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转录因子 MAFB 的突变导致伴有 Duane 退缩综合征的局灶节段性肾小球硬化症。

A mutation in transcription factor MAFB causes Focal Segmental Glomerulosclerosis with Duane Retraction Syndrome.

机构信息

Division of Nephrology, Department of Medicine, Showa University Fujigaoka Hospital, Fujigaoka, Japan.

Second Department of Internal Medicine, Kansai Medical University, Hirakata, Japan.

出版信息

Kidney Int. 2018 Aug;94(2):396-407. doi: 10.1016/j.kint.2018.02.025. Epub 2018 May 18.

DOI:10.1016/j.kint.2018.02.025
PMID:29779709
Abstract

Focal segmental glomerulosclerosis (FSGS) is a leading cause of end-stage renal disease in children and adults. Genetic factors significantly contribute to early-onset FSGS, but the etiologies of most adult cases remain unknown. Genetic studies of monogenic syndromic FSGS exhibiting extra-renal manifestations have uncovered an unexpected biological role for genes in the development of both podocytes and other cellular lineages. To help define these roles, we studied two unrelated families with FSGS associated with Duane Retraction Syndrome, characterized by impaired horizontal eye movement due to cranial nerve malformation. All four affected individuals developed FSGS and Duane Retraction Syndrome in their first to second decade of life, manifested as restricted abduction together with globe retraction and narrowed palpebral fissure on attempted adduction. Hypoplasia of the abducens nerves and hearing impairment occurred in severely affected individuals. Genetic analyses revealed that affected individuals harbor a rare heterozygous substitution (p.Leu239Pro) in MAFB, a leucine zipper transcription factor. Luciferase assays with cultured monocytes indicated that the substitution significantly reduced transactivation of the F4/80 promoter, the known MAFB recognition element. Additionally, immunohistochemistry indicated reduced MAFB expression in the podocytes of patients. Structural modeling suggested that the p.Leu239Pro substitution in the DNA-binding domain possibly interferes with the stability of the adjacent zinc finger. Lastly, podocytes in neonatal mice with p.Leu239Pro displayed impaired differentiation. Thus, MAFB mutations impair development and/or maintenance of podocytes, abducens neurons and the inner ear. The interactions between MAFB and regulatory elements in these developing organs are likely highly specific based on spatiotemporal requirements.

摘要

局灶节段性肾小球硬化症 (FSGS) 是儿童和成人终末期肾病的主要原因。遗传因素对早发性 FSGS 有重要贡献,但大多数成人病例的病因仍不清楚。对具有肾脏外表现的单基因综合征 FSGS 的遗传研究揭示了基因在足细胞和其他细胞谱系发育中的意想不到的生物学作用。为了帮助定义这些作用,我们研究了两个与 Duane 退缩综合征相关的 FSGS 无关家庭,其特征是由于颅神经畸形导致水平眼球运动受损。所有四个受影响的个体在其生命的第一到第二个十年中都出现 FSGS 和 Duane 退缩综合征,表现为在试图内收时眼球退缩和睑裂变窄以及受限的外展。严重受影响的个体出现展神经发育不良和听力障碍。遗传分析显示,受影响的个体携带有一个罕见的杂合子取代 (p.Leu239Pro) ,位于 MAFB 中,一个亮氨酸拉链转录因子。用培养的单核细胞进行的荧光素酶测定表明,该取代显著降低了 F4/80 启动子的转录激活,这是已知的 MAFB 识别元件。此外,免疫组织化学表明患者的足细胞中 MAFB 表达减少。结构建模表明,DNA 结合域中的 p.Leu239Pro 取代可能干扰相邻锌指的稳定性。最后,p.Leu239Pro 的新生小鼠足细胞显示出分化受损。因此,MAFB 突变会损害足细胞、展神经和内耳的发育和/或维持。MAFB 与这些发育中的器官的调节元件之间的相互作用可能基于时空要求高度特异性。

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