retinoid-induced pattern duplications in the early chick limb bud: temporal and spatial aspects
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Studies on the mechanism of retinoid-induced pattern duplications in the early chick limb bud: temporal and spatial aspects

机译:类维生素A诱导雏鸡肢芽早期模式重复的机制:时空方面

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摘要

All-trans-retinoic acid causes striking digit pattern changes when it is continuously released from a bead implanted in the anterior margin of an early chick wing bud. In addition to the normal set of digits (234), extra digits form in a mirror-symmetrical arrangement, creating digit patterns such as a 432234. These retinoic acid-induced pattern duplications closely mimic those found after grafts of polarizing region cells to the same positions with regard to dose-response, timing, and positional effects. To elucidate the mechanism by which retinoic acid induces these pattern duplications, we have studied the temporal and spatial distribution of all-trans-retinoic acid and its potent analogue TTNPB in these limb buds. We find that the induction process is biphasic: there is an 8-h lag phase followed by a 6-h duplication phase, during which additional digits are irreversibly specified in the sequence digit 2, digit 3, digit 4. On average, formation of each digit seems to require between 1 and 2 h. The tissue concentrations, metabolic pattern, and spatial distribution of all- trans-retinoic acid and TTNPB in the limb rapidly reach a steady state, in which the continuous release of the retinoid is balanced by loss from metabolism and blood circulation. Pulse-chase experiments reveal that the half-time of clearance from the bud is 20 min for all-trans- retinoic acid and 80 min for TTNPB. Manipulations that change the experimentally induced steep concentration gradient of TTNPB suggest that a graded distribution of retinoid concentrations across the limb is required during the duplication phase to induce changes in the digit pattern. The extensive similarities between results obtained with retinoids and with polarizing region grafts raise the possibility that retinoic acid serves as a natural "morphogen" in the limb.
机译:当全反式维甲酸从植入雏鸡翅膀芽前缘的珠子连续释放时,会引起惊人的数字模式变化。除了正常的一组数字(234)外,其他数字也以镜像对称的形式形成,从而形成数字图案,例如432234。这些视黄酸诱导的图案重复非常类似于将极化区域细胞移植到相同位置后发现的图案重复。有关剂量反应,时间安排和位置影响的位置。为了阐明视黄酸诱导这些模式重复的机制,我们研究了这些肢芽中全反式视黄酸及其有效类似物TTNPB的时空分布。我们发现归纳过程是双相的:有一个8小时的滞后阶段,接着是一个6小时的复制阶段,在此期间,在序列数字2,数字3,数字4中不可逆地指定了其他数字。每个数字似乎需要1到2小时。肢体中全反式维甲酸和TTNPB的组织浓度,代谢模式和空间分布迅速达到稳定状态,其中维甲酸的持续释放通过代谢和血液循环的损失得以平衡。脉冲追踪实验表明,对于全反式维甲酸,从芽中清除的半衰期为20分钟,而对于TTNPB,则为80分钟。改变实验诱导的TTNPB陡峭浓度梯度的操作表明,在复制阶段,需要在四肢上形成类视黄醇浓度的梯度分布,以诱导手指图形的变化。类视黄醇和极化区域移植物获得的结果之间的广泛相似性,增加了视黄酸充当肢体中天然“形态发生原”的可能性。

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