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Related papers: Characteristics of transposable element exonizatio…

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Background: Transposed elements (TEs) have a substantial impact on mammalian evolution and are involved in numerous genetic diseases. We compared the impact of TEs on the human transcriptome and the mouse transcriptome. Results: We compiled…

Genomics · Quantitative Biology 2008-11-24 Noa Sela , Britta Mersch , Nurit Gal-Mark , Galit Lev-Maor , Agnes Hotz- Wagenblatt , Gil Ast

Background: Transposed elements (TEs) are known to affect transcriptomes, because either new exons are generated from intronic transposed elements (this is called exonization), or the element inserts into the exon, leading to a new…

Genomics · Quantitative Biology 2008-11-24 Britta Mersch , Noa Sela , Gil Ast , Sandor Suhai , Agnes Hotz- Wagenblatt

Background: Transposable elements (TEs) have played an important role in the diversification and enrichment of mammalian transcriptomes through various mechanisms such as exonization and intronization (the birth of new exons/introns from…

Genomics · Quantitative Biology 2010-06-17 Noa Sela , Eddo Kim , Gil Ast

Transposed elements (TEs) are mobile genetic sequences. During the evolution of eukaryotes TEs were inserted into active protein-coding genes, affecting gene structure, expression and splicing patterns, and protein sequences. Genomic…

Genomics · Quantitative Biology 2008-11-24 Asaf Levy , Noa Sela , Gil Ast

Background: Gene duplication and exonization of intronic transposed elements are two mechanisms that enhance genomic diversity. We examined whether there is less selection against exonization of transposed elements in duplicated genes than…

Genomics · Quantitative Biology 2008-11-24 Maayan Amit , Noa Sela , Hadas Keren , Zeev Melamed , Inna Muler , Noam Shomron , Shai Izraeli , Gil Ast

Examination of the human transcriptome reveals higher levels of RNA editing than in any other organism tested to date. This is indicative of extensive double-stranded RNA (dsRNA) formation within the human transcriptome. Most of the editing…

Genomics · Quantitative Biology 2008-11-24 Galit Lev-Maor , Oren Ram , Eddo Kim , Noa Sela , Amir Goren , Erez Y Levanon , Gil Ast

The genes of eukaryotes are characterized by protein coding fragments, the exons, interrupted by introns, i.e. stretches of DNA which do not carry any useful information for the protein synthesis. We have analyzed the melting behavior of…

Biomolecules · Quantitative Biology 2009-11-10 Enrico Carlon , Mehdi Lejard Malki , Ralf Blossey

Alternative cassette exons are known to originate from two processes exonization of intronic sequences and exon shuffling. Herein, we suggest an additional mechanism by which constitutively spliced exons become alternative cassette exons…

Transposable elements, or transposons, are DNA sequences that can jump from site to site in the genome during the life cycle of a cell, usually encoding the very enzymes which perform their excision. However, some transposons are parasitic,…

Populations and Evolution · Quantitative Biology 2016-11-16 Chi Xue , Nigel Goldenfeld

The Dissertation is focused on the studies of associations between functional elements in human genome and their nucleotide structure. The asymmetry in nucleotide content (skew, bias) was chosen as the main feature for nucleotide structure.…

Genomics · Quantitative Biology 2011-01-04 Diana Duplij

A-To-I RNA editing is common to all eukaryotes, associated with various neurological functions. Recently, A-to-I editing was found to occur abundantly in the human transcriptome. Here we show that the frequency of A-to-I editing in humans…

Genomics · Quantitative Biology 2007-05-23 Eli Eisenberg , Sergey Nemzer , Yaron Kinar , Rotem Sorek , Gideon Rechavi , Erez Y. Levanon

A major challenge in biology is explaining how novel characters originate, however, the molecular mechanisms that underlie the emergence of evolutionary innovations are unclear. Here we show that while gene expression in the uterus evolves…

How natural selection acts to limit the proliferation of transposable elements (TEs) in genomes has been of interest to evolutionary biologists for many years. To describe TE dynamics in populations, many previous studies have used models…

Populations and Evolution · Quantitative Biology 2014-03-04 Justin P. Blumenstiel , Xi Chen , Miaomiao He , Casey M. Bergman

Topological entropy has been one of the most difficult to implement of all the entropy-theoretic notions. This is primarily due to finite sample effects and high-dimensionality problems. In particular, topological entropy has been…

Quantitative Methods · Quantitative Biology 2015-03-18 David Koslicki

Transposable elements (TEs) constitute a significant portion of eukaryotic genomes, yet their role in chromatin organization remains poorly understood. This study investigates the distribution patterns of TEs around chromatin ligation…

Other Quantitative Biology · Quantitative Biology 2024-08-22 Alexandr V. Vikhorev , Michael M. Rempel , Oksana O. Polesskaya , Ivan V. Savelev , Max V. Myakishev-Rempel

Protein folding and evolution are intimately linked phenomena. Here, we revisit the concept of exons as potential protein folding modules across 38 abundant and conserved protein families. Taking advantage of genomic exon-intron…

Biomolecules · Quantitative Biology 2024-01-05 Ezequiel A. Galpern , Hana Jaafari , Carlos Bueno , Peter G. Wolynes , Diego U. Ferreiro

Transposable Elements (TEs) or jumping genes are the DNA sequences that have an intrinsic capability to move within a host genome from one genomic location to another. Studies show that the presence of a TE within or adjacent to a…

Machine Learning · Computer Science 2019-08-27 Manisha Panta , Avdesh Mishra , Md Tamjidul Hoque , Joel Atallah

The nucleotide composition of human genes with a special emphasis on transcription-related strand asymmetries is analyzed. Such asymmetries may be associated with different mutational rates in two principal factors. The first one is…

Quantitative Methods · Quantitative Biology 2010-11-10 Diana Duplij

The hominid-specific non-LTR retrotransposon termed SINE VNTR Alu (SVA) is the youngest of the transposable elements in the human genome. The propagation of the most ancient SVA type A took place about thirteen millions years ago ago, and…

Neurons and Cognition · Quantitative Biology 2016-03-01 Olga Vasieva , Sultan Cetiner , Abigail Savage , Gerald G. Schumann , Vivien J Bubb , John P Quinn

Genome rearrangements are evolutionary events that shuffle genomic architectures. Most frequent genome rearrangements are reversals, translocations, fusions, and fissions. While there are some more complex genome rearrangements such as…

Genomics · Quantitative Biology 2015-04-07 Nikita Alexeev , Rustem Aidagulov , Max A. Alekseyev
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