Hemocyte–hemocyte adhesion and nodulation reactions of the greater wax moth, Galleria mellonella are influenced by cholera toxin and its B-subunit

Jason F. Lapointe , Gary B. Dunphy , Craig A. Mandato
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引用次数: 13

Abstract

Nodulation, the lepidopteran insect immune response to large numbers of microbes in the blood (hemolymph) consists of the coordination of the blood cell (hemocyte) types the granular cells and plasmatocytes in terms of granular cell–bacteria adhesion and hemocyte–hemocyte adhesion (microaggregation). Hemocyte–microbe adhesion is influenced by the secondary messenger, cAMP, and cAMP-dependent protein kinase A. In the present study, cholera toxin, an AB5 protein known to indirectly stimulate adenylate cyclase, is used to examine the hemocyte responses to glass, bacteria and hemocyte–hemocyte microaggregates. In vitro, this toxin induces a bimodal hemocyte adhesion response that varies with the holotoxin concentration in terms of the individual and aggregated hemocyte adhesion responses: the lower CTX concentration (1.2 nM) increases microaggregate adhesion and decreases individual hemocyte binding to glass, as does higher concentrations (6–120 nM), however microaggregates induced by lower concentrations do not adhere to glass. Cholera toxin-induced microaggregation is inhibited by RGDS, suggestive of integrin involvement. In vivo, cholera toxin (1.2–120 nM) injected into larvae induces also a bimodal hemocytic response: low levels (1.2–6 nM) cause reduced hemocyte adhesion, while high levels (12–120 nM) increase hemocyte release or mobilization of adhesive hemocyte counts in the hemolymph. Increasing levels of cholera toxin concomitantly injected with the non-pathogenic bacterium, Bacillus subtilis produces a bimodal pattern in bacterial removal from the hemolymph which correlates with nodule frequency in larvae injected with cholera toxin only. The effects of higher concentrations of cholera toxin in vitro (6–120 nM) and in vivo (12–120 nM) are mediated by the B-subunit, whereas the isolated A-subunit has no effect on hemocyte activity. Cholera toxin and its individual subunits did not detectably alter levels of intracellular cAMP in the hemocytes, suggesting a cAMP-independent mechanism stimulating the nodulation response.

霍乱毒素及其b亚基对大蜡蛾血细胞粘附和结瘤反应的影响
鳞翅目昆虫对血液(血淋巴)中大量微生物的免疫应答,包括颗粒细胞和浆细胞类型在颗粒细胞-细菌粘附和血细胞-血细胞粘附(微聚集)方面的协调。在本研究中,霍乱毒素(一种已知能间接刺激腺苷酸环化酶的AB5蛋白)被用于检测血细胞对玻璃、细菌和血细胞-血细胞微聚集体的反应。在体外,该毒素诱导了双峰型血细胞粘附反应,该反应随纯毒素浓度的不同而变化,就个体和聚集的血细胞粘附反应而言:较低的CTX浓度(1.2 nM)增加了微聚集体的粘附,减少了个体血细胞与玻璃的结合,较高的浓度(6-120 nM)也是如此,然而,较低浓度诱导的微聚集体不会粘附在玻璃上。霍乱毒素引起的微聚集被RGDS抑制,提示整合素参与。在体内,注射到幼虫体内的霍乱毒素(1.2-120 nM)也会引起双峰性的血细胞反应:低水平(1.2-6 nM)会导致血细胞粘附减少,而高水平(12-120 nM)会增加血细胞释放或动员血淋巴中粘附的血细胞计数。与非致病性细菌同时注射的霍乱毒素水平增加,枯草芽孢杆菌在血淋巴中产生细菌清除的双峰模式,这与仅注射霍乱毒素的幼虫的结节频率相关。较高浓度霍乱毒素在体外(6-120 nM)和体内(12-120 nM)的作用是由b亚基介导的,而分离的a亚基对血细胞活性没有影响。霍乱毒素及其单个亚基不能检测到血细胞中细胞内cAMP水平的改变,这表明一种不依赖cAMP的机制刺激了结瘤反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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