keyword
https://read.qxmd.com/read/38131901/out-of-the-silence-insights-into-how-genes-escape-x-chromosome-inactivation
#21
REVIEW
Samantha B Peeters, Bronwyn J Posynick, Carolyn J Brown
The silencing of all but one X chromosome in mammalian cells is a remarkable epigenetic process leading to near dosage equivalence in X-linked gene products between the sexes. However, equally remarkable is the ability of a subset of genes to continue to be expressed from the otherwise inactive X chromosome-in some cases constitutively, while other genes are variable between individuals, tissues or cells. In this review we discuss the advantages and disadvantages of the approaches that have been used to identify escapees...
November 23, 2023: Epigenomes
https://read.qxmd.com/read/38129867/characteristics-and-clinical-evaluation-of-x-chromosome-translocations
#22
JOURNAL ARTICLE
Ning Huang, Jihui Zhou, Wan Lu, Laipeng Luo, Huizhen Yuan, Lu Pan, Shujun Ding, Bicheng Yang, Yanqiu Liu
BACKGROUND: Individuals with X chromosomal translocations, variable phenotypes, and a high risk of live birth defects are of interest for scientific study. These characteristics are related to differential breakpoints and various types of chromosomal abnormalities. To investigate the effects of X chromosome translocation on clinical phenotype, a retrospective analysis of clinical data for patients with X chromosome translocation was conducted. Karyotype analysis plus endocrine evaluation was utilized for all the patients...
December 21, 2023: Molecular Cytogenetics
https://read.qxmd.com/read/38113263/roles-of-the-rlim-rex1-axis-during-x-chromosome-inactivation-in-mice
#23
JOURNAL ARTICLE
Feng Wang, Ashmita Chander, Yeonsoo Yoon, Janelle M Welton, Mary C Wallingford, Carmen Espejo-Serrano, Francisco Bustos, Greg M Findlay, Jesse Mager, Ingolf Bach
In female mice, the gene dosage from X chromosomes is adjusted by a process called X chromosome inactivation (XCI) that occurs in two steps. An imprinted form of XCI (iXCI) that silences the paternally inherited X chromosome (Xp) is initiated at the 2- to 4-cell stages. As extraembryonic cells including trophoblasts keep the Xp silenced, epiblast cells that give rise to the embryo proper reactivate the Xp and undergo a random form of XCI (rXCI) around implantation. Both iXCI and rXCI require the lncRNA Xist , which is expressed from the X to be inactivated...
December 26, 2023: Proceedings of the National Academy of Sciences of the United States of America
https://read.qxmd.com/read/38077808/trisomy-x-conferring-moderate-hemophilia-a-by-extremely-skewed-x-chromosome-inactivation
#24
Keiko Shinozawa, Kenji Niiya, Seiichi Fujimoto, Masato Bingo, Katsuyuki Fukutake, Ei Kinai
BACKGROUND: Hemophilia carriers occasionally present with bleeding tendency due to skewed inactivation of normal F8 carrying X chromosome. KEY CLINICAL QUESTION: Can extreme skewing of X-chromosome inactivation (XCI) with trisomy X cause low factor (F) VIII activity and bleeding in a hemophilia carrier?. CLINICAL APPROACH: A young female with low FVIII activity (2 IU/dL), who presented with history of frequent bleeding and F8 variant, NP_000123...
October 2023: Research and Practice in Thrombosis and Haemostasis
https://read.qxmd.com/read/38053928/induced-pluripotent-stem-cell-technology-as-diagnostic-tool-in-patients-with-suspected-ornithine-transcarbamylase-deficiency-lacking-genetic-confirmation
#25
Adhuresa Ramosaj, Palak Singhal, André Schaller, Alexander Laemmle
UNLABELLED: Ornithine transcarbamylase (OTC) deficiency (OTCD) is an X-linked urea cycle disorder. In females - undergoing random X chromosomal inactivation (XCI) - disease severity depends on the XCI pattern. Hence, female OTCD subjects with favorable XCI display normal OTC expression and activity and are healthy carriers. Whereas females undergoing less favorable XCI may suffer from severe and fatal OTCD. In approximately 20% of patients with biochemical evidence of OTCD, no mutation can be identified hampering definitive diagnosis and adequate treatment...
December 2023: Molecular Genetics and Metabolism Reports
https://read.qxmd.com/read/38031145/delineation-of-an-inverted-tandem-xq23-26-3-duplication-in-a-female-featuring-extremely-short-stature-and-mild-mental-deficiency
#26
JOURNAL ARTICLE
Shengfang Qin, Jiuzhi Zeng, Jin Wang, Mengling Ye, Qin Deng, Xueyan Wang, Zhuo Zhang, Dangying Yi, Yang Wu, Jesse Li-Ling
BACKGROUND: Partial duplications involving the long arm of the X chromosome are associated with mental retardation, short stature, microcephaly, and a wide range of physical findings. Female carriers usually have no clinical phenotype. Occasionally, they may also have heterogeneous features due to non-random inactivation of the X chromosome. METHODS: The peripheral blood sample was collected from the patient and subjected to a few genetic testing, including chromosomal karyotyping, Chromosomal microarray analysis (CMA), Optical genome mapping, short tandem repeat (STR) analysis for Determination of parental origin, and X chromosome inactivation (XCI) analysis...
November 29, 2023: Molecular Cytogenetics
https://read.qxmd.com/read/38020809/from-x-inactivation-to-neurodevelopment-chd8-transcription-factors-tfs-competitive-binding-at-regulatory-regions-of-chd8-target-genes-can-contribute-to-correct-neuronal-differentiation
#27
REVIEW
Andrea Cerase, Philip Avner
The chromodomain helicase DNA-binding protein 8 (CHD8) is a chromatin remodeler whose mutation is associated, with high penetrance, with autism. Individuals with CHD8 mutations share common symptoms such as autistic behaviour, cognitive impairment, schizophrenia comorbidity, and phenotypic features such as macrocephaly and facial defects. Chd8 -deficient mouse models recapitulate most of the phenotypes seen in the brain and other organs of humans. It is known that CHD8 regulates - directly and indirectly - neuronal, autism spectrum disorder (ASDs)-associated genes and long non-coding RNAs (lncRNAs) genes, which, in turn, regulate fundamental aspects of neuronal differentiation and brain development and function...
2023: Current research in neurobiology
https://read.qxmd.com/read/37997921/x-chromosome-inactivation-a-historic-topic-that-s-still-hot
#28
JOURNAL ARTICLE
Yolanda Moyano Rodriguez, Maud Borensztein
The last edition of the X-chromosome inactivation (XCI) meeting was held as an EMBO workshop in Berlin on 19-22 June 2023. The conference took place at the Harnack-haus in the Dahlem district, birthplace of the first modern research campus, where notable scientists such as Lise Meitner, Hans Krebs and, briefly, Albert Einstein conducted their research. This special edition, also accessible online, was organized by Rafael Galupa (Centre for Integrative Biology of Toulouse, France), Joost Gribnau (Erasmus MC Rotterdam, The Netherlands), Claire Rougeulle (Université Paris Cité/CNRS, Epigenetics and Cell Fate Center, Paris, France), Edda Schulz (Max Planck Institute for Molecular Genetics, Berlin, Germany) and James Turner (The Francis Crick Institute, London, UK)...
November 15, 2023: Development
https://read.qxmd.com/read/37987303/indispensable-for-x-chromosome-inactivation-and-gene-silencing
#29
REVIEW
Corinne Kaufmann, Anton Wutz
For about 30 years, SPEN has been the subject of research in many different fields due to its variety of functions and its conservation throughout a wide spectrum of species, like worms, arthropods, and vertebrates. To date, 216 orthologues have been documented. SPEN had been studied for its role in gene regulation in the context of cell signaling, including the NOTCH or nuclear hormone receptor signaling pathways. More recently, SPEN has been identified as a major regulator of initiation of chromosome-wide gene silencing during X chromosome inactivation (XCI) in mammals, where its function remains to be fully understood...
November 2, 2023: Epigenomes
https://read.qxmd.com/read/37932452/gata-transcription-factors-drive-initial-xist-upregulation-after-fertilization-through-direct-activation-of-long-range-enhancers
#30
JOURNAL ARTICLE
Liat Ravid Lustig, Abhishek Sampath Kumar, Till Schwämmle, Ilona Dunkel, Gemma Noviello, Elodie Limberg, Raha Weigert, Guido Pacini, René Buschow, Afrah Ghauri, Maximilian Stötzel, Lars Wittler, Alexander Meissner, Edda G Schulz
X-chromosome inactivation (XCI) balances gene expression between the sexes in female mammals. Shortly after fertilization, upregulation of Xist RNA from one X chromosome initiates XCI, leading to chromosome-wide gene silencing. XCI is maintained in all cell types, except the germ line and the pluripotent state where XCI is reversed. The mechanisms triggering Xist upregulation have remained elusive. Here we identify GATA transcription factors as potent activators of Xist. Through a pooled CRISPR activation screen in murine embryonic stem cells, we demonstrate that GATA1, as well as other GATA transcription factors can drive ectopic Xist expression...
November 6, 2023: Nature Cell Biology
https://read.qxmd.com/read/37909842/first-report-on-female-monozygotic-twins-discordant-for-congenital-nephrogenic-diabetes-insipidus
#31
JOURNAL ARTICLE
Xiang Chen, Libing Yun, Yang Long, Yuxia Sun, Tao Chen
Ninety percent of congenital nephrogenic diabetes insipidus (NDI) are X-linked inherited and are caused by mutations in the vasopressin type 2 receptor gene (AVPR2). Most affected individuals are males. Only sporadic female cases have been reported. Here, we first reported a female monozygotic twin with discordant phenotypes for NDI carrying a missense variant c.845T>C (p.Leu282Pro) in exon 4 of AVPR2. Intracellular cAMP concentrations in COS7 cells transfected with AVPR2-L282P were significantly decreased by about 60% compared with those in wild-type AVPR2 plasmid transfected cells, suggesting this variation was pathogenic...
November 1, 2023: American Journal of Medical Genetics. Part A
https://read.qxmd.com/read/37904929/population-variability-in-x-chromosome-inactivation-across-9-mammalian-species
#32
Jonathan M Werner, John Hover, Jesse Gillis
One of the two X chromosomes in female mammals is epigenetically silenced in embryonic stem cells by X chromosome inactivation (XCI). This creates a mosaic of cells expressing either the maternal or the paternal X allele. The XCI ratio, the proportion of inactivated parental alleles, varies widely among individuals, representing the largest instance of epigenetic variability within mammalian populations. While various contributing factors to XCI variability are recognized, namely stochastic and/or genetic effects, their relative contributions are poorly understood...
October 19, 2023: bioRxiv
https://read.qxmd.com/read/37882087/conflicting-associations-among-bioelectrical-impedance-and-cardiometabolic-health-parameters-in-young-white-and-black-adults
#33
JOURNAL ARTICLE
Austin J Graybeal, Caleb F Brandner, Jon Stavres
PURPOSE: The purpose of this cross-sectional evaluation was to determine the associations between raw bioelectrical impedance and cardiometabolic health parameters in a sample of young non-Hispanic White and African-American adults. METHODS: A total of 96 (F: 52, M: 44) non-Hispanic White (n = 45) and African-American adults (n = 51) between the ages of 19 and 37 (22.7 ± 3.83 y) completed several fasted assessments including resting systolic blood pressure (rSBP), blood glucose (FBG), blood lipids, and bioelectrical impedance spectroscopy (BIS)...
October 26, 2023: Medicine and Science in Sports and Exercise
https://read.qxmd.com/read/37817054/a-novel-mutation-in-the-map7d3-gene-in-two-siblings-with-severe-intellectual-disability-and-autistic-traits-concurrent-assessment-of-bdnf-functional-polymorphism-x-inactivation-and-oxidative-stress-to-explain-disease-severity
#34
JOURNAL ARTICLE
Marwa Kharrat, Abir Ben Issa, Abdelaziz Tlili, Olfa Jallouli, Olfa Alila-Fersi, Marwa Maalej, Jihen Chouchen, Yosra Ghouylia, Fatma Kamoun, Chahnez Triki, Faiza Fakhfakh
Intellectual disabilities (ID) and autism spectrum disorders (ASD) are characterized by extreme genetic and phenotypic heterogeneity. However, understanding this heterogeneity is difficult due to the intricate interplay among multiple interconnected genes, epigenetic factors, oxidative stress, and environmental factors. Employing next-generation sequencing (NGS), we revealed the genetic cause of ID and autistic traits in two patients from a consanguineous family followed by segregation analysis. Furthermore, in silico prediction methods and 3D modeling were conducted to predict the effect of the variants...
October 10, 2023: Journal of Molecular Neuroscience: MN
https://read.qxmd.com/read/37759468/establishing-the-link-between-x-chromosome-aberrations-and-tp53-status-with-breast-cancer-patient-outcomes
#35
JOURNAL ARTICLE
Franco Caramia, Terence P Speed, Hui Shen, Ygal Haupt, Sue Haupt
Ubiquitous to normal female human somatic cells, X-chromosome inactivation (XCI) tightly regulates the transcriptional silencing of a single X chromosome from each pair. Some genes escape XCI, including crucial tumour suppressors. Cancer susceptibility can be influenced by the variability in the genes that escape XCI. The mechanisms of XCI dysregulation remain poorly understood in complex diseases, including cancer. Using publicly available breast cancer next-generation sequencing data, we show that the status of the major tumour suppressor TP53 from Chromosome 17 is highly associated with the genomic integrity of the inactive X (Xi) and the active X (Xa) chromosomes...
September 11, 2023: Cells
https://read.qxmd.com/read/37723501/tlr8-escapes-x-chromosome-inactivation-in-human-monocytes-and-cd4-t-cells
#36
JOURNAL ARTICLE
Ali Youness, Claire Cenac, Berenice Faz-López, Solange Grunenwald, Franck J Barrat, Julie Chaumeil, José Enrique Mejía, Jean-Charles Guéry
BACKGROUND: Human endosomal Toll-like receptors TLR7 and TLR8 recognize self and non-self RNA ligands, and are important mediators of innate immunity and autoimmune pathogenesis. TLR7 and TLR8 are, respectively, encoded by adjacent X-linked genes. We previously established that TLR7 evades X chromosome inactivation (XCI) in female immune cells. Whether TLR8 also evades XCI, however, has not yet been explored. METHOD: In the current study, we used RNA fluorescence in situ hybridization (RNA FISH) to directly visualize, on a single-cell basis, primary transcripts of TLR7 and TLR8 relative to X chromosome territories in CD14+ monocytes and CD4+ T lymphocytes from women, Klinefelter syndrome (KS) men, and euploid men...
September 18, 2023: Biology of Sex Differences
https://read.qxmd.com/read/37716855/clinical-pathological-and-genetic-characterization-in-a-large-chinese-cohort-with-female-dystrophinopathy
#37
JOURNAL ARTICLE
Chang Liu, Jiajian Ma, Yanyu Lu, Yunlong Lu, Jiahui Mai, Li Bai, Yikang Wang, Yilei Zheng, Meng Yu, Yiming Zheng, Jianwen Deng, Lingchao Meng, Wei Zhang, Zhaoxia Wang, Yun Yuan, Zhiying Xie
We aimed to investigate the clinical, pathological, and genetic characteristics of Chinese female dystrophinopathy and to identify possible correlations among them. One hundred forty genetically and/or pathologically confirmed female DMD variant carriers were enrolled, including 104 asymptomatic carriers and 36 symptomatic carriers. Twenty of 36 symptomatic and 16 of 104 asymptomatic carriers were sporadic with no family history. Muscle pathological analysis was performed in 53 carriers and X chromosome inactivation (XCI) analysis in 19 carriers...
August 19, 2023: Neuromuscular Disorders: NMD
https://read.qxmd.com/read/37645756/kdm6a-facilitates-xist-upregulation-at-the-onset-of-x-inactivation
#38
Josephine Lin, Jinli Zhang, Li Ma, He Fang, Rui Ma, Camille Groneck, Galina N Filippova, Xinxian Deng, Wenxiu Ma, Christine M Disteche, Joel B Berletch
X chromosome inactivation (XCI) is a female-specific process in which one X chromosome is silenced to balance X-linked gene expression between the sexes. XCI is initiated in early development by upregulation of the lncRNA Xist on the future inactive X (Xi). A subset of X-linked genes escape silencing and thus have higher expression in females, suggesting female-specific functions. One of these genes is the highly conserved gene Kdm6a , which encodes a histone demethylase that removes methyl groups at H3K27 to facilitate gene expression...
August 17, 2023: bioRxiv
https://read.qxmd.com/read/37626340/the-inactive-x-chromosome-accumulates-widespread-epigenetic-variability-with-age
#39
JOURNAL ARTICLE
Yunfeng Liu, Lucy Sinke, Thomas H Jonkman, Roderick C Slieker, Erik W van Zwet, Lucia Daxinger, Bastiaan T Heijmans
BACKGROUND: Loss of epigenetic control is a hallmark of aging. Among the most prominent roles of epigenetic mechanisms is the inactivation of one of two copies of the X chromosome in females through DNA methylation. Hence, age-related disruption of X-chromosome inactivation (XCI) may contribute to the aging process in women. METHODS: We analyzed 9,777 CpGs on the X chromosome in whole blood samples from 2343 females and 1688 males (Illumina 450k methylation array) and replicated findings in duplicate using one whole blood and one purified monocyte data set (in total, 991/924 females/males)...
August 25, 2023: Clinical Epigenetics
https://read.qxmd.com/read/37620924/pan-cancer-analysis-identifies-spen-mutation-as-a-predictive-biomarker-with-the-efficacy-of-immunotherapy
#40
JOURNAL ARTICLE
Ya-Dong Li, Hao Huang, Zheng-Ju Ren, Ye Yuan, Hao Wu, Chuan Liu
The association between specific genetic mutations and immunotherapy benefits has been widely known, while such studies in pan-cancer are still limited. SPEN, mainly involved in X chromosome inactivation (XCI), plays an essential in tumorigenesis and sex differences in cancer. Thus, we firstly analyzed the potential role of SPEN in the TCGA pan-cancer cohort and clinical samples. Bioinformatics analysis and immunohistochemistry (IHC) staining confirm that the expression of SPEN is significantly different in various cancers and may involve RNA splicing and processing via enrichment analysis...
August 24, 2023: BMC Cancer
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