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1.
Genome Res ; 26(4): 417-26, 2016 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-26916109

RESUMEN

Although previous studies have documented a bottleneck in the transmission of mtDNA genomes from mothers to offspring, several aspects remain unclear, including the size and nature of the bottleneck. Here, we analyze the dynamics of mtDNA heteroplasmy transmission in the Genomes of the Netherlands (GoNL) data, which consists of complete mtDNA genome sequences from 228 trios, eight dizygotic (DZ) twin quartets, and 10 monozygotic (MZ) twin quartets. Using a minor allele frequency (MAF) threshold of 2%, we identified 189 heteroplasmies in the trio mothers, of which 59% were transmitted to offspring, and 159 heteroplasmies in the trio offspring, of which 70% were inherited from the mothers. MZ twin pairs exhibited greater similarity in MAF at heteroplasmic sites than DZ twin pairs, suggesting that the heteroplasmy MAF in the oocyte is the major determinant of the heteroplasmy MAF in the offspring. We used a likelihood method to estimate the effective number of mtDNA genomes transmitted to offspring under different bottleneck models; a variable bottleneck size model provided the best fit to the data, with an estimated mean of nine individual mtDNA genomes transmitted. We also found evidence for negative selection during transmission against novel heteroplasmies (in which the minor allele has never been observed in polymorphism data). These novel heteroplasmies are enhanced for tRNA and rRNA genes, and mutations associated with mtDNA diseases frequently occur in these genes. Our results thus suggest that the female germ line is able to recognize and select against deleterious heteroplasmies.


Asunto(s)
ADN Mitocondrial , Familia , Heterogeneidad Genética , Patrón de Herencia , Población Blanca/genética , Alelos , Femenino , Frecuencia de los Genes , Humanos , Masculino , Modelos Genéticos , Modelos Estadísticos , Mutación , Países Bajos , Polimorfismo Genético , Selección Genética , Gemelos
2.
Nucleic Acids Res ; 45(7): 4108-4119, 2017 04 20.
Artículo en Inglés | MEDLINE | ID: mdl-27994029

RESUMEN

Riboswitches have gained attention as tools for synthetic biology, since they enable researchers to reprogram cells to sense and respond to exogenous molecules. In vitro evolutionary approaches produced numerous RNA aptamers that bind such small ligands, but their conversion into functional riboswitches remains difficult. We previously developed a computational approach for the design of synthetic theophylline riboswitches based on secondary structure prediction. These riboswitches have been constructed to regulate ligand-dependent transcription termination in Escherichia coli. Here, we test the usability of this design strategy by applying the approach to tetracycline and streptomycin aptamers. The resulting tetracycline riboswitches exhibit robust regulatory properties in vivo. Tandem fusions of these riboswitches with theophylline riboswitches represent logic gates responding to two different input signals. In contrast, the conversion of the streptomycin aptamer into functional riboswitches appears to be difficult. Investigations of the underlying aptamer secondary structure revealed differences between in silico prediction and structure probing. We conclude that only aptamers adopting the minimal free energy (MFE) structure are suitable targets for construction of synthetic riboswitches with design approaches based on equilibrium thermodynamics of RNA structures. Further improvements in the design strategy are required to implement aptamer structures not corresponding to the calculated MFE state.


Asunto(s)
Regulación de la Expresión Génica , Riboswitch , Terminación de la Transcripción Genética , Aptámeros de Nucleótidos/química , Biología Computacional/métodos , Simulación por Computador , Escherichia coli/genética , Genes Reporteros , Conformación de Ácido Nucleico , Riboswitch/efectos de los fármacos , Estreptomicina/farmacología , Tetraciclina/farmacología
3.
PLoS Genet ; 12(3): e1005939, 2016 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-26978189

RESUMEN

The mitochondrial (mt) genome is present in many copies in human cells, and intra-individual variation in mtDNA sequences is known as heteroplasmy. Recent studies found that heteroplasmies are highly tissue-specific, site-specific, and allele-specific, however the functional implications have not been explored. This study investigates variation in mtDNA copy numbers (mtCN) in 12 different tissues obtained at autopsy from 152 individuals (ranging in age from 3 days to 96 years). Three different methods to estimate mtCN were compared: shotgun sequencing (in 4 tissues), capture-enriched sequencing (in 12 tissues) and droplet digital PCR (ddPCR, in 2 tissues). The highest precision in mtCN estimation was achieved using shotgun sequencing data. However, capture-enrichment data provide reliable estimates of relative (albeit not absolute) mtCNs. Comparisons of mtCN from different tissues of the same individual revealed that mtCNs in different tissues are, with few exceptions, uncorrelated. Hence, each tissue of an individual seems to regulate mtCN in a tissue-related rather than an individual-dependent manner. Skeletal muscle (SM) samples showed an age-related decrease in mtCN that was especially pronounced in males, while there was an age-related increase in mtCN for liver (LIV) samples. MtCN in SM samples was significantly negatively correlated with both the total number of heteroplasmic sites and with minor allele frequency (MAF) at two heteroplasmic sites, 408 and 16327. Heteroplasmies at both sites are highly specific for SM, accumulate with aging and are part of functional elements that regulate mtDNA replication. These data support the hypothesis that selection acting on these heteroplasmic sites is reducing mtCN in SM of older individuals.


Asunto(s)
Factores de Edad , Variaciones en el Número de Copia de ADN/genética , ADN Mitocondrial/genética , Genoma Mitocondrial/genética , Anciano , Replicación del ADN/genética , Frecuencia de los Genes/genética , Humanos , Masculino , Mitocondrias Hepáticas/genética , Mitocondrias Hepáticas/metabolismo , Músculo Esquelético/metabolismo , Especificidad de Órganos
4.
RNA Biol ; 12(2): 221-31, 2015.
Artículo en Inglés | MEDLINE | ID: mdl-25826571

RESUMEN

Riboswitches are RNA-based regulators of gene expression composed of a ligand-sensing aptamer domain followed by an overlapping expression platform. The regulation occurs at either the level of transcription (by formation of terminator or antiterminator structures) or translation (by presentation or sequestering of the ribosomal binding site). Due to a modular composition, these elements can be manipulated by combining different aptamers and expression platforms and therefore represent useful tools to regulate gene expression in synthetic biology. Using computationally designed theophylline-dependent riboswitches we show that 2 parameters, terminator hairpin stability and folding traps, have a major impact on the functionality of the designed constructs. These have to be considered very carefully during design phase. Furthermore, a combination of several copies of individual riboswitches leads to a much improved activation ratio between induced and uninduced gene activity and to a linear dose-dependent increase in reporter gene expression. Such serial arrangements of synthetic riboswitches closely resemble their natural counterparts and may form the basis for simple quantitative read out systems for the detection of specific target molecules in the cell.


Asunto(s)
Diseño de Fármacos , Riboswitch , Transcripción Genética , Escherichia coli/genética , Escherichia coli/metabolismo , Genes Reporteros , Proteínas Fluorescentes Verdes/genética , Proteínas Fluorescentes Verdes/metabolismo , Datos de Secuencia Molecular , Conformación de Ácido Nucleico , Relación Estructura-Actividad , Biología Sintética , Teofilina/química , Termodinámica , beta-Galactosidasa/genética , beta-Galactosidasa/metabolismo
5.
Nucleic Acids Res ; 41(4): 2541-51, 2013 Feb 01.
Artículo en Inglés | MEDLINE | ID: mdl-23275562

RESUMEN

Riboswitches are regulatory RNA elements typically located in the 5'-untranslated region of certain mRNAs and control gene expression at the level of transcription or translation. These elements consist of a sensor and an adjacent actuator domain. The sensor usually is an aptamer that specifically interacts with a ligand. The actuator contains an intrinsic terminator or a ribosomal binding site for transcriptional or translational regulation, respectively. Ligand binding leads to structural rearrangements of the riboswitch and to presentation or masking of these regulatory elements. Based on this modular organization, riboswitches are an ideal target for constructing synthetic regulatory systems for gene expression. Although riboswitches for translational control have been designed successfully, attempts to construct synthetic elements regulating transcription have failed so far. Here, we present an in silico pipeline for the rational design of synthetic riboswitches that regulate gene expression at the transcriptional level. Using the well-characterized theophylline aptamer as sensor, we designed the actuator part as RNA sequences that can fold into functional intrinsic terminator structures. In the biochemical characterization, several of the designed constructs show ligand-dependent control of gene expression in Escherichia coli, demonstrating that it is possible to engineer riboswitches not only for translational but also for transcriptional regulation.


Asunto(s)
Regulación de la Expresión Génica , Riboswitch , Regiones Terminadoras Genéticas , Terminación de la Transcripción Genética , Aptámeros de Nucleótidos/química , ARN/química , Riboswitch/efectos de los fármacos , Teofilina/farmacología , Terminación de la Transcripción Genética/efectos de los fármacos
6.
Sci Rep ; 9(1): 11219, 2019 08 02.
Artículo en Inglés | MEDLINE | ID: mdl-31375696

RESUMEN

Mitochondrial DNA (mtDNA) heteroplasmy (intra-individual variation) varies among different human tissues and increases with age, suggesting that the majority of mtDNA heteroplasmies are acquired, rather than inherited. However, the extent to which heteroplasmic sites are shared across a tissue remains an open question. We therefore investigated heteroplasmy in two liver samples (one from each primary lobe) from 83 Europeans, sampled at autopsy. Minor allele frequencies (MAF) at heteroplasmic sites were significantly correlated between the two liver samples from an individual, with significantly more sharing of heteroplasmic sites in the control region than in the non-control region. We show that this increased sharing for the control region cannot be explained by recent mutations at just a few specific heteroplasmic sites or by the possible presence of 7S DNA. Moreover, we carried out simulations to show that there is significantly more sharing than would be predicted from random genetic drift from a common progenitor cell. We also observe a significant excess of non-synonymous vs. synonymous heteroplasmies in the protein-coding region, but significantly more sharing of synonymous heteroplasmies. These contrasting patterns for the control vs. the non-control region, and for non-synonymous vs. synonymous heteroplasmies, suggest that selection plays a role in heteroplasmy sharing.


Asunto(s)
ADN Mitocondrial/genética , Genoma Mitocondrial/genética , Hígado/ultraestructura , Autopsia , Heterogeneidad Genética , Humanos , Selección Genética
7.
Methods Enzymol ; 550: 1-22, 2015.
Artículo en Inglés | MEDLINE | ID: mdl-25605378

RESUMEN

In this chapter, we review both computational and experimental aspects of de novo RNA sequence design. We give an overview of currently available design software and their limitations, and discuss the necessary setup to experimentally validate proper function in vitro and in vivo. We focus on transcription-regulating riboswitches, a task that has just recently lead to first successful designs of such RNA elements.


Asunto(s)
Riboswitch/fisiología , Secuencia de Bases/genética , Secuencia de Bases/fisiología , ARN/química , ARN/genética , Pliegue del ARN , Riboswitch/genética
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