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Loss of ARHGEF1 causes a human primary antibody deficiency

机译:ARHGEF1丢失导致人类一抗缺乏

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摘要

ARHGEF1 is a RhoA-specific guanine nucleotide exchange factor expressed in hematopoietic cells. We used whole-exome sequencing to identify compound heterozygous mutations in ARHGEF1, resulting in the loss of ARHGEF1 protein expression in 2 primary antibody-deficient siblings presenting with recurrent severe respiratory tract infections and bronchiectasis. Both ARHGEF1-deficient patients showed an abnormal B cell immunophenotype, with a deficiency in marginal zone and memory B cells and an increased frequency of transitional B cells. Furthermore, the patients' blood contained immature myeloid cells. Analysis of a mediastinal lymph node from one patient highlighted the small size of the germinal centers and an abnormally high plasma cell content. On the molecular level, T and B lymphocytes from both patients displayed low RhoA activity and low steady-state actin polymerization (even after stimulation of lysophospholipid receptors). As a consequence of disturbed regulation of the RhoA downstream target Rho-associated kinase I/II (ROCK), the patients' lymphocytes failed to efficiently restrain AKT phosphorylation. Enforced ARHGEF1 expression or drug-induced activation of RhoA in the patients' cells corrected the impaired actin polymerization and AKT regulation. Our results indicate that ARHGEF1 activity in human lymphocytes is involved in controlling actin cytoskeleton dynamics, restraining PI3K/AKT signaling, and confining B lymphocytes and myelocytes within their dedicated functional environment.
机译:ARHGEF1是一种在造血细胞中表达的 RhoA 特异性鸟嘌呤核苷酸交换因子。我们使用全外显子组测序来鉴定ARHGEF1中的复合杂合突变,导致 2 个一抗缺陷兄弟姐妹的 ARHGEF1 蛋白表达丧失,这些兄弟姐妹表现为复发性严重呼吸道感染和支气管扩张。两名ARHGEF1缺陷患者均表现出异常的 B 细胞免疫表型,边缘区和记忆 B 细胞缺陷,移行 B 细胞频率增加。此外,患者的血液中含有未成熟的髓系细胞。对一名患者的纵隔淋巴结的分析突出了生发中心的小尺寸和异常高的浆细胞含量。在分子水平上,两名患者的T淋巴细胞和B淋巴细胞均表现出低RhoA活性和低稳态肌动蛋白聚合(即使在刺激溶血磷脂受体后)。由于 RhoA 下游靶标 Rho 相关激酶 I/II (ROCK) 的调控受到干扰,患者的淋巴细胞未能有效抑制 AKT 磷酸化。在患者细胞中强制ARHGEF1表达或药物诱导的 RhoA 激活纠正了受损的肌动蛋白聚合和 AKT 调节。我们的结果表明,人淋巴细胞中的ARHGEF1活性参与控制肌动蛋白细胞骨架动力学,抑制PI3K / AKT信号传导,并将B淋巴细胞和骨髓细胞限制在其特定的功能环境中。

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