Studies on the mechanism of retinoid-induced pattern duplications in the early chick limb bud: temporal and spatial aspects.
Open Access
- 1 November 1985
- journal article
- research article
- Published by Rockefeller University Press in The Journal of cell biology
- Vol. 101 (5) , 1913-1920
- https://doi.org/10.1083/jcb.101.5.1913
Abstract
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 sleep 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.Keywords
This publication has 25 references indexed in Scilit:
- Decreased expression of N-myc precedes retinoic acid-induced morphological differentiation of human neuroblastomaNature, 1985
- Isolation of a homoeo box-containing gene from the engrailed region of Drosophila and the spatial distribution of its transcriptsNature, 1985
- The cell cycle, cell death, and cell morphology during retinoic acid-induced differentiation of embryonal carcinoma cellsDevelopmental Biology, 1984
- The effect of vitamin A on limb regeneration in Rana temporariaDevelopmental Biology, 1983
- Vitamin A and pattern formation in the regenerating limbNature, 1982
- Reversible and irreversible stages in the transition of cell surface marker during the differentiation of pluripotent teratocarcinoma cell induced with retinoic acidExperimental Cell Research, 1982
- Pattern regulation in the embryonic chick limb: Supernumerary limb formation with anterior (non-ZPA) limb bud tissueDevelopmental Biology, 1980
- Pattern Formation in Biological DevelopmentScientific American, 1978
- Positional signalling and specification of digits in chick limb morphogenesisNature, 1975
- Positional information and the spatial pattern of cellular differentiationJournal of Theoretical Biology, 1969