A Gα-dependent pathway that antagonizes multiple chemoattractant responses that regulate directional cell movement

被引:32
作者
Brzostowski, JA
Parent, CA
Kimmel, AR [1 ]
机构
[1] NIDDKD, Cellular & Dev Biol Lab, NIH, Bethesda, MD 20892 USA
[2] NCI, Ctr Canc Res, Cellular & Mol Biol Lab, NIH, Bethesda, MD 20892 USA
关键词
cAMP; cGMP; PI(3,4,5)P(3); actin; myosin; Dictyostelium;
D O I
10.1101/gad.1173404
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Chemotactic cells, including neutrophils and Dictyostelium discoideum, orient and move directionally in very shallow chemical gradients. As cells polarize, distinct structural and signaling components become spatially constrained to the leading edge or rear of the cell. It has been suggested that complex feedback loops that function downstream of receptor signaling integrate activating and inhibiting pathways to establish cell polarity within such gradients. Much effort has focused on defining activating pathways, whereas inhibitory networks have remained largely unexplored. We have identified a novel signaling function in Dictyostelium involving a Galpha subunit (Galpha9) that antagonizes broad chemotactic response. Mechanistically, Galpha9 functions rapidly following receptor stimulation to negatively regulate PI3K/PTEN, adenylyl cyclase, and guanylyl cyclase pathways. The coordinated activation of these pathways is required to establish the asymmetric mobilization of actin and myosin that typifies polarity and ultimately directs chemotaxis. Most dramatically, cells lacking Galpha9 have extended PI(3,4,5)P(3), cAMP, and cGMP responses and are hyperpolarized. In contrast, cells expressing constitutively activated Galpha9 exhibit a reciprocal phenotype. Their second message pathways are attenuated, and they have lost the ability to suppress lateral pseudopod formation. Potentially, functionally similar Galpha-mediated inhibitory signaling may exist in other eukaryotic cells to regulate chemoattractant response.
引用
收藏
页码:805 / 815
页数:11
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