Biallelic Variants In Ogdh Encoding Oxoglutarate Dehydrogenase Lead To A Neurodevelopmental Disorder Characterized By Global Developmental Delay, Movement Disorder, And Metabolic Abnormalities,
2023
The Texas Medical Center Library
Biallelic Variants In Ogdh Encoding Oxoglutarate Dehydrogenase Lead To A Neurodevelopmental Disorder Characterized By Global Developmental Delay, Movement Disorder, And Metabolic Abnormalities, Ella F Whittle, Madison Chilian, Ehsan Ghayoor Karimiani, Helga Progri, Daniela Buhas, Melis Kose, Rebecca D Ganetzky, Mehran Beiraghi Toosi, Paria Najarzadeh Torbati, Reza Shervin Badv, Ivan Shelihan, Hui Yang, Houda Zghal Elloumi, Sukyeong Lee, Yalda Jamshidi, Alan M Pittman, Henry Houlden, Erika Ignatius, Shamima Rahman, Reza Maroofian, Wan Hee Yoon, Christopher J Carroll
Faculty, Staff and Students Publications
PURPOSE: This study aimed to establish the genetic cause of a novel autosomal recessive neurodevelopmental disorder characterized by global developmental delay, movement disorder, and metabolic abnormalities.
METHODS: We performed a detailed clinical characterization of 4 unrelated individuals from consanguineous families with a neurodevelopmental disorder. We used exome sequencing or targeted-exome sequencing, cosegregation, in silico protein modeling, and functional analyses of variants in HEK293 cells and Drosophila melanogaster, as well as in proband-derived fibroblast cells.
RESULTS: In the 4 individuals, we identified 3 novel homozygous variants in oxoglutarate dehydrogenase (OGDH) (NM_002541.3), which encodes a subunit of the tricarboxylic acid cycle enzyme …
Biallelic Variants In Hect E3 Paralogs, Hectd4 And Ube3c, Encoding Ubiquitin Ligases Cause Neurodevelopmental Disorders That Overlap With Angelman Syndrome,
2023
The Texas Medical Center Library
Biallelic Variants In Hect E3 Paralogs, Hectd4 And Ube3c, Encoding Ubiquitin Ligases Cause Neurodevelopmental Disorders That Overlap With Angelman Syndrome, Eissa A Faqeih, Malak Ali Alghamdi, Marwa A Almahroos, Essa Alharby, Makki Almuntashri, Amnah M Alshangiti, Prouteau Clément, Daniel G Calame, Leila Qebibo, Lydie Burglen, Martine Doco-Fenzy, Mario Mastrangelo, Annalaura Torella, Filippo Manti, Vincenzo Nigro, Ziegler Alban, Ghadeer Saleh Alharbi, Jamil Amjad Hashmi, Rawya Alraddadi, Razan Alamri, Tadahiro Mitani, Barth Magalie, Zeynep Coban-Akdemir, Bilgen Bilge Geckinli, Davut Pehlivan, Antonio Romito, Vasiliki Karageorgou, Javier Martini, Estelle Colin, Dominique Bonneau, Aida Bertoli-Avella, James R Lupski, Annalisa Pastore, Roy W A Peake, Ashraf Dallol, Majid Alfadhel, Naif A M Almontashiri
Faculty, Staff and Students Publications
Purpose: Pathogenic variants in genes encoding ubiquitin E3 ligases are known to cause neurodevelopmental syndromes. Additional neurodevelopmental disorders associated with the other genes encoding E3 ligases are yet to be identified.
Methods: Chromosomal analysis and exome sequencing were used to identify the genetic causes in 10 patients from 7 unrelated families with syndromic neurodevelopmental, seizure, and movement disorders and neurobehavioral phenotypes.
Results: In total, 4 patients were found to have 3 different homozygous loss-of-function (LoF) variants, and 3 patients had 4 compound heterozygous missense variants in the candidate E3 ligase gene, HECTD4, that were rare, absent from controls as homozygous, …
Spatiotemporal View Of Malignant Histogenesis And Macroevolution Via Formation Of Polyploid Giant Cancer Cells,
2023
The Texas Medical Center Library
Spatiotemporal View Of Malignant Histogenesis And Macroevolution Via Formation Of Polyploid Giant Cancer Cells, Xiaoran Li, Yanping Zhong, Xudong Zhang, Anil K Sood, Jinsong Liu
Faculty, Staff and Student Publications
To understand how malignant tumors develop, we tracked cell membrane, nuclear membrane, spindle, and cell cycle dynamics in polyploid giant cancer cells (PGCCs) during the formation of high-grade serous carcinoma organoids using long-term time-lapse imaging. Single cells underwent traditional mitosis to generate tissue with uniform nuclear size, while others formed PGCCs via asymmetric mitosis, endoreplication, multipolar endomitosis, nuclear fusion, and karyokinesis without cytokinesis. PGCCs underwent restitution multipolar endomitosis, nuclear fragmentation, and micronuclei formation to increase nuclear contents and heterogeneity. At the cellular level, the development of PGCCs was associated with forming transient intracellular cells, termed fecundity cells. The fecundity cells …
Exploring Genetic And Neural Risk Of Specific Reading Disability Within A Nuclear Twin Family Case Study: A Translational Clinical Application,
2023
The Texas Medical Center Library
Exploring Genetic And Neural Risk Of Specific Reading Disability Within A Nuclear Twin Family Case Study: A Translational Clinical Application, Tina Thomas, Griffin Litwin, David J Francis, Elena L Grigorenko
Faculty, Staff and Students Publications
Imaging and genetic studies have characterized biological risk factors contributing to specific reading disability (SRD). The current study aimed to apply this literature to a family of twins discordant for SRD and an older sibling with reading difficulty. Intraclass correlations were used to understand the similarity of imaging phenotypes between pairs. Reading-related genes and brain region phenotypes, including asymmetry indices representing the relative size of left compared to right hemispheric structures, were descriptively examined. SNPs that corresponded between the SRD siblings and not the typically developing (TD) siblings were in genes ZNF385D, LPHN3, CNTNAP2, FGF18, NOP9 …
Histoplasma Tympanomastoiditis: Case Report And Literature Review,
2023
LSU Health Sciences Center - New Orleans
Histoplasma Tympanomastoiditis: Case Report And Literature Review, Terrence Park, Gordon Love, Victoria Burke
School of Medicine Faculty Publications
Histoplasma is a dimorphic fungus capable of producing a diverse array of clinical pathology in humans dependent upon the host immune status. Acute symptomatic infection typically presents as an isolated pulmonary or nodal disease in immunocompetent patients with extra-thoracic manifestations rarely seen in this population. In this report, we describe a novel case of Histoplasma capsulatum tympanomastoiditis in an immunocompetent patient who presented with progressively worsening purulent otorrhea, vertigo, and facial nerve palsy. He was successfully managed with surgical debridement and a prolonged antifungal course.
Effects That The Methylenetetrahydrofolate Gene Mutation (Both The C677t And A1298c Polymorphisms) Have On Both Men And Women’S Fertility Abilities And Subsequent Fetal Development, As Well As What Nutritional Changes Can Possibly Do To Aid In Reversing These Supposed Negative Effects., Elizabeth Simkanin
Williams Honors College, Honors Research Projects
This study discusses the perceived negative effects of variants (C677T and A1298C) of the methylenetetrahydrofolate (MTHFR) gene on male and female fertility and fetal development, as well as the potential for nutrition changes to aid in reversing these negative effects. This research project was completed in order to discuss the possible association with and connection between nutrition and fertility in both male and female individuals who have either of the two most common MTHFR gene polymorphisms, 677C>T and 1298A>C. These two polymorphisms are of particular interest because they are associated with the most decreased activity of the MTHFR …
Brain Monoamine Vesicular Transport Disease Caused By Homozygous Slc18a2 Variants: A Study In 42 Affected Individuals,
2023
The Texas Medical Center Library
Brain Monoamine Vesicular Transport Disease Caused By Homozygous Slc18a2 Variants: A Study In 42 Affected Individuals, Ken Saida, Reza Maroofian, Toru Sengoku, Tadahiro Mitani, Alistair T Pagnamenta, Dana Marafi, Maha S Zaki, Thomas J O'Brien, Ehsan Ghayoor Karimiani, Rauan Kaiyrzhanov, Marina Takizawa, Sachiko Ohori, Huey Yin Leong, Gulsen Akay, Hamid Galehdari, Mina Zamani, Ratna Romy, Christopher J Carroll, Mehran Beiraghi Toosi, Farah Ashrafzadeh, Shima Imannezhad, Hadis Malek, Najmeh Ahangari, Hoda Tomoum, Vykuntaraju K Gowda, Varunvenkat M Srinivasan, David Murphy, Natalia Dominik, Hasnaa M Elbendary, Karima Rafat, Sanem Yilmaz, Seda Kanmaz, Mine Serin, Deepa Krishnakumar, Alice Gardham, Anna Maw, Tekki Sreenivasa Rao, Sarah Alsubhi, Myriam Srour, Daniela Buhas, Tamison Jewett, Rachel E Goldberg, Hanan Shamseldin, Eirik Frengen, Doriana Misceo, Petter Strømme, José Ricardo Magliocco Ceroni, Chong Ae Kim, Gozde Yesil, Esma Sengenc, Serhat Guler, Mariam Hull, Mered Parnes, Dilek Aktas, Banu Anlar, Yavuz Bayram, Davut Pehlivan, Jennifer E Posey, Shahryar Alavi, Seyed Ali Madani Manshadi, Hamad Alzaidan, Mohammad Al-Owain, Lama Alabdi, Ferdous Abdulwahab, Futoshi Sekiguchi, Kohei Hamanaka, Atsushi Fujita, Yuri Uchiyama, Takeshi Mizuguchi, Satoko Miyatake, Noriko Miyake, Reem M Elshafie, Kamran Salayev, Ulviyya Guliyeva, Fowzan S Alkuraya, Joseph G Gleeson, Kristin G Monaghan, Katherine G Langley, Hui Yang, Mahsa Motavaf, Saeid Safari, Mozhgan Alipour, Kazuhiro Ogata, André E X Brown, James R Lupski, Henry Houlden, Naomichi Matsumoto
Faculty, Staff and Students Publications
Purpose: Brain monoamine vesicular transport disease is an infantile-onset movement disorder that mimics cerebral palsy. In 2013, the homozygous SLC18A2 variant, p.Pro387Leu, was first reported as a cause of this rare disorder, and dopamine agonists were efficient for treating affected individuals from a single large family. To date, only 6 variants have been reported. In this study, we evaluated genotype-phenotype correlations in individuals with biallelic SLC18A2 variants.
Methods: A total of 42 affected individuals with homozygous SLC18A2 variant alleles were identified. We evaluated genotype-phenotype correlations and the missense variants in the affected individuals based on the structural modeling of rat …
Genetics In Medicine Open To Us All,
2023
The Texas Medical Center Library
Genetics In Medicine Open To Us All, Bo Yuan
Faculty, Staff and Students Publications
No abstract provided.
The Role Of Neural And Genetic Processes In Learning To Read And Specific Reading Disabilities: Implications For Instruction,
2023
The Texas Medical Center Library
The Role Of Neural And Genetic Processes In Learning To Read And Specific Reading Disabilities: Implications For Instruction, Jessica A Church, Elena L Grigorenko, Jack M Fletcher
Faculty, Staff and Students Publications
To learn to read, the brain must repurpose neural systems for oral language and visual processing to mediate written language. We begin with a description of computational models for how alphabetic written language is processed. Next, we explain the roles of a dorsal sublexical system in the brain that relates print and speech, a ventral lexical system that develops the visual expertise for rapid orthographic processing at the word level, and the role of cognitive control networks that regulate attentional processes as children read. We then use studies of children, adult illiterates learning to read, and studies of poor readers …
Investigation Of The Dyrk1a Regulation By Lzts2-Sipa1l1 Complex,
2023
Virginia Commonwealth University
Investigation Of The Dyrk1a Regulation By Lzts2-Sipa1l1 Complex, Rebecca Gunnin, Austin Witt B.S., Larisa Litovchick M.D.,Ph.D.
Undergraduate Research Posters
A region on chromosome 21, the Down Syndrome critical region (DSCR), is associated with major defects found in Down Syndrome, such as craniofacial malformations. DYRK1A is a gene found on chromosome 21 within the DSCR that encodes an enzyme, dual specificity tyrosine-phosphorylation-regulated kinase 1A. DYRK1A is known to phosphorylate many substrate proteins and is thought to be involved in tumor suppression, neurological development, cell cycle regulation, and aging. Recently, the Litovchick lab and others reported that DYRK1A also plays a role in the double-strand break repair of DNA, which could lead to mutations and tumorigenesis, if deregulated.
The Litovchick lab …
Editorial: Insights In Neurogenomics: 2022,
2023
The Texas Medical Center Library
Editorial: Insights In Neurogenomics: 2022, Aayushi Gandhi, Sarah H Elsea
Faculty, Staff and Students Publications
No abstract provided.
Editorial: Neurogenetic Disorders: From The Tests To The Clinic,
2023
The Texas Medical Center Library
Editorial: Neurogenetic Disorders: From The Tests To The Clinic, Shanshan Mao, Chunyu Li, Bo Yuan, Lan Yu, Huifang Shang
Faculty, Staff and Students Publications
No abstract provided.
The Global Prevalence Of Autism Spectrum Disorder: A Three-Level Meta-Analysis,
2023
The Texas Medical Center Library
The Global Prevalence Of Autism Spectrum Disorder: A Three-Level Meta-Analysis, Oksana I Talantseva, Raisa S Romanova, Ekaterina M Shurdova, Tatiana A Dolgorukova, Polina S Sologub, Olga S Titova, Daria F Kleeva, Elena L Grigorenko
Faculty, Staff and Students Publications
Autism spectrum disorder (ASD) is one the most disabling developmental disorders, imposing an extremely high economic burden. Obtaining as accurate prevalence estimates as possible is crucial to guide governments in planning policies for identification and intervention for individuals with ASD and their relatives. The precision of prevalence estimates can be heightened by summative analyses of the data collected around the world. To that end, we conducted a three-level mixed-effects meta-analysis. A systematic search of the Web of Science, PubMed, EMBASE, and PsycINFO databases from 2000 up to 13 July 2020 was performed, and reference lists of previous reviews and existing …
The Assembled Genome Of The Stroke-Prone Spontaneously Hypertensive Rat,
2023
The Texas Medical Center Library
The Assembled Genome Of The Stroke-Prone Spontaneously Hypertensive Rat, Theodore S Kalbfleisch, Nahla A Hussien Abouel Ela, Kai Li, Wesley A Brashear, Kelli J Kochan, Andrew E Hillhouse, Yaming Zhu, Isha S Dhande, Eric J Kline, Elizabeth A Hudson, Terence D Murphy, Françoise Thibaud-Nissen, Melissa L Smith, Peter A Doris
Faculty, Staff and Student Publications
BACKGROUND: We report the creation and evaluation of a de novo assembly of the genome of the spontaneously hypertensive rat, the most widely used model of human cardiovascular disease.
METHODS: The genome is assembled from long read sequencing (PacBio HiFi and continuous long read data [CLR]) and scaffolded with long-range structural information obtained from Bionano optical maps and proximity ligation sequencing proximity analysis of the genome. The genome assembly was polished with Illumina short reads. Completeness of the assembly was investigated using Benchmarking Universal Single Copy Orthologs analysis. The genome assembly was also evaluated with the rat reference gene set, …
Novel Compound Heterozygous Variants In The Ush2a Gene Associated With Autosomal Recessive Retinitis Pigmentosa Without Hearing Loss,
2023
The Texas Medical Center Library
Novel Compound Heterozygous Variants In The Ush2a Gene Associated With Autosomal Recessive Retinitis Pigmentosa Without Hearing Loss, Yanxia Huang, Lamei Yuan, Guiyun He, Yanna Cao, Xiong Deng, Hao Deng
Faculty, Staff and Student Publications
Background: Retinitis pigmentosa (RP) is a group of progressive inherited retinal dystrophies characterized by the primary degeneration of rod photoreceptors and the subsequent loss of cone photoreceptors because of cell death. It is caused by different mechanisms, including inflammation, apoptosis, necroptosis, pyroptosis, and autophagy. Variants in the usherin gene (USH2A) have been reported in autosomal recessive RP with or without hearing loss. In the present study, we aimed to identify causative variants in a Han-Chinese pedigree with autosomal recessive RP.
Methods: A six-member, three-generation Han-Chinese family with autosomal recessive RP was recruited. A full clinical examination, whole exome …
Truvari: Refined Structural Variant Comparison Preserves Allelic Diversity,
2022
The Texas Medical Center Library
Truvari: Refined Structural Variant Comparison Preserves Allelic Diversity, Adam C English, Vipin K Menon, Richard A Gibbs, Ginger A Metcalf, Fritz J Sedlazeck
Faculty, Staff and Students Publications
The fundamental challenge of multi-sample structural variant (SV) analysis such as merging and benchmarking is identifying when two SVs are the same. Common approaches for comparing SVs were developed alongside technologies which produce ill-defined boundaries. As SV detection becomes more exact, algorithms to preserve this refined signal are needed. Here, we present Truvari-an SV comparison, annotation, and analysis toolkit-and demonstrate the effect of SV comparison choices by building population-level VCFs from 36 haplotype-resolved long-read assemblies. We observe over-merging from other SV merging approaches which cause up to a 2.2× inflation of allele frequency, relative to Truvari.
Deciphering The Mechanism And Function Of Hsp100 Unfoldases From Protein Structure,
2022
The Texas Medical Center Library
Deciphering The Mechanism And Function Of Hsp100 Unfoldases From Protein Structure, Grace Lee, Rebecca S Kim, Sang Bum Lee, Sukyeong Lee, Francis T F Tsai
Faculty, Staff and Students Publications
Hsp100 chaperones, also known as Clp proteins, constitute a family of ring-forming ATPases that differ in 3D structure and cellular function from other stress-inducible molecular chaperones. While the vast majority of ATP-dependent molecular chaperones promote the folding of either the nascent chain or a newly imported polypeptide to reach its native conformation, Hsp100 chaperones harness metabolic energy to perform the reverse and facilitate the unfolding of a misfolded polypeptide or protein aggregate. It is now known that inside cells and organelles, different Hsp100 members are involved in rescuing stress-damaged proteins from a previously aggregated state or in recycling polypeptides marked …
Mechanisms Of Irf2bpl-Related Disorders And Identification Of A Potential Therapeutic Strategy,
2022
The Texas Medical Center Library
Mechanisms Of Irf2bpl-Related Disorders And Identification Of A Potential Therapeutic Strategy, Shrestha Sinha Ray, Debdeep Dutta, Cassandra Dennys, Samantha Powers, Florence Roussel, Pawel Lisowski, Petar Glažar, Xiaojin Zhang, Pipasha Biswas, Joseph R Caporale, Nikolaus Rajewsky, Marc Bickle, Nicolas Wein, Hugo J Bellen, Shibi Likhite, Paul C Marcogliese, Kathrin C Meyer
Faculty, Staff and Students Publications
The recently discovered neurological disorder NEDAMSS is caused by heterozygous truncations in the transcriptional regulator IRF2BPL. Here, we reprogram patient skin fibroblasts to astrocytes and neurons to study mechanisms of this newly described disease. While full-length IRF2BPL primarily localizes to the nucleus, truncated patient variants sequester the wild-type protein to the cytoplasm and cause aggregation. Moreover, patient astrocytes fail to support neuronal survival in coculture and exhibit aberrant mitochondria and respiratory dysfunction. Treatment with the small molecule copper ATSM (CuATSM) rescues neuronal survival and restores mitochondrial function. Importantly, the in vitro findings are recapitulated in vivo, where co-expression of full-length …
Treatment Of Epilepsy Using A Targeted P38Γ Kinase Gene Therapy,
2022
The Texas Medical Center Library
Treatment Of Epilepsy Using A Targeted P38Γ Kinase Gene Therapy, Nicolle Morey, Magdalena Przybyla, Julia Van Der Hoven, Yazi D Ke, Fabien Delerue, Janet Van Eersel, Lars M Ittner
Faculty, Staff and Student Publications
Hyperphosphorylated microtubule-associated protein tau has been implicated in dementia, epilepsy, and other neurological disorders. In contrast, site-specific phosphorylation of tau at threonine 205 (T205) by the kinase p38γ was shown to disengage tau from toxic pathways, serving a neuroprotective function in Alzheimer's disease. Using a viral-mediated gene delivery approach in different mouse models of epilepsy, we show that p38γ activity-enhancing treatment reduces seizure susceptibility, restores neuronal firing patterns, reduces behavioral deficits, and ameliorates epilepsy-induced deaths. Furthermore, we show that p38γ-mediated phosphorylation of tau at T205 is essential for this protection in epilepsy, as a lack of this critical interaction reinstates …
Exome Sequencing Efficacy And Phenotypic Expansions Involving Esophageal Atresia/Tracheoesophageal Fistula Plus,
2022
The Texas Medical Center Library
Exome Sequencing Efficacy And Phenotypic Expansions Involving Esophageal Atresia/Tracheoesophageal Fistula Plus, Mary R Sy, Jaynee Chauhan, Katrina Prescott, Aliza Imam, Alison Kraus, Ana Beleza, Lee Salkeld, Saraswati Hosdurga, Michael Parker, Pradeep Vasudevan, Lily Islam, Himanshu Goel, Nicole Bain, Soo-Mi Park, Shehla Mohammed, Klaus Dieterich, Charles Coutton, Véronique Satre, Gaëlle Vieville, Alan Donaldson, Claire Beneteau, Jamal Ghoumid, Kris Van Den Bogaert, Anneleen Boogaerts, Elise Boudry, Clémence Vanlerberghe, Florence Petit, Laura Bernardini, Barbara Torres, Teresa Mattina, Diana Carli, Giorgia Mandrile, Michele Pinelli, Nicola Brunetti-Pierri, Katherine Neas, Rachel Beddow, Pernille M Tørring, Flavio Faletra, Beatrice Spedicati, Paolo Gasparini, Alessandro Mussa, Giovanni Battista Ferrero, Anne Lampe, Wayne Lam, Weimin Bi, Carlos A Bacino, Akela Kuwahara, Jeffrey O Bush, Xiaonan Zhao, Pamela N Luna, Chad A Shaw, Jill A Rosenfeld, Daryl A Scott
Faculty, Staff and Students Publications
Esophageal atresia/tracheoesophageal fistula (EA/TEF) is a life-threatening birth defect that often occurs with other major birth defects (EA/TEF+). Despite advances in genetic testing, a molecular diagnosis can only be made in a minority of EA/TEF+ cases. Here, we analyzed clinical exome sequencing data and data from the DECIPHER database to determine the efficacy of exome sequencing in cases of EA/TEF+ and to identify phenotypic expansions involving EA/TEF. Among 67 individuals with EA/TEF+ referred for clinical exome sequencing, a definitive or probable diagnosis was made in 11 cases for an efficacy rate of 16% (11/67). This efficacy rate is significantly lower …
