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RAB39B 小 GTP 酶基因突变可导致伴孤独症、癫痫和大头畸形的 X 连锁智力低下。

Mutations in the small GTPase gene RAB39B are responsible for X-linked mental retardation associated with autism, epilepsy, and macrocephaly.

机构信息

Dulbecco Telethon Institute at Division of Neuroscience, San Raffaele Scientific Institute, Milan, Italy.

出版信息

Am J Hum Genet. 2010 Feb 12;86(2):185-95. doi: 10.1016/j.ajhg.2010.01.011.

DOI:10.1016/j.ajhg.2010.01.011
PMID:20159109
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2820185/
Abstract

Human Mental Retardation (MR) is a common and highly heterogeneous pediatric disorder affecting around 3% of the general population; at least 215 X-linked MR (XLMR) conditions have been described, and mutations have been identified in 83 different genes, encoding proteins with a variety of function, such as chromatin remodeling, synaptic function, and intracellular trafficking. The small GTPases of the RAB family, which play an essential role in intracellular vesicular trafficking, have been shown to be involved in MR. We report here the identification of mutations in the small GTPase RAB39B gene in two male patients. One mutation in family X (D-23) introduced a stop codon seven amino acids after the start codon (c.21C > A; p.Y7X). A second mutation, in the MRX72 family, altered the 5' splice site (c.215+1G > A) and normal splicing. Neither instance produced a protein. Mutations segregate with the disease in the families, and in some family members intellectual disabilities were associated with autism spectrum disorder, epileptic seizures, and macrocephaly. We show that RAB39B, a novel RAB GTPase of unknown function, is a neuronal-specific protein that is localized to the Golgi compartment. Its downregulation leads to an alteration in the number and morphology of neurite growth cones and a significant reduction in presynaptic buttons, suggesting that RAB39B is required for synapse formation and maintenance. Our results demonstrate developmental and functional neuronal alteration as a consequence of downregulation of RAB39B and emphasize the critical role of vesicular trafficking in the development of neurons and human intellectual abilities.

摘要

人类智力迟钝(MR)是一种常见且高度异质性的儿科疾病,影响着大约 3%的普通人群;至少已经描述了 215 种 X 连锁智力迟钝(XLMR)病症,并且已经在 83 个不同的基因中鉴定出了突变,这些基因编码具有多种功能的蛋白质,如染色质重塑、突触功能和细胞内运输。RAB 家族的小 GTPases 在细胞内囊泡运输中起着至关重要的作用,已经被证明与 MR 有关。我们在这里报告了在两名男性患者中发现小 GTPase RAB39B 基因的突变。家族 X 中的一个突变(D-23)在起始密码子后七个氨基酸处引入了一个终止密码子(c.21C > A;p.Y7X)。第二个突变,在 MRX72 家族中,改变了 5'剪接位点(c.215+1G > A)和正常剪接。这两种情况都没有产生蛋白质。突变在家族中与疾病分离,在一些家族成员中,智力障碍与自闭症谱系障碍、癫痫发作和大头畸形有关。我们表明,RAB39B,一种未知功能的新型 RAB GTPase,是一种神经元特异性蛋白,定位于高尔基体区室。其下调导致神经突生长锥的数量和形态发生改变,以及突触前小泡的显著减少,表明 RAB39B 是突触形成和维持所必需的。我们的结果表明,RAB39B 的下调导致发育和功能神经元改变,并强调了囊泡运输在神经元发育和人类智力能力中的关键作用。

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siRNA vs. shRNA: similarities and differences.小干扰RNA与短发夹RNA:异同点
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A systematic, large-scale resequencing screen of X-chromosome coding exons in mental retardation.一项针对智力障碍中X染色体编码外显子的系统性大规模重测序筛查。
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Cognitive impairment in Gdi1-deficient mice is associated with altered synaptic vesicle pools and short-term synaptic plasticity, and can be corrected by appropriate learning training.Gdi1基因缺陷小鼠的认知障碍与突触小泡池改变和短期突触可塑性有关,并且可以通过适当的学习训练得到纠正。
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Rab proteins and Rab-associated proteins: major actors in the mechanism of protein-trafficking disorders.Rab蛋白与Rab相关蛋白:蛋白质运输紊乱机制中的主要参与者。
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Golgi-resident small GTPase Rab33B interacts with Atg16L and modulates autophagosome formation.高尔基体驻留小GTP酶Rab33B与Atg16L相互作用并调节自噬体形成。
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RAB23 mutations in Carpenter syndrome imply an unexpected role for hedgehog signaling in cranial-suture development and obesity.卡彭特综合征中的RAB23突变意味着刺猬信号通路在颅缝发育和肥胖中具有意想不到的作用。
Am J Hum Genet. 2007 Jun;80(6):1162-70. doi: 10.1086/518047. Epub 2007 Apr 18.
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Syntaxin 16 and syntaxin 5 are required for efficient retrograde transport of several exogenous and endogenous cargo proteins.Syntaxin 16和Syntaxin 5是几种外源性和内源性货物蛋白高效逆行运输所必需的。
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VAMP4 cycles from the cell surface to the trans-Golgi network via sorting and recycling endosomes.VAMP4通过分拣和再循环内体从细胞表面循环至反式高尔基体网络。
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Formation of microtubule-based traps controls the sorting and concentration of vesicles to restricted sites of regenerating neurons after axotomy.基于微管的陷阱的形成控制着轴突切断后囊泡向再生神经元受限部位的分选和聚集。
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Mutation in Rab3 GTPase-activating protein (RAB3GAP) noncatalytic subunit in a kindred with Martsolf syndrome.患有Martsolf综合征的一个家族中Rab3 GTP酶激活蛋白(RAB3GAP)非催化亚基的突变。
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