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首页> 外文期刊>The American Journal of Human Genetics >RINT1 Bi-allelic Variations Cause Infantile-Onset Recurrent Acute Liver Failure and Skeletal Abnormalities
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RINT1 Bi-allelic Variations Cause Infantile-Onset Recurrent Acute Liver Failure and Skeletal Abnormalities

机译:rint1双等异位变异导致婴儿发作复发性急性肝功能衰竭和骨骼异常

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摘要

Pediatric acute liver failure (ALF) is life threatening with genetic, immunologic, and environmental etiologies. Approximately half of all cases remain unexplained. Recurrent ALF (RALF) in infants describes repeated episodes of severe liver injury with recovery of hepatic function between crises. We describe bi-allelic RINT1 alterations as the cause of a multisystem disorder including RALF and skeletal abnormalities. Three unrelated individuals with RALF onset A or G>T) in trans with a missense (p.Ala368Thr or p.Leu370Pro) or in-frame deletion (p.Val618_Lys619del) in RINT1. ALF episodes are concomitant with fever/infection and not all individuals have complete normalization of liver function testing between episodes. Liver biopsies revealed nonspecific liver damage including fibrosis, steatosis, or mild increases in Kupffer cells. Skeletal imaging revealed abnormalities affecting the vertebrae and pelvis. Dermal fibroblasts showed splice-variant mediated skipping of exon 9 leading to an out-of-frame product and nonsense-mediated transcript decay. Fibroblasts also revealed decreased RINT1 protein, abnormal Golgi morphology, and impaired autophagic flux compared to control. RINT1 interacts with NBAS, recently implicated in RALF, and UVRAG, to facilitate Golgi-to-ER retrograde vesicle transport. During nutrient depletion or infection, Golgi-to-ER transport is suppressed and autophagy is promoted through UVRAG regulation by mTOR. Aberrant autophagy has been associated with the development of similar skeletal abnormalities and also with liver disease, suggesting that disruption of these RINT1 functions may explain the liver and skeletal findings. Clarifying the pathomechanism underlying this gene-disease relationship may inform therapeutic opportunities.
机译:儿科急性肝功能衰竭(ALF)是危及遗传,免疫学和环境病因的生命。大约一半的案例仍然是未解释的。婴儿的复发性Alf(RALF)描述了危机之间的肝功能恢复的重复发作。我们将双位等位基因rint1改变作为多系统障碍的原因,包括RALF和骨骼异常。具有RATR1中的错失(P.Ala368thr或P.leu370Pro)或rint1中的帧内删除(p.val618_lys619del)中的三个无关的个体。 ALF剧集伴随着发烧/感染,并且并非所有个人都完全正常化了剧集之间的肝功能测试。肝脏活组织检查显示出在岩手细胞中包括纤维化,脂肪变性或轻度增加的非特异性肝损伤。骨骼成像显示出影响椎骨和骨盆的异常。皮肤成纤维细胞显示出剪接变异介导的外显子9,导致框架外部产品和废话介导的转录物衰减。成纤维细胞还揭示了Rint1蛋白,异常的Golgi形态,并且自噬通量与对照相比减少。 RINT1与NBA相互作用,最近涉及RALF和UVRAG,以促进GOLGI-TO-ER逆行囊泡运输。在营养耗竭或感染期间,通过MTOR的UVRAG调节促进了Golgi-or-ER运输。异常自噬与类似骨骼异常的发展有关,也与肝脏疾病的发展有关,表明这些rint1函数的破坏可以解释肝脏和骨骼发现。澄清这种基因疾病关系的遗传学机制可能会通知治疗机会。

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    Mayo Clin Ctr Individualized Med Rochester MN 55905 USA;

    Mayo Clin Ctr Individualized Med Rochester MN 55905 USA;

    Fudan Univ Jinshan Hosp Dept Pediat Shanghai 201508 Peoples R China;

    Univ Hosp Heidelberg Dept Gen Pediat Div Neuropediatr &

    Pediat Metab Med Neuenheimer Feld 430 D;

    Mayo Clin Ctr Individualized Med Rochester MN 55905 USA;

    Mayo Clin Dept Biochem &

    Mol Biol Rochester MN 55905 USA;

    Nationwide Childrens Hosp Dept Pathol &

    Lab Med Columbus OH 43205 USA;

    Mayo Clin Dept Lab Med &

    Pathol Rochester MN 55905 USA;

    Mayo Clin Dept Pediat Gastroenterol &

    Hepatol Rochester MN 55905 USA;

    Mayo Clin Dept Lab Med &

    Pathol Rochester MN 55905 USA;

    Mayo Clin Dept Pediat Gastroenterol &

    Hepatol Rochester MN 55905 USA;

    Mayo Clin Dept Lab Med &

    Pathol Rochester MN 55905 USA;

    Univ Hosp Heidelberg Dept Gen Pediat Div Neuropediatr &

    Pediat Metab Med Neuenheimer Feld 430 D;

    Mayo Clin Dept Radiol Div Pediat Radiol Rochester MN 55905 USA;

    Helmholtz Zentrum Munchen Inst Human Genet D-85764 Neuherberg Germany;

    Helmholtz Zentrum Munchen Inst Human Genet D-85764 Neuherberg Germany;

    Fudan Univ Jinshan Hosp Dept Pediat Shanghai 201508 Peoples R China;

    Univ Childrens Hosp Zurich Pediat Nephrol CH-8032 Zurich Switzerland;

    Univ Hosp Geneva Pediat Gastroenterol Unit Rue Willy Donze 6 CH-1211 Geneva Switzerland;

    Mayo Clin Dept Biochem &

    Mol Biol Rochester MN 55905 USA;

    Mayo Clin Dept Lab Med &

    Pathol Rochester MN 55905 USA;

    Helmholtz Zentrum Munchen Inst Human Genet D-85764 Neuherberg Germany;

    Univ Childrens Hosp Zurich Dept Metab Dis Zurich Switzerland;

    Mayo Clin Dept Biochem &

    Mol Biol Rochester MN 55905 USA;

    Univ Hosp Heidelberg Dept Gen Pediat Div Neuropediatr &

    Pediat Metab Med Neuenheimer Feld 430 D;

    Fudan Univ Jinshan Hosp Dept Pediat Shanghai 201508 Peoples R China;

    Mayo Clin Ctr Individualized Med Rochester MN 55905 USA;

    Mayo Clin Ctr Individualized Med Rochester MN 55905 USA;

    Mayo Clin Ctr Individualized Med Rochester MN 55905 USA;

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  • 正文语种 eng
  • 中图分类 医学遗传学;
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