Switching between humoral and cellular immune responses in Drosophila is guided by the cytokine GBP

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作者
Seiji Tsuzuki
Hitoshi Matsumoto
Shunsuke Furihata
Masasuke Ryuda
Hirotoshi Tanaka
Eui Jae Sung
Gary S. Bird
Yixing Zhou
Stephen B. Shears
Yoichi Hayakawa
机构
[1] Saga University,Department of Applied Biological Sciences
[2] Inositol Signaling Section,undefined
[3] NIEHS,undefined
[4] NIH,undefined
[5] DHHS,undefined
[6] Research Triangle Park,undefined
[7] North Carolina 27709,undefined
[8] USA,undefined
[9] Calcium Regulation Section,undefined
[10] NIEHS,undefined
[11] NIH,undefined
[12] DHHS,undefined
[13] Research Triangle Park,undefined
[14] North Carolina 27709,undefined
[15] USA,undefined
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Nature Communications | / 5卷
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摘要
Insects combat infection through carefully measured cellular (for example, phagocytosis) and humoral (for example, secretion of antimicrobial peptides (AMPs)) innate immune responses. Little is known concerning how these different defense mechanisms are coordinated. Here, we use insect plasmatocytes and hemocyte-like Drosophila S2 cells to characterize mechanisms of immunity that operate in the haemocoel. We demonstrate that a Drosophila cytokine, growth-blocking peptides (GBP), acts through the phospholipase C (PLC)/Ca2+ signalling cascade to mediate the secretion of Pvf, a ligand for platelet-derived growth factor- and vascular endothelial growth factor-receptor (Pvr) homologue. Activated Pvr recruits extracellular signal-regulated protein kinase to inhibit humoral immune responses, while stimulating cell ‘spreading’, an initiating event in cellular immunity. The double-stranded RNA (dsRNA)-targeted knockdown of either Pvf2 or Pvr inhibits GBP-mediated cell spreading and activates AMP expression. Conversely, Pvf2 overexpression enhances cell spreading but inhibits AMP expression. Thus, we describe mechanisms to initiate immune programs that are either humoral or cellular in nature, but not both; such immunophysiological polarization may minimize homeostatic imbalance during infection.
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