A transcription factor ATF3 involves in the phagocytosis of granulocytes in oyster Crassostrea gigas

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Miren Dong , Wei Wu , Xuemei Cheng , Jiajun Zuo , Weilin Wang , Lingling Wang , Linsheng Song
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Abstract

Phagocytosis is a major cellular mechanism for mollusk granulocytes to eliminate nonself substances and dead cells, and thus to preserve the immune homeostasis. The knowledge of the regulatory mechanisms controlling phagocytic capacity is vital to understanding the immune system. In the present study, an ATF3 homolog (CgATF3) with a typical bZIP domain was identified in the Pacific oyster Crassostrea gigas. Its highly conserved bZIP domain consisted of two structural features, a basic region for DNA binding and a leucine zipper region for dimerization. Its transcript was found to be abundantly expressed in haemocytes, which was induced by Vibrio splendidus stimulation and recombinant CgTNF-2 treatment, along with an increase of its protein content in the nucleus. Moreover, CgATF3 showed a consistent and specific high expression in granulocytes, and CgATF3+ granulocytes were characterized morphologically by the largest diameter, smaller nucleus to cytoplasmic ratio, and abundant cytoplasmic granules, and functionally by a higher capacity for phagocytosis. When CgATF3 expression was inhibited by RNAi, the expression levels of CgRab1, CgRab33 and CgCathepsin L1, as well as the phagocytic rate and index of granulocytes all decreased after V. splendidus stimulation. These results together demonstrated the involvement of CgATF3 in regulating the expressions of Rabs and Cathepsin L1, as well as the phagocytosis of granulocytes in oyster C. gigas.

转录因子 ATF3 参与巨牡蛎粒细胞的吞噬作用
吞噬作用是软体动物粒细胞清除非自身物质和死亡细胞,从而维持免疫平衡的一种主要细胞机制。了解控制吞噬能力的调控机制对于理解免疫系统至关重要。本研究在太平洋牡蛎(Crassostrea gigas)中发现了一种具有典型 bZIP 结构域的 ATF3 同源物(CgATF3)。其高度保守的 bZIP 结构域包括两个结构特征:用于 DNA 结合的基本区和用于二聚化的亮氨酸拉链区。研究发现,灿烂弧菌刺激和重组 CgTNF-2 处理会诱导 CgATF3 在血细胞中大量表达,并增加其在细胞核中的蛋白含量。此外,CgATF3 在粒细胞中表现出一致的特异性高表达,CgATF3+粒细胞在形态上表现为直径最大、核与胞浆比值较小、胞浆颗粒丰富,在功能上表现为吞噬能力较强。当通过 RNAi 抑制 CgATF3 的表达时,CgRab1、CgRab33 和 CgCathepsin L1 的表达水平以及颗粒细胞的吞噬率和吞噬指数在白芨刺激后都有所下降。这些结果共同表明,CgATF3 参与了对 Rabs 和 Cathepsin L1 表达的调控,以及对牡蛎粒细胞吞噬功能的调控。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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