全基因组CRISPR筛选揭示了长寿浆细胞分泌能力的新决定因素。

Lucas J D'Souza, Jonathan N Young, Heather Coffman, Edward P Petrow, Deepta Bhattacharya
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引用次数: 0

摘要

浆细胞亚群的寿命和维持体液免疫的能力各不相同。我们在骨髓瘤细胞系中进行了全基因组CRISPR-Cas9筛选,以寻找促进CD98表面表达的因子,CD98是小鼠原代浆细胞中寿命的标志。在该筛选中发现的促进CD98表达的大部分基因与分泌囊泡和其他囊泡有关,包括V型atp酶复合物的许多亚基。骨髓瘤细胞中v型atp酶的化学抑制或基因消融可减少抗体分泌。小鼠和人类的原代长寿浆细胞比它们的短寿命浆细胞有更多的酸化囊泡,这与IgM、IgG和IgA分泌能力的增加有关。筛选还发现了PI4KB和DDX3X,前者能促进酸化囊泡的数量和分泌能力,后者是一种atp依赖的RNA解旋酶,其缺失可减少免疫球蛋白的分泌,而不受囊泡酸化的影响。最后,我们报道了信号适配器MYD88在体内抗体分泌和浆细胞存活中的浆细胞内在功能。这些数据揭示了浆细胞分泌能力的新调节因子,包括那些也能延长寿命的调节因子。一句话总结:长寿的浆细胞依靠v型atp酶、PI4K、DDX3X和MYD88信号来获得最大的分泌能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A genome wide CRISPR screen reveals novel determinants of long-lived plasma cell secretory capacity.

Plasma cell subsets vary in their lifespans and ability to sustain humoral immunity. We conducted a genome-wide CRISPR-Cas9 screen in myeloma cells for factors that promote surface expression of CD98, a marker of longevity in mouse plasma cells. A large fraction of genes found to promote CD98 expression in this screen are involved in secretory and other vesicles, including subunits of the V-type ATPase complex. Genetic ablation and chemical inhibition of V-type ATPases in myeloma cells and primary plasma cells, respectively, reduced antibody secretion. Mouse and human long-lived plasma cells had greater numbers of acidified vesicles than their short-lived counterparts, and this correlated with increased antibody secretory capacity. The screen also revealed a requirement for the signaling adapter MYD88 in CD98 expression. Plasma cell-specific deletion of Myd88 led to reduced survival and antibody secretion by antigen-specific cells in vivo and unresponsiveness to BAFF and APRIL ex vivo. These data reveal novel regulators that link plasma cell secretory capacity and lifespan.

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