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September 1, 1996Journal of Biological Chemistry185 citationsOpen Access

Angiotensin II Induction of Neurite Outgrowth by AT2 Receptors in NG108-15 Cells

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LLLiette LaflammeMGMarc de GasparoJGJean‐Marc Gallo

Structured PICO

P
Population
Nondifferentiated and dibutyryl cAMP-differentiated NG108-15 cells
I
Intervention
Angiotensin II (100 nM) for 3 days
C
Comparator
Untreated cells or cells treated with AT1/AT2 antagonists (DUP 753, PD 123319)
O
Outcome
Morphological differentiation (neurite outgrowth) and levels of polymerized tubulin and MAP2csurrogate

Angiotensin II promotes neuronal differentiation through AT2 receptors and inhibits it through AT1 receptors, demonstrating negative cross-talk between the two receptor types.

Abstract

In the present study, 3-day treatment of nondifferentiated NG108-15 cells with 100 nM angiotensin II (Ang II) induces morphological differentiation of neuronal cells characterized by the outgrowth of neurites. These morphological changes are correlated with an increase in the level of polymerized tubulin and in the level of the microtubule-associated protein, MAP2c. Mediation by the AT2 receptor may be inferred since: (a) these cells contain only AT2 receptors; (b) the effects are mimicked by CGP 42112 (an AT2 receptor agonist); (c) they are not suppressed by the addition of DUP 753 (an AT1 receptor antagonist); and (d) are abolished by co-incubation with PD 123319 (an AT2 receptor antagonist). Application of Ang II in dibutyryl cAMP-differentiated cells (which contain both types of receptors) induces neurite retraction, an effect mediated by the AT1 receptor. These results indicate that the AT2 receptor of Ang II induces neuronal differentiation, which is initiated through an increase in the levels of MAP2c associated with tubulin. Moreover, our results demonstrate that the AT1 receptor inhibit the process of differentiation induced by dibutyryl cAMP, whereas the AT2 receptors potentiate this effect, illustrating negative cross-talk interaction between the two types of Ang II receptors.

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Cite This Study

Laflamme et al. (1996) studied this question.

synapsesocial.com/papers/6a20abb2055a1cd247eb83bahttps://doi.org/10.1074/jbc.271.37.22729
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  1. 1Angiotensin II type 2 receptor stimulation of neuronal K+ currents involves an inhibitory GTP binding protein1994 · 150 citations
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  3. 3Microtubule-Associated Proteins: Their Potential Role in Determining Neuronal Morphology1988 · 604 citations
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  5. 5[14] Direct identification of microtubule-associated proteins be selective extraction of cultured cells1986 · 36 citations