Moving towards a paradigm: common mechanisms of chemotactic signaling in Dictyostelium and mammalian leukocytes

被引:154
作者
Artemenko, Yulia [1 ]
Lampert, Thomas J. [1 ]
Devreotes, Peter N. [1 ]
机构
[1] Johns Hopkins Univ, Sch Med, Dept Cell Biol, Baltimore, MD 21205 USA
基金
美国国家卫生研究院;
关键词
Chemotaxis; Amoeboid migration; Signal transduction; Cytoskeleton; Polarity; GPCR; ACTIVATED PROTEIN-KINASE; G-BETA-GAMMA; MYOSIN HEAVY-CHAIN; TUMOR-SUPPRESSOR PTEN; HUMAN MONOCYTE CHEMOTAXIS; PHOSPHOINOSITIDE 3-KINASE GAMMA; MEDIATES RAP1-INDUCED ADHESION; CONTROLS NEUTROPHIL ADHESION; PLECKSTRIN HOMOLOGY DOMAIN; NUCLEOTIDE EXCHANGE FACTOR;
D O I
10.1007/s00018-014-1638-8
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Chemotaxis, or directed migration of cells along a chemical gradient, is a highly coordinated process that involves gradient sensing, motility, and polarity. Most of our understanding of chemotaxis comes from studies of cells undergoing amoeboid-type migration, in particular the social amoeba Dictyostelium discoideum and leukocytes. In these amoeboid cells the molecular events leading to directed migration can be conceptually divided into four interacting networks: receptor/G protein, signal transduction, cytoskeleton, and polarity. The signal transduction network occupies a central position in this scheme as it receives direct input from the receptor/G protein network, as well as feedback from the cytoskeletal and polarity networks. Multiple overlapping modules within the signal transduction network transmit the signals to the actin cytoskeleton network leading to biased pseudopod protrusion in the direction of the gradient. The overall architecture of the networks, as well as the individual signaling modules, is remarkably conserved between Dictyostelium and mammalian leukocytes, and the similarities and differences between the two systems are the subject of this review.
引用
收藏
页码:3711 / 3747
页数:37
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