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1.
Nature ; 609(7929): 1048-1055, 2022 09.
Article in English | MEDLINE | ID: mdl-36104563

ABSTRACT

Telomeres, the ends of eukaryotic chromosomes, play pivotal parts in ageing and cancer and are targets of DNA damage and the DNA damage response1-5. Little is known about the structure of telomeric chromatin at the molecular level. Here we used negative stain electron microscopy and single-molecule magnetic tweezers to characterize 3-kbp-long telomeric chromatin fibres. We also obtained the cryogenic electron microscopy structure of the condensed telomeric tetranucleosome and its dinucleosome unit. The structure displayed close stacking of nucleosomes with a columnar arrangement, and an unusually short nucleosome repeat  length that comprised about 132 bp DNA wound in a continuous superhelix around histone octamers. This columnar structure is primarily stabilized by the H2A carboxy-terminal and histone amino-terminal tails in a synergistic manner. The columnar conformation results in exposure of the DNA helix, which may make it susceptible to both DNA damage and the DNA damage response. The conformation also exists in an alternative open state, in which one nucleosome is unstacked and flipped out, which exposes the acidic patch of the histone surface. The structural features revealed in this work suggest mechanisms by which protein factors involved in telomere maintenance can access telomeric chromatin in its compact form.


Subject(s)
Chromatin , DNA , Histones , Molecular Conformation , Telomere , Chromatin/chemistry , Chromatin/genetics , Chromatin/ultrastructure , DNA/chemistry , DNA/metabolism , DNA/ultrastructure , DNA Damage , Histones/chemistry , Histones/metabolism , Histones/ultrastructure , Humans , Microscopy, Electron , Nucleosomes/chemistry , Nucleosomes/genetics , Nucleosomes/ultrastructure , Single Molecule Imaging , Telomere/chemistry , Telomere/genetics , Telomere/ultrastructure
2.
Eur J Endocrinol ; 187(2): 219-230, 2022 Jun 20.
Article in English | MEDLINE | ID: mdl-35584004

ABSTRACT

Objectives: To evaluate how telomere length behaves in adamantinomtous craniopharyngioma (aCP) and if it contributes to the pathogenesis of aCPs with and without CTNNB1 mutations. Design: Retrospective cross-sectional study enrolling 42 aCP patients from 2 tertiary institutions. Methods: Clinicopathological features were retrieved from the patient's charts. Fresh frozen tumors were used for RNA and DNA analyses. Telomere length was evaluated by qPCR (T/S ratio). Somatic mutations in TERT promoter (TERTp) and CTNNB1 were detected by Sanger and/or whole-exome sequencing. We performed RNA-Seq to identify differentially expressed genes in aCPs presenting with shorter or longer telomere lengths. Results: Mutations in CTNNB1 were detected in 29 (69%) tumors. There was higher frequency of CTNNB1 mutations in aCPs from patients diagnosed under the age of 15 years (85% vs 15%; P = 0.04) and a trend to recurrent disease (76% vs 24%; P = 0.1). No mutation was detected in the TERTp region. The telomeres were shorter in CTNNB1-mutated aCPs (0.441, IQR: 0.297-0.597vs 0.607, IQR: 0.445-0.778; P = 0.04), but it was neither associated with clinicopathological features nor with recurrence. RNAseq identified a total of 387 differentially expressed genes, generating two clusters, being one enriched for short telomeres and CTNNB1-mutated aCPs. Conclusions: CTNNB1: mutations are more frequent in children and adolescents and appear to associate with progressive disease. CTNNB1-mutated aCPs have shorter telomeres, demonstrating a relationship between the Wnt/ß-catenin pathway and telomere biology in the pathogenesis of aCPs.


Subject(s)
Craniopharyngioma , Telomere , beta Catenin , Adolescent , Child , Craniopharyngioma/genetics , Cross-Sectional Studies , Humans , Mutation , Retrospective Studies , Telomere/ultrastructure , Wnt Signaling Pathway , beta Catenin/genetics
3.
Nucleic Acids Res ; 50(9): 5047-5063, 2022 05 20.
Article in English | MEDLINE | ID: mdl-35489064

ABSTRACT

Telomeres, the ends of linear chromosomes, are composed of repetitive DNA sequences, histones and a protein complex called shelterin. How DNA is packaged at telomeres is an outstanding question in the field with significant implications for human health and disease. Here, we studied the architecture of telomeres and their spatial association with other chromatin domains in different cell types using correlative light and electron microscopy. To this end, the shelterin protein TRF1 or TRF2 was fused in tandem to eGFP and the peroxidase APEX2, which provided a selective and electron-dense label to interrogate telomere organization by transmission electron microscopy, electron tomography and scanning electron microscopy. Together, our work reveals, for the first time, ultrastructural insight into telomere architecture. We show that telomeres are composed of a dense and highly compacted mesh of chromatin fibres. In addition, we identify marked differences in telomere size, shape and chromatin compaction between cancer and non-cancer cells and show that telomeres are in direct contact with other heterochromatin regions. Our work resolves the internal architecture of telomeres with unprecedented resolution and advances our understanding of how telomeres are organized in situ.


Subject(s)
Telomere/ultrastructure , Humans , Microscopy, Electron , Shelterin Complex , Telomere/genetics , Telomere/metabolism , Telomeric Repeat Binding Protein 1/metabolism , Telomeric Repeat Binding Protein 2/metabolism
4.
Elife ; 112022 02 07.
Article in English | MEDLINE | ID: mdl-35129114

ABSTRACT

Rif1 is a large multifaceted protein involved in various processes of DNA metabolism - from telomere length regulation and replication to double-strand break repair. The mechanistic details of its action, however, are often poorly understood. Here, we report functional characterization of the Rif1 homologue from methylotrophic thermotolerant budding yeast Hansenula polymorpha DL-1. We show that, similar to other yeast species, H. polymorpha Rif1 suppresses telomerase-dependent telomere elongation. We uncover two novel modes of Rif1 recruitment at H. polymorpha telomeres: via direct DNA binding and through the association with the Ku heterodimer. Both of these modes (at least partially) require the intrinsically disordered N-terminal extension - a region of the protein present exclusively in yeast species. We also demonstrate that Rif1 binds Stn1 and promotes its accumulation at telomeres in H. polymorpha.


Subject(s)
Cell Cycle Proteins/metabolism , Repressor Proteins/metabolism , Saccharomyces cerevisiae Proteins/metabolism , Saccharomycetales/metabolism , Telomere-Binding Proteins/metabolism , Telomere/ultrastructure , Cell Cycle Proteins/genetics , DNA Replication , Repressor Proteins/genetics , Saccharomyces cerevisiae Proteins/genetics , Saccharomycetales/genetics , Telomere Homeostasis , Telomere-Binding Proteins/genetics
5.
BMC Cancer ; 22(1): 137, 2022 Feb 03.
Article in English | MEDLINE | ID: mdl-35114947

ABSTRACT

BACKGROUND: Telomeres are protective structures at chromosome ends which shorten gradually with increasing age. In chronic lymphocytic leukemia (CLL), short telomeres have been associated with unfavorable disease outcome, but the link between clonal evolution and telomere shortening remains unresolved. METHODS: We investigated relative telomere length (RTL) in a well-characterized cohort of 198 CLL patients by qPCR and focused in detail on a subgroup 26 patients who underwent clonal evolution of TP53 mutations (evolTP53). In the evolTP53 subgroup we explored factors influencing clonal evolution and corresponding changes in telomere length through measurements of telomerase expression, lymphocyte doubling time, and BCR signaling activity. RESULTS: At baseline, RTL of the evolTP53 patients was scattered across the entire RTL spectrum observed in our CLL cohort. RTL changed in the follow-up samples of 16/26 (62%) evolTP53 cases, inclining to reach intermediate RTL values, i.e., longer telomeres shortened compared to baseline while shorter ones prolonged. For the first time we show that TP53 clonal shifts are linked to RTL change, including unexpected RTL prolongation. We further investigated parameters associated with RTL changes. Unstable telomeres were significantly more frequent among younger patients (P = 0.032). Shorter telomeres were associated with decreased activity of the B-cell receptor signaling components p-ERK1/2, p-ZAP-70/SYK, and p-NFκB (P = 0.04, P = 0.01, and P = 0.02, respectively). CONCLUSIONS: Our study revealed that changes of telomere length reflect evolution in leukemic subclone proportion, and are associated with specific clinico-biological features of the explored cohort.


Subject(s)
Clonal Evolution/genetics , Leukemia, Lymphocytic, Chronic, B-Cell/genetics , Telomere/ultrastructure , Tumor Suppressor Protein p53/genetics , Female , Humans , Male , Middle Aged , Mutation , Proto-Oncogene Proteins c-bcr/metabolism , Signal Transduction , Telomerase/genetics
6.
PLoS One ; 17(2): e0263478, 2022.
Article in English | MEDLINE | ID: mdl-35113965

ABSTRACT

BACKGROUND: Autism spectrum disorder (ASD) is characterized by impaired social communication and behavioral problems. An increased risk of premature mortality has been observed in individuals with ASD. Therefore, we hypothesized that biological aging is accelerated in individuals with ASD. Recently, several studies have established genome-wide DNA methylation (DNAm) profiles as 'epigenetic clocks' that can estimate biological aging. In addition, ASD has been associated with differential DNAm patterns. METHODS: We used two independent datasets from blood samples consisting of adult patients with high-functioning ASD and controls: the 1st cohort (38 ASD cases and 31 controls) and the 2nd cohort (6 ASD cases and 10 controls). We explored well-studied epigenetic clocks such as HorvathAge, HannumAge, SkinBloodAge, PhenoAge, GrimAge, and DNAm-based telomere length (DNAmTL). In addition, we investigated seven DNAm-based age-related plasma proteins, including plasminogen activator inhibitor-1 (PAI-1), and smoking status, which are the components of GrimAge. RESULTS: Compared to controls, individuals with ASD in the 1st cohort, but not in the 2nd cohort, exhibited a trend for increased GrimAge acceleration and a significant increase of PAI-1 levels. A meta-analysis showed significantly increased PAI-1 levels in individuals with ASD compared to controls. CONCLUSION: Our findings suggest there is no epigenetic age acceleration in the blood of individuals with ASD. However, this study provides novel evidence regarding increased plasma PAI-1 levels in individuals with high-functioning ASD. These findings suggest PAI-1 may be a biomarker for high-functioning ASD, however, larger studies based on epigenetic clocks and PAI-1 will be necessary to confirm these findings.


Subject(s)
Autism Spectrum Disorder/genetics , Autism Spectrum Disorder/metabolism , Epigenesis, Genetic , Plasminogen Activator Inhibitor 1/biosynthesis , Adult , Biomarkers , Case-Control Studies , DNA Methylation , Female , Humans , Male , Regression Analysis , Risk , Telomere/ultrastructure , Young Adult
7.
Int J Sports Med ; 43(1): 29-33, 2022 Jan.
Article in English | MEDLINE | ID: mdl-34256387

ABSTRACT

Lower SIRT1 and insulin resistance are associated with accelerated telomere shortening. This study investigated whether the lifestyle of master athletes can attenuate these age-related changes and thereby slow aging. We compared insulin, SIRT1, and telomere length in highly trained male master athletes (n=52; aged 49.9±7.2 yrs) and age-matched non-athletes (n=19; aged 47.3±8.9 yrs). This is a cross-sectional study, in which all data were collected in one visit. Overnight fasted SIRT1 and insulin levels in whole blood were assessed using commercial kits. Relative telomere length was determined in leukocytes through qPCR analyses. Master athletes had higher SIRT1, lower insulin, and longer telomere length than age-matched non-athletes (p<0.05 for all). Insulin was inversely associated with SIRT1 (r=-0.38; p=0.001). Telomere length correlated positively with SIRT1 (r=0.65; p=0.001), whereas telomere length and insulin were not correlated (r=0.03; p=0.87). In conclusion, master athletes have higher SIRT1, lower insulin, and longer telomeres than age-matched non-athletes. Furthermore, SIRT1 was negatively associated with insulin and positively associated with telomere length. These findings suggest that in this sample of middle-aged participants reduced insulin, increased SIRT1 activity, and attenuation of biological aging are connected.


Subject(s)
Athletes , Insulin/blood , Longevity , Sirtuin 1 , Telomere/ultrastructure , Adult , Aging , Cross-Sectional Studies , Humans , Leukocytes , Male , Middle Aged , Sirtuin 1/genetics
8.
Front Endocrinol (Lausanne) ; 12: 650988, 2021.
Article in English | MEDLINE | ID: mdl-34393992

ABSTRACT

Objective: To investigate the association of dynamic weight change in adulthood with leukocyte telomere length among U.S. adults. Methods: This study included 3,886 subjects aged 36-75 years from the National Health and Nutrition Examination Survey (NHANES) 1999-2002 cycle. Survey-weighted multivariable linear regression with adjustments for potential confounders was utilized. Results: 3,386 individuals were finally included. People with stable obesity had a 0.130 kbp (95% CI: 0.061-0.198, P=1.97E-04) shorter leukocyte telomere length than those with stable normal weight (reference group) during the 10-year period, corresponding to approximately 8.7 years of aging. Weight gain from non-obesity to obesity shortened the leukocyte telomere length by 0.094 kbp (95% CI: 0.012-0.177, P=0.026), while normal weight to overweight or remaining overweight shortened the leukocyte telomere length by 0.074 kbp (95% CI: 0.014-0.134, P=0.016). The leukocyte telomere length has 0.003 kbp attrition on average for every 1 kg increase in weight from a mean age of 41 years to 51 years. Further stratified analysis showed that the associations generally varied across sex and race/ethnicity. Conclusions: This study found that weight changes during a 10-year period was associated with leukocyte telomere length and supports the theory that weight gain promotes aging across adulthood.


Subject(s)
Aging , Body Weight , Leukocytes/cytology , Telomere/ultrastructure , Weight Gain , Adult , Aged , Body Mass Index , Cross-Sectional Studies , Female , Humans , Leukocytes/metabolism , Linear Models , Male , Middle Aged , Multivariate Analysis , Nutrition Surveys , Obesity/complications , Obesity/genetics , Overweight , Telomere Shortening , United States
9.
Genome Biol ; 22(1): 201, 2021 07 09.
Article in English | MEDLINE | ID: mdl-34243810

ABSTRACT

BACKGROUND: Naïve and primed pluripotent stem cells (PSCs) represent two different pluripotent states. Primed PSCs following in vitro culture exhibit lower developmental potency as evidenced by failure in germline chimera assays, unlike mouse naïve PSCs. However, the molecular mechanisms underlying the lower developmental competency of primed PSCs remain elusive. RESULTS: We examine the regulation of telomere maintenance, retrotransposon activity, and genomic stability of primed PSCs and compare them with naïve PSCs. Surprisingly, primed PSCs only minimally maintain telomeres and show fragile telomeres, associated with declined DNA recombination and repair activity, in contrast to naïve PSCs that robustly elongate telomeres. Also, we identify LINE1 family integrant L1Md_T as naïve-specific retrotransposon and ERVK family integrant IAPEz to define primed PSCs, and their transcription is differentially regulated by heterochromatic histones and Dnmt3b. Notably, genomic instability of primed PSCs is increased, in association with aberrant retrotransposon activity. CONCLUSIONS: Our data suggest that fragile telomere, retrotransposon-associated genomic instability, and declined DNA recombination repair, together with reduced function of cell cycle and mitochondria, increased apoptosis, and differentiation properties may link to compromised developmental potency of primed PSCs, noticeably distinguishable from naïve PSCs.


Subject(s)
Genomic Instability , Pluripotent Stem Cells/metabolism , Protein Processing, Post-Translational , Retroelements , Telomere Homeostasis , Activins/pharmacology , Animals , Apoptosis/genetics , Cell Cycle/drug effects , Cell Cycle/genetics , Cell Differentiation/drug effects , DNA/genetics , DNA/metabolism , DNA (Cytosine-5-)-Methyltransferases/genetics , DNA (Cytosine-5-)-Methyltransferases/metabolism , Fibroblast Growth Factor 2/pharmacology , Heterochromatin/chemistry , Heterochromatin/metabolism , Histones/genetics , Histones/metabolism , Mice , Mice, Inbred C57BL , Mice, Inbred CBA , Mice, Inbred ICR , Mitochondria/genetics , Mitochondria/metabolism , Mouse Embryonic Stem Cells/cytology , Mouse Embryonic Stem Cells/drug effects , Mouse Embryonic Stem Cells/metabolism , Pluripotent Stem Cells/cytology , Pluripotent Stem Cells/drug effects , Recombinational DNA Repair , Telomere/metabolism , Telomere/ultrastructure , DNA Methyltransferase 3B
10.
Cells ; 10(5)2021 05 11.
Article in English | MEDLINE | ID: mdl-34064566

ABSTRACT

Adaptative response to stress is a strategy conserved across evolution to promote survival. In this context, the groundbreaking findings of Miroslav Radman on the adaptative value of changing mutation rates opened new avenues in our understanding of stress response. Inspired by this work, we explore here the putative beneficial effects of changing the ends of eukaryotic chromosomes, the telomeres, in response to stress. We first summarize basic principles in telomere biology and then describe how various types of stress can alter telomere structure and functions. Finally, we discuss the hypothesis of stress-induced telomere signaling with hormetic effects.


Subject(s)
Mutation , Stress, Physiological , Telomere/ultrastructure , Adaptation, Physiological , Animals , DNA , Hormesis , Humans , Hydrogen-Ion Concentration , Inflammation , Karyotyping , Mice , Mitochondria/metabolism , Signal Transduction , Stress, Psychological , Telomerase/metabolism , Temperature
11.
Science ; 372(6545): 984-989, 2021 05 28.
Article in English | MEDLINE | ID: mdl-34045355

ABSTRACT

We investigated genome folding across the eukaryotic tree of life. We find two types of three-dimensional (3D) genome architectures at the chromosome scale. Each type appears and disappears repeatedly during eukaryotic evolution. The type of genome architecture that an organism exhibits correlates with the absence of condensin II subunits. Moreover, condensin II depletion converts the architecture of the human genome to a state resembling that seen in organisms such as fungi or mosquitoes. In this state, centromeres cluster together at nucleoli, and heterochromatin domains merge. We propose a physical model in which lengthwise compaction of chromosomes by condensin II during mitosis determines chromosome-scale genome architecture, with effects that are retained during the subsequent interphase. This mechanism likely has been conserved since the last common ancestor of all eukaryotes.


Subject(s)
Adenosine Triphosphatases/genetics , Adenosine Triphosphatases/physiology , Biological Evolution , Chromosomes/ultrastructure , DNA-Binding Proteins/genetics , DNA-Binding Proteins/physiology , Eukaryota/genetics , Genome , Multiprotein Complexes/genetics , Multiprotein Complexes/physiology , Adenosine Triphosphatases/chemistry , Algorithms , Animals , Cell Nucleolus/ultrastructure , Cell Nucleus/ultrastructure , Centromere/ultrastructure , Chromosomes/chemistry , Chromosomes, Human/chemistry , Chromosomes, Human/ultrastructure , DNA-Binding Proteins/chemistry , Genome, Human , Genomics , Heterochromatin/ultrastructure , Humans , Interphase , Mitosis , Models, Biological , Multiprotein Complexes/chemistry , Telomere/ultrastructure
12.
Nature ; 593(7859): 454-459, 2021 05.
Article in English | MEDLINE | ID: mdl-33981033

ABSTRACT

Telomerase is unique among the reverse transcriptases in containing a noncoding RNA (known as telomerase RNA (TER)) that includes a short template that is used for the processive synthesis of G-rich telomeric DNA repeats at the 3' ends of most eukaryotic chromosomes1. Telomerase maintains genomic integrity, and its activity or dysregulation are critical determinants of human longevity, stem cell renewal and cancer progression2,3. Previous cryo-electron microscopy structures have established the general architecture, protein components and stoichiometries of Tetrahymena and human telomerase, but our understandings of the details of DNA-protein and RNA-protein interactions and of the mechanisms and recruitment involved remain limited4-6. Here we report cryo-electron microscopy structures of active Tetrahymena telomerase with telomeric DNA at different steps of nucleotide addition. Interactions between telomerase reverse transcriptase (TERT), TER and DNA reveal the structural basis of the determination of the 5' and 3' template boundaries, handling of the template-DNA duplex and separation of the product strand during nucleotide addition. The structure and binding interface between TERT and telomerase protein p50 (a homologue of human TPP17,8) define conserved interactions that are required for telomerase activation and recruitment to telomeres. Telomerase La-related protein p65 remodels several regions of TER, bridging the 5' and 3' ends and the conserved pseudoknot to facilitate assembly of the TERT-TER catalytic core.


Subject(s)
Cryoelectron Microscopy , Telomerase/chemistry , Telomerase/metabolism , Telomere/metabolism , Tetrahymena thermophila/enzymology , Amino Acid Motifs , Binding Sites , DNA/chemistry , DNA/metabolism , DNA/ultrastructure , Humans , Models, Molecular , Nucleotides , Protein Binding , RNA/chemistry , RNA/metabolism , RNA/ultrastructure , Ribonucleoproteins/chemistry , Ribonucleoproteins/metabolism , Ribonucleoproteins/ultrastructure , Shelterin Complex/chemistry , Shelterin Complex/metabolism , Telomerase/ultrastructure , Telomere/genetics , Telomere/ultrastructure , Telomere-Binding Proteins/chemistry , Telomere-Binding Proteins/metabolism , Templates, Genetic , Tetrahymena thermophila/ultrastructure
13.
Article in English | MEDLINE | ID: mdl-33933630

ABSTRACT

The effects of maternal glucocorticoids (e.g. corticosterone, CORT) on offspring interest biologists due to increasing environmental perturbations. While little is known about the impact of maternal CORT on offspring fitness, it may modulate telomere length and compromise offspring health. Here, we use a modified real-time quantitative PCR assay to assess telomere length using small DNA quantities (<60 ng). We tested the hypothesis that increased maternal CORT during gestation decreases offspring telomere length. While CORT-driven telomere shortening is well established within individuals, cross-generational effects remain unclear. We treated wild-caught gravid female eastern fence lizards (Sceloporus undulatus) with daily transdermal applications of CORT, at ecologically relevant levels, from capture to laying. Maternal CORT treatment did not alter maternal telomere length, although baseline maternal CORT concentrations had a weak, negative correlation with maternal telomere length. There was no relation between mother and offspring telomere length. There was a trend for maternal CORT treatment to shorten telomeres of sons but not daughters. Our treatment replicated exposure to a single stressor per day, likely underestimating effects seen in the wild where stressors may be more frequent. Future research should further explore fitness consequences of maternal CORT effects.


Subject(s)
Glucocorticoids/metabolism , Lizards/physiology , Pregnancy, Animal , Adrenal Cortex Hormones/pharmacology , Animals , Cellular Senescence , Corticosterone/metabolism , DNA/analysis , DNA/metabolism , Female , Phenotype , Pregnancy , Prenatal Exposure Delayed Effects , Real-Time Polymerase Chain Reaction , Stress, Physiological , Telomere/ultrastructure
14.
Int J Mol Sci ; 22(7)2021 Mar 27.
Article in English | MEDLINE | ID: mdl-33801585

ABSTRACT

The metastasis suppressor function of NM23 proteins is widely understood. Multiple enzymatic activities of NM23 proteins have also been identified. However, relatively less known interesting aspects are being revealed from recent developments that corroborate the telomeric interactions of NM23 proteins. Telomeres are known to regulate essential physiological events such as metastasis, ageing, and cellular differentiation via inter-connected signalling pathways. Here, we review the literature on the association of NM23 proteins with telomeres or telomere-related factors, and discuss the potential implications of emerging telomeric functions of NM23 proteins. Further understanding of these aspects might be instrumental in better understanding the metastasis suppressor functions of NM23 proteins.


Subject(s)
Aging , Gene Expression Regulation, Neoplastic , NM23 Nucleoside Diphosphate Kinases/metabolism , Neoplasm Metastasis , Neoplasms/genetics , Neoplasms/metabolism , Telomere/metabolism , Animals , Cell Differentiation , Cell Movement , Cell Proliferation , Cytoskeleton/metabolism , DNA/chemistry , G-Quadruplexes , Humans , Lymphocyte Activation , Mitochondria/metabolism , Nucleoside Diphosphate Kinase D/chemistry , Protein Binding , Proto-Oncogene Proteins c-myc/metabolism , Signal Transduction , T-Lymphocytes/cytology , Telomere/ultrastructure , Transcription Factors/metabolism
15.
Int J Mol Sci ; 22(7)2021 Mar 27.
Article in English | MEDLINE | ID: mdl-33801762

ABSTRACT

Origin recognition complex (ORC) binds to replication origins in eukaryotic DNAs and plays an important role in replication. Although yeast ORC is known to sequence-specifically bind to a replication origin, how human ORC recognizes a replication origin remains unknown. Previous genome-wide studies revealed that guanine (G)-rich sequences, potentially forming G-quadruplex (G4) structures, are present in most replication origins in human cells. We previously suggested that the region comprising residues 413-511 of human ORC subunit 1, hORC1413-511, binds preferentially to G-rich DNAs, which form a G4 structure in the absence of hORC1413-511. Here, we investigated the interaction of hORC1413-511 with various G-rich DNAs derived from human c-myc promoter and telomere regions. Fluorescence anisotropy revealed that hORC1413-511 binds preferentially to DNAs that have G4 structures over ones having double-stranded structures. Importantly, circular dichroism (CD) and nuclear magnetic resonance (NMR) showed that those G-rich DNAs retain the G4 structures even after binding with hORC1413-511. NMR chemical shift perturbation analyses revealed that the external G-tetrad planes of the G4 structures are the primary binding sites for hORC1413-511. The present study suggests that human ORC1 may recognize replication origins through the G4 structure.


Subject(s)
DNA/genetics , G-Quadruplexes , Origin Recognition Complex , Promoter Regions, Genetic , Proto-Oncogene Proteins c-myc/genetics , Telomere/ultrastructure , Binding Sites , DNA Replication , Fluorescence Polarization , Humans , Magnetic Resonance Spectroscopy , Open Reading Frames , Origin Recognition Complex/genetics , Protein Binding , Replication Origin
16.
Int J Mol Sci ; 22(7)2021 Mar 26.
Article in English | MEDLINE | ID: mdl-33810566

ABSTRACT

Senescence is considered to be a cardinal player in several chronic inflammatory and metabolic pathologies. The two dominant mechanisms of senescence include replicative senescence, predominantly depending on age-induced telomere shortening, and stress-induced senescence, triggered by external or intracellular harmful stimuli. Recent data indicate that hepatocyte senescence is involved in the development of nonalcoholic fatty liver disease (NAFLD). However, previous studies have mainly focused on age-related senescence during NAFLD, in the presence or absence of obesity, while information about whether the phenomenon is characterized by replicative or stress-induced senescence, especially in non-aged organisms, is scarce. Herein, we subjected young mice to two different diet-induced NAFLD models which differed in the presence of obesity. In both models, liver fat accumulation and increased hepatic mRNA expression of steatosis-related genes were accompanied by hepatic senescence, indicated by the increased expression of senescence-associated genes and the presence of a robust hybrid histo-/immunochemical senescence-specific staining in the liver. Surprisingly, telomere length and global DNA methylation did not differ between the steatotic and the control livers, while malondialdehyde, a marker of oxidative stress, was upregulated in the mouse NAFLD livers. These findings suggest that senescence accompanies NAFLD emergence, even in non-aged organisms, and highlight the role of stress-induced senescence during steatosis development independently of obesity.


Subject(s)
Cellular Senescence , Liver/pathology , Non-alcoholic Fatty Liver Disease/metabolism , Obesity/metabolism , Animals , DNA Methylation , Diet, High-Fat , Female , Hepatocytes/metabolism , Insulin Resistance , Lipid Peroxidation , Liver/metabolism , Male , Mice , Mice, Inbred C57BL , Oxidative Stress , RNA, Messenger/metabolism , Telomere/metabolism , Telomere/ultrastructure
17.
Nat Commun ; 12(1): 2093, 2021 04 07.
Article in English | MEDLINE | ID: mdl-33828097

ABSTRACT

Telomere crisis contributes to cancer genome evolution, yet only a subset of cancers display breakage-fusion-bridge (BFB) cycles and chromothripsis, hallmarks of experimental telomere crisis identified in previous studies. We examine the spectrum of structural variants (SVs) instigated by natural telomere crisis. Eight spontaneous post-crisis clones did not show prominent patterns of BFB cycles or chromothripsis. Their crisis-induced genome rearrangements varied from infrequent simple SVs to more frequent and complex SVs. In contrast, BFB cycles and chromothripsis occurred in MRC5 fibroblast clones that escaped telomere crisis after CRISPR-controlled telomerase activation. This system revealed convergent evolutionary lineages altering one allele of chromosome 12p, where a short telomere likely predisposed to fusion. Remarkably, the 12p chromothripsis and BFB events were stabilized by independent fusions to chromosome 21. The data establish that telomere crisis can generate a wide spectrum of SVs implying that a lack of BFB patterns and chromothripsis in cancer genomes does not indicate absence of past telomere crisis.


Subject(s)
Chromothripsis , Neoplasms/genetics , Telomere/chemistry , Cell Line , Chromosomal Instability , Fibroblasts , Genome , Genomic Instability , Humans , Lung , Metaphase , Models, Biological , Telomere/ultrastructure
18.
Nature ; 593(7859): 449-453, 2021 05.
Article in English | MEDLINE | ID: mdl-33883742

ABSTRACT

Telomerase adds telomeric repeats at chromosome ends to compensate for the telomere loss that is caused by incomplete genome end replication1. In humans, telomerase is upregulated during embryogenesis and in cancers, and mutations that compromise the function of telomerase result in disease2. A previous structure of human telomerase at a resolution of 8 Å revealed a vertebrate-specific composition and architecture3, comprising a catalytic core that is flexibly tethered to an H and ACA (hereafter, H/ACA) box ribonucleoprotein (RNP) lobe by telomerase RNA. High-resolution structural information is necessary to develop treatments that can effectively modulate telomerase activity as a therapeutic approach against cancers and disease. Here we used cryo-electron microscopy to determine the structure of human telomerase holoenzyme bound to telomeric DNA at sub-4 Å resolution, which reveals crucial DNA- and RNA-binding interfaces in the active site of telomerase as well as the locations of mutations that alter telomerase activity. We identified a histone H2A-H2B dimer within the holoenzyme that was bound to an essential telomerase RNA motif, which suggests a role for histones in the folding and function of telomerase RNA. Furthermore, this structure of a eukaryotic H/ACA RNP reveals the molecular recognition of conserved RNA and protein motifs, as well as interactions that are crucial for understanding the molecular pathology of many mutations that cause disease. Our findings provide the structural details of the assembly and active site of human telomerase, which paves the way for the development of therapeutic agents that target this enzyme.


Subject(s)
Cryoelectron Microscopy , DNA/chemistry , DNA/ultrastructure , Telomerase/chemistry , Telomerase/ultrastructure , Telomere , Binding Sites , Catalytic Domain , DNA/genetics , DNA/metabolism , Histones/chemistry , Histones/metabolism , Holoenzymes/chemistry , Holoenzymes/metabolism , Holoenzymes/ultrastructure , Humans , Models, Molecular , Mutation , Nucleic Acid Conformation , Nucleotide Motifs , Protein Subunits/chemistry , Protein Subunits/metabolism , RNA/chemistry , RNA/metabolism , RNA/ultrastructure , Ribonucleoproteins/chemistry , Ribonucleoproteins/genetics , Ribonucleoproteins/metabolism , Ribonucleoproteins/ultrastructure , Telomerase/metabolism , Telomere/genetics , Telomere/metabolism , Telomere/ultrastructure
19.
Front Endocrinol (Lausanne) ; 12: 650922, 2021.
Article in English | MEDLINE | ID: mdl-33763035

ABSTRACT

Background: Telomere length and telomerase are associated in development of cardiovascular diseases. Study aims to investigate the associations of TERC and TERT gene polymorphism and leukocyte telomere length (LTL) in the prognosis of acute heart failure (AHF). Methods: Total 322 patients with AHF were enrolled and divided into death and survival group according to all-cause mortality within 18 months. Seven single nucleotide polymorphisms (SNPs) of TERC and TERT were selected. Baseline characteristics, genotype distribution and polymorphic allele frequency, and genetic model were initially analyzed. Genotypes and the LTL were determined for further analysis. Results: Compared to carrying homozygous wild genotype, the risk of death in patients with mutated alleles of four SNPs- rs12696304(G>C), rs10936599(T>C), rs1317082(G>A), and rs10936601(T>C) of TERC were significantly higher. The dominant models of above were independently associated with mortality. In recessive models, rs10936599 and rs1317082 of TERC, rs7726159 of TERT were independently associated with long-term mortality. Further analysis showed, in haplotype consisting with TERC - rs12696304, rs10936599, rs1317082, and rs10936601, mutant alleles CCAC and wild alleles GTGT were significant difference between groups (P<0.05). CCAC is a risk factor and GTGT is a protective factor for AHF patients. Relative LTL decreased over age, but showed no difference between groups and genotypes. Conclusions: The SNPs of TERC and TERT are associated with the prognosis of AHF, and are the independent risk factors for predicting 18-month mortality in AHF.


Subject(s)
Heart Failure/diagnosis , Heart Failure/genetics , Leukocytes/cytology , Polymorphism, Single Nucleotide , RNA/genetics , Telomerase/genetics , Telomere/ultrastructure , Acute Disease , Aged , Alleles , Female , Gene Frequency , Genotype , Haplotypes , Homozygote , Humans , Male , Middle Aged , Prognosis , Proportional Hazards Models , Prospective Studies , Risk Factors , Treatment Outcome
20.
Cytogenet Genome Res ; 161(1-2): 70-81, 2021.
Article in English | MEDLINE | ID: mdl-33601372

ABSTRACT

Basic and molecular cytogenetic techniques were carried out in 3 Neotropical region populations of catfishes, two of Trachelyopterus galeatus (one from the marshlands of Paraguay River basin and another from Lago Catalão, Amazon River basin) and one of Trachelyopterus porosus, a sympatric population to T. galeatus from the Amazon River basin. This study aimed to describe and understand the structure and evolution of Trachelyopterus B chromosomes, mainly through physical mapping of repetitive elements. A diploid number of 58 chromosomes was found for all individuals, as well as the presence of B chromosomes. For T. porosus this is the first report of a supernumerary. The sympatric species of T. galeatus and T. porosus from Amazon River had 1-3 B chromosomes and T. galeatus from Paraguay River had 1-2 B chromosomes, all of them showed intra- and interindividual numerical variation. Two females of T. porosus exhibited a new variant B chromosome (B2), previously not seen in Auchenipteridae, which might have originated from B1 chromosomes. All B chromosomes were entirely heterochromatic. In contrast to all complement A and B2 chromosomes, in which the telomeric sequences were found in the telomeric regions, B1 chromosomes of all populations were totally marked by (TTAGGG)n probes. (GATA)n sequence sites were found through all complement A chromosomes, but B1 and B2 chromosomes exhibited only a clustered block in one of the chromosome arms. The most frequent B chromosomes (B1) in all populations/species, including those previously studied in Auchenipteridae catfishes, share the following characteristics: totally heterochromatic, small, metacentric, with accumulation of repetitive (TTAGGG)n sequences, and a low number of (GATA)n copies, which might suggest a common ancient origin in Trachelyopterus species/populations.


Subject(s)
Catfishes/genetics , Chromosomes/ultrastructure , Animals , Brazil , Chromosome Mapping , Cytogenetic Analysis , Cytogenetics , Diploidy , Female , Karyotype , Male , Microsatellite Repeats , Paraguay , Repetitive Sequences, Nucleic Acid , Telomere/ultrastructure
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