keyword
https://read.qxmd.com/read/37994169/light-activates-ube3a-an-angelman-syndrome-associated-gene-by-mediating-the-chromatin-structures-during-postnatal-development-of-mouse-retina
#21
JOURNAL ARTICLE
Chao-Wen Lin, Yi-Chun Cheng, Chang-Hao Yang, Hsien-Sung Huang
Angelman syndrome, a severe neurodevelopmental disorder, is primarily caused by mutations or deletions of maternally inherited ubiquitin protein ligase E3A (UBE3A). Activation of the silenced paternal copy of UBE3A can occur with pharmacological perturbation; however, an environmental approach has not been examined. Here, we found Ube3a is highly expressed in embryonic and early neonatal mouse retina and is maternally-, but not paternally-, expressed in ganglion cells, amacrine cells, and horizontal cells. Moreover, we analyzed UBE3A expression in the retina and visual cortex of postnatal day 28 mice (P28) following exposure to light emissions from white compact-fluorescent bulbs or blue light-emitting diodes from postnatal day 0 (P0) to 28 (P28), encompassing a crucial phase of visual system development...
November 22, 2023: Journal of Neurochemistry
https://read.qxmd.com/read/37928900/stem-cell-models-of-angelman-syndrome
#22
REVIEW
João Camões Dos Santos, Carolina Appleton, Francisca Cazaux Mateus, Rita Covas, Evguenia Pavlovna Bekman, Simão Teixeira da Rocha
Angelman syndrome (AS) is an imprinted neurodevelopmental disorder that lacks a cure, characterized by developmental delay, intellectual impairment, seizures, ataxia, and paroxysmal laughter. The condition arises due to the loss of the maternally inherited copy of the UBE3A gene in neurons. The paternally inherited UBE3A allele is unable to compensate because it is silenced by the expression of an antisense transcript ( UBE3A-ATS ) on the paternal chromosome. UBE3A , encoding enigmatic E3 ubiquitin ligase variants, regulates target proteins by either modifying their properties/functions or leading them to degradation through the proteasome...
2023: Frontiers in Cell and Developmental Biology
https://read.qxmd.com/read/37903805/contextual-fear-memory-impairment-in-angelman-syndrome-model-mice-is-associated-with-altered-transcriptional-responses
#23
JOURNAL ARTICLE
Wenyue Su, Yan Liu, Aileen Lam, Xiaoning Hao, Michel Baudry, Xiaoning Bi
Angelman syndrome (AS) is a rare neurogenetic disorder caused by UBE3A deficiency and characterized by severe developmental delay, cognitive impairment, and motor dysfunction. In the present study, we performed RNA-seq on hippocampal samples from both wildtype (WT) and AS male mice, with or without contextual fear memory recall. There were 281 recall-associated differentially expressed genes (DEGs) in WT mice and 268 DEGs in AS mice, with 129 shared by the two genotypes. Gene ontology analysis showed that extracellular matrix and stimulation-induced response genes were prominently enriched in recall-associated DEGs in WT mice, while nuclear acid metabolism and tissue development genes were highly enriched in those from AS mice...
October 30, 2023: Scientific Reports
https://read.qxmd.com/read/37878632/identification-of-the-genetic-basis-of-pediatric-neurogenetic-disorders-at-a-tertiary-referral-hospital-in-indonesia-contribution-of-whole-exome-sequencing
#24
JOURNAL ARTICLE
Agung Triono, Kristy Iskandar, Marissa Leviani Hadiyanto, Andika Priamas Nugrahanto, Kania Diantika, Veronica Wulan Wijayanti, Elisabeth Siti Herini
BACKGROUND: Neurogenetic disorders (NGDs) are complex Mendelian disorders that affect the neurological system. A molecular diagnosis will provide more information about pathophysiology, prognosis, and therapy, including future genetic therapy options. Whole-Exome Sequencing (WES) can rapidly discover the genetic basis in NGDs. OBJECTIVE: The purpose of this study was to assess the WES results and its value in diagnosing pediatric NGDs, especially those with unspecified clinical features...
2023: PloS One
https://read.qxmd.com/read/37842098/effects-of-valproate-on-seizure-like-activity-in-drosophila-melanogaster-with-a-knockdown-of-ube3a-in-different-neuronal-populations-as-a-model-of-angelman-syndrome
#25
JOURNAL ARTICLE
Madeline C Moore, Danielle T Taylor
Angelman Syndrome is a rare, genetically induced neurodevelopmental disorder. This disorder stems from a mutation or deletion of the maternal UBE3A gene. Characteristics of this disease include developmental delay, recurring seizures, and severe intellectual disabilities. We studied seizure activity in male Drosophila melanogaster with a knockdown of Ube3a in different neuronal populations (GABAergic, glutamatergic, mushroom body, and all neurons) and investigated the effects of the antiseizure medication (ASM) on seizure-like activity...
2023: Epilepsy & behavior reports
https://read.qxmd.com/read/37831301/bone-health-in-children-with-angelman-syndrome-at-the-encore-expertise-center
#26
JOURNAL ARTICLE
Karen G C B Bindels-de Heus, Doesjka A Hagenaar, Sabine E Mous, Ilonka Dekker, Daniëlle C M van der Kaay, Gerthe F Kerkhof, Ype Elgersma, Henriette A Moll, Marie-Claire Y de Wit
Angelman syndrome (AS) is a rare genetic disorder due to lack of UBE3A function on chromosome 15q11.2q13 caused by a deletion, uniparental paternal disomy (UPD), imprinting center disorder (ICD), or pathological variant of the UBE3A gene. AS is characterized by developmental delay, epilepsy, and lack of speech. Although fractures are observed frequently in our clinical practice, there are few studies on bone health in AS. The aim of this study is to investigate bone health in children with AS. In this prospective cohort study, we describe bone health in 91 children with AS visiting the ENCORE Expertise Center for AS between April 2010 and December 2021...
October 13, 2023: European Journal of Pediatrics
https://read.qxmd.com/read/37762921/hyperphagia-growth-and-puberty-in-children-with-angelman-syndrome
#27
JOURNAL ARTICLE
Karen G C B Bindels-de Heus, Doesjka A Hagenaar, Ilonka Dekker, Danielle C M van der Kaay, Gerthe F Kerkhof, Encore Expertise Center For As, Ype Elgersma, Marie-Claire Y de Wit, Sabine E Mous, Henriette A Moll
Angelman Syndrome (AS) is a rare genetic disorder caused by lack of maternal UBE3A protein due to a deletion of the chromosome 15q11.2-q13 region, uniparental paternal disomy, imprinting center defect, or pathogenic variant in the UBE3A gene. Characteristics are developmental delay, epilepsy, behavioral, and sleep problems. There is some evidence for hyperphagia, shorter stature, and higher BMI compared to neurotypical children, but longitudinal studies on growth are lacking. In this study, we analyzed prospectively collected data of 145 children with AS, who visited the ENCORE Expertise Center between 2010 and 2021, with a total of 853 visits...
September 15, 2023: Journal of Clinical Medicine
https://read.qxmd.com/read/37708280/presynaptic-ube3a-e3-ligase-promotes-synapse-elimination-through-down-regulation-of-bmp-signaling
#28
JOURNAL ARTICLE
Kotaro Furusawa, Kenichi Ishii, Masato Tsuji, Nagomi Tokumitsu, Eri Hasegawa, Kazuo Emoto
Inactivation of the ubiquitin ligase Ube3a causes the developmental disorder Angelman syndrome, whereas increased Ube3a dosage is associated with autism spectrum disorders. Despite the enriched localization of Ube3a in the axon terminals including presynapses, little is known about the presynaptic function of Ube3a and mechanisms underlying its presynaptic localization. We show that developmental synapse elimination requires presynaptic Ube3a activity in Drosophila neurons. We further identified the domain of Ube3a that is required for its interaction with the kinesin motor...
September 15, 2023: Science
https://read.qxmd.com/read/37694858/mecp2-ubiquitination-and-sumoylation-in-search-of-a-function
#29
JOURNAL ARTICLE
Ladan Kalani, Bo-Hyun Kim, John B Vincent, Juan Ausió
MeCP2 (Methyl CpG binding protein 2) is an intrinsically disordered protein that binds to methylated genome regions. The protein is a critical transcriptional regulator of the brain, and its mutations account for 95% of Rett syndrome (RTT) cases. Early studies of this neurodevelopmental disorder revealed a close connection with dysregulations of the ubiquitin system (UbS), notably as related to UBE3A, a ubiquitin ligase involved in the proteasome-mediated degradation of proteins. MeCP2 undergoes numerous post-translational modifications (PTMs), including ubiquitination and sumoylation, which, in addition to the potential functional outcomes of their monomeric forms in gene regulation and synaptic plasticity, in their polymeric organization, these modifications play a critical role in proteasomal degradation...
September 11, 2023: Human Molecular Genetics
https://read.qxmd.com/read/37599585/current-and-emerging-treatment-options-for-angelman-syndrome
#30
REVIEW
Christopher J Keary, Christopher J McDougle
INTRODUCTION: Angelman syndrome (AS) is a neurodevelopmental disorder characterized by intellectual disability, limited expressive language, epilepsy, and motor impairment. Angelman syndrome is caused by haploinsufficiency of the UBE3A gene on the maternal copy of chromosome 15. There have been ongoing advances in the understanding of neurological, behavioral, and sleep-based problems and associated treatments for patients with AS. These results along with gene-based therapies entering into clinical development prompted this review...
2023: Expert Review of Neurotherapeutics
https://read.qxmd.com/read/37541588/ubiquitin-protein-ligase-e3a-ube3a-mediation-of-viral-infection-and-human-diseases
#31
REVIEW
Pankaj Chaudhary, Jessica Proulx, In-Woo Park
The Ubiquitin-protein ligase E3A, UBE3A, also known as E6-associated protein (E6-AP), is known to play an essential role in regulating the degradation of various proteins by transferring Ub from E2 Ub conjugating enzymes to the substrate proteins. Several studies indicate that UBE3A regulates the stabilities of key viral proteins in the virus-infected cells and, thereby, the infected virus-mediated diseases, even if it were reported that UBE3A participates in non-viral-related human diseases. Furthermore, mutations such as deletions and duplications in the maternally inherited gene in the brain cause human neurodevelopmental disorders such as Angelman syndrome (AS) and autism...
August 2, 2023: Virus Research
https://read.qxmd.com/read/37536482/a-psd-95-peptidomimetic-mitigates-neurological-deficits-in-a-mouse-model-of-angelman-syndrome
#32
JOURNAL ARTICLE
Kara A Lau, Xin Yang, Mengia S Rioult-Pedotti, Stephen Tang, Mark Appleman Jianan Zhang, Yuyang Tian, Caitlin Marino, Mudi Yao, Qin Jiang, Ayumi C Tsuda, Yu-Wen Alvin Huang, Cong Cao, John Marshall
Angelman Syndrome (AS) is a severe cognitive disorder caused by loss of neuronal expression of the E3 ubiquitin ligase UBE3A. In an AS mouse model, we previously reported a deficit in brain-derived neurotrophic factor (BDNF) signaling, and set out to develop a therapeutic that would restore normal signaling. We demonstrate that CN2097, a peptidomimetic compound that binds postsynaptic density protein-95 (PSD-95), a TrkB associated scaffolding protein, mitigates deficits in PLC-CaMKII and PI3K/mTOR pathways to restore synaptic plasticity and learning...
August 1, 2023: Progress in Neurobiology
https://read.qxmd.com/read/37495977/enabling-endpoint-development-for-interventional-clinical-trials-in-individuals-with-angelman-syndrome-a-prospective-longitudinal-observational-clinical-study-freesias
#33
JOURNAL ARTICLE
Jorrit Tjeertes, Carlos A Bacino, Terry Jo Bichell, Lynne M Bird, Mariana Bustamante, Rebecca Crean, Shafali Jeste, Robert W Komorowski, Michelle L Krishnan, Meghan T Miller, David Nobbs, Cesar Ochoa-Lubinoff, Kimberly A Parkerson, Alexander Rotenberg, Anjali Sadhwani, Mark D Shen, Lisa Squassante, Wen-Hann Tan, Brenda Vincenzi, Anne C Wheeler, Joerg F Hipp, Elizabeth Berry-Kravis
BACKGROUND: Angelman syndrome (AS) is a rare neurodevelopmental disorder characterized by the absence of a functional UBE3A gene, which causes developmental, behavioral, and medical challenges. While currently untreatable, comprehensive data could help identify appropriate endpoints assessing meaningful improvements in clinical trials. Herein are reported the results from the FREESIAS study assessing the feasibility and utility of in-clinic and at-home measures of key AS symptoms. METHODS: Fifty-five individuals with AS (aged < 5 years: n = 16, 5-12 years: n = 27, ≥ 18 years: n = 12; deletion genotype: n = 40, nondeletion genotype: n = 15) and 20 typically developing children (aged 1-12 years) were enrolled across six USA sites...
July 26, 2023: Journal of Neurodevelopmental Disorders
https://read.qxmd.com/read/37461494/drosophila-ube3a-regulates-satiety-signaling-through-the-piezo-mechanosensitive-ion-channel
#34
Benjamin Geier, Logan Neely, Eli Coronado, Lawrence T Reiter
Angelman syndrome (AS) is a rare neurogenetic disorder characterized by developmental delays, speech impairments, ataxic movements, and in some cases, hyperphagic feeding behavior. Loss of function mutations, loss of expression from the maternal allele or absence of maternal UBE3A result in AS. Recent studies have established a connection between UBE3A and the mechanosensitive ion channel PIEZO2 , suggesting the potential role of UBE3A in the regulation of PIEZO channels. In this study, we investigated the role of Drosophila UBE3A ( Dube3a ) in Piezo associated hyperphagic feeding behavior...
July 3, 2023: Research Square
https://read.qxmd.com/read/37461021/effects-of-ube3a-on-the-insulin-resistance-in-polycystic-ovary-syndrome-through-the-ubiquitination-of-ampk
#35
JOURNAL ARTICLE
Ning Ma, Jing Zhou, Zhi Zhou, Bangbei Wan, Weiying Lu
BACKGROUND: Polycystic ovary syndrome (PCOS) is a reproductive hormonal abnormality and a metabolic disorder, which is frequently associated with insulin resistance (IR). We aim to investigate the potential therapeutic effects of Ubiquitin-protein ligase E3A (UBE3A) on IR in the PCOS rats via Adenosine 5'-monophosphate (AMP)-activated protein kinase (AMPK) activation. METHODS: The PCOS and IR rats model was established by dehydroepiandrosterone (DHEA) and high fat diet (HFD) treatment, and the fat rate, glucose tolerance and insulin tolerance were measured...
July 17, 2023: BMC Endocrine Disorders
https://read.qxmd.com/read/37460074/minichromosome-maintenance-protein-family-member-6-mediates-hepatocellular-carcinoma-progression-by-recruiting-ube3a-to-induce-p53-ubiquitination
#36
JOURNAL ARTICLE
Xue Zhang, Saiyan Bian, Yao Ni, Linlin Zhou, Chenyu Yang, Chenfeng Zhang, Xieyin Sun, Nuo Xu, Shiyu Xu, Yilang Wang, Shudong Gu, Wenjie Zheng
With limited therapeutic options for hepatocellular carcinoma (HCC), it is of great significance to investigate the underlying mechanisms and identifying tumor drivers. MCM6, a member of minichromosome maintenance proteins (MCMs), was significantly elevated in HCC progression and associated with poor prognosis. Knockdown of MCM6 significantly inhibited the proliferation and migration of HCC cells with the increased apoptosis ratio and cell cycle arrest, whereas overexpression of MCM6 induced adverse effects...
July 15, 2023: International Journal of Biological Macromolecules
https://read.qxmd.com/read/37454373/ube3a-and-mcm6-synergistically-regulate-the-proliferation-and-migration-of-lung-adenocarcinoma-cells
#37
JOURNAL ARTICLE
Yanyan Luo, Yun Yang, Cong Yang, Chuanyin Li, Ronggui Hu, Wujun Geng, Xianhui Kang, Hai Lin
Lung cancer is a leading cause of mortality worldwide and shows substantial clinical and biomolecular heterogeneity. Currently, specific therapeutic strategies are lacking, so effective drug targets are urgently needed. E6AP/UBE3A is a multifaceted ubiquitin ligase that controls various signaling pathways implicated in neurological diseases and various cancers; however, its role in lung cancer is incompletely understood. Here, MCM6 was identified as an interacting partner of E6AP using the yeast two-hybrid assay...
July 16, 2023: FEBS Open Bio
https://read.qxmd.com/read/37389991/autism-linked-ube3a-gain-of-function-mutation-causes-interneuron-and-behavioral-phenotypes-when-inherited-maternally-or-paternally-in-mice
#38
JOURNAL ARTICLE
Lei Xing, Jeremy M Simon, Travis S Ptacek, Jason J Yi, Lipin Loo, Hanqian Mao, Justin M Wolter, Eric S McCoy, Smita R Paranjape, Bonnie Taylor-Blake, Mark J Zylka
The E3 ubiquitin ligase Ube3a is biallelically expressed in neural progenitors and glial cells, suggesting that UBE3A gain-of-function mutations might cause neurodevelopmental disorders irrespective of parent of origin. Here, we engineered a mouse line that harbors an autism-linked UBE3AT485A (T503A in mouse) gain-of-function mutation and evaluated phenotypes in animals that inherited the mutant allele paternally, maternally, or from both parents. We find that paternally and maternally expressed UBE3AT503A results in elevated UBE3A activity in neural progenitors and glial cells...
June 28, 2023: Cell Reports
https://read.qxmd.com/read/37385985/microrna-375-restrains-the-progression-of-lung-squamous-cell-carcinoma-by-modulating-the-erk-pathway-via-ube3a-mediated-dusp1-degradation
#39
JOURNAL ARTICLE
Junqing Gan, Yu Zhang, Shan Liu, Guannan Mu, Juan Zhao, Wei Jiang, Jiade Li, Qi Li, Yangjiazi Wu, Xinling Wang, Dehai Che, Xiaomei Li, Xiaoyi Huang, Qingwei Meng
MiRNA-375 has been reported to play critical roles in a variety of cancers. To unravel its biological roles, especially its specific mechanisms of action in lung squamous cell carcinoma (LUSC), LUSC tissue microarrays and miRNAscope were performed to identify the miR-375 expression. Associations with clinicopathologic features, survival, and the prognostic value of miR-375 in LUSC were clarified in a retrospective study of 90 pairs of LUSC tissues. In vitro and in vivo gain- and loss-of-function assays were conducted to validate the effects and mechanism of miR-375 in LUSC...
June 29, 2023: Cell Death Discovery
https://read.qxmd.com/read/37358667/construction-of-hbv-hcc-prognostic-model-and-immune-characteristics-based-on-potential-genes-mining-through-protein-interaction-networks
#40
JOURNAL ARTICLE
Qingxiu Li, Kejia Wu, Yiqi Zhang, Yuxin Liu, Yalan Wang, Yong Chen, Shuangling Sun, Changzhu Duan
OBJECTIVE: To search for human protein-coding genes related to hepatocellular carcinoma (HCC) in the context of hepatitis B virus (HBV) infection, and perform prognosis risk assessment. METHODS: Genes related to HBV-HCC were selected through literature screening and protein-protein interaction (PPI) network database analysis. Prognosis potential genes (PPGs) were identified using Cox regression analysis. Patients were divided into high-risk and low-risk groups based on PPGs, and risk scores were calculated...
June 26, 2023: Journal of Cancer Research and Clinical Oncology
keyword
keyword
21217
2
3
Fetch more papers »
Fetching more papers... Fetching...
Remove bar
Read by QxMD icon Read
×

Save your favorite articles in one place with a free QxMD account.

×

Search Tips

Use Boolean operators: AND/OR

diabetic AND foot
diabetes OR diabetic

Exclude a word using the 'minus' sign

Virchow -triad

Use Parentheses

water AND (cup OR glass)

Add an asterisk (*) at end of a word to include word stems

Neuro* will search for Neurology, Neuroscientist, Neurological, and so on

Use quotes to search for an exact phrase

"primary prevention of cancer"
(heart or cardiac or cardio*) AND arrest -"American Heart Association"

We want to hear from doctors like you!

Take a second to answer a survey question.