Cell‐cell contact mediates cAMP secretion in Dictyostelium discoideum
- 1 January 1991
- journal article
- research article
- Published by Wiley in Developmental Genetics
- Vol. 12 (1-2) , 54-62
- https://doi.org/10.1002/dvg.1020120111
Abstract
Cyclic adenosine 3′:5′ monophosphate (cAMP) and cell-cell contact regulate developmental gene expression in Dictyostelium discoideum. Developing D. discoideum amoebae synthesize and secrete cAMP following the binding of cAMP to their surface cAMP receptor, a response called cAMP signaling. We have demonstrated two responses of developing D. discoideum amoebae to cell-cell contact. Cell-cell contact elicits cAMP secretion and alters the amount of cAMP secreted in a subsequent cAMP signaling response. Depending upon experimental conditions, bacterial-amoebal contact and amoebal-amoebal contact can enhance or diminish the amount of cAMP secreted during a subsequent cAMP signaling response. We have hypothesized that cell-cell contact regulates D. discoideum development by altering cellular and extracellular levels of cAMP. To begin testing this hypothesis, these responses were further characterized. The two responses to cell-cell contact are independent, i.e., they can each occur in the absence of the other. The responses to cell-cell contact also have unique temperature dependences when compared to each other, cAMP signaling, and phagocytosis. This suggests that these four responses have unique steps in their transduction mechanisms. The secretion of cAMP in response to cell-cell contact appears to be a non-specific response; contact between D. discoideum amoebae and Enterobacter aerogenes, latex beads, or other amoebae elicits cAMP secretion. Despite the apparent similarities of the effects of bacterial-amoebal and amoebal-amoebal contact on the cAMP signaling response, this contact-induced response appears to be specific. Latex beads addition does not alter the magnitude of a subsequent cAMP signaling response. A mutant, DV212, does not alter the magnitude of its cAMP signaling response following bacterial-amoebal contact but alters the magnitude of its cAMP signaling response following amoebal-amoebal contact. Thus, amoebae can differentiate between bead-amoebal contact, bacterial-amoebal contact, and amoebal-amoebal contact.Keywords
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