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1 ientists in advancing the field of synthetic epigenetics.
2 pathways and molecular mechanisms including epigenetics.
3 ular choreography is central to the field of epigenetics.
4 rtunities to explore in translational cancer epigenetics.
5 challenge for current and future research in epigenetics.
6 iscovered to the present day of big data and epigenetics.
7 suggest a connection between metabolism and epigenetics.
8 llmarks associated with protein turnover and epigenetics.
9 via alterations of local gene expression or epigenetics.
10 ergence of a novel mechanism coupling AS and epigenetics.
11 Bisulfite sequencing is a key methodology in epigenetics.
12 kely influence the broader research field of epigenetics.
13 field of biology referred to as the study of epigenetics.
14 one modification events studied by classical epigenetics.
15 terpret results in the fast growing field of epigenetics.
16 itable differences that could be mediated by epigenetics.
17 tting-edge measures such as metabolomics and epigenetics.
18 elopmental plasticity and may be mediated by epigenetics.
19 on the histones, is of central importance to epigenetics.
20 ging, but not yet fully elucidated, field of epigenetics.
21 link between the primed state in plants and epigenetics.
22 cium tetraurelia, a long-standing problem in epigenetics.
23 sion, and metastasis; energy metabolism; and epigenetics.
24 remodeling of nuclear factors that influence epigenetics.
25 rds developmental and environmental cues, is epigenetics.
26 on health could potentially be mediated via epigenetics.
27 een a major unresolved issue in the field of epigenetics.
28 enerated remains a major unsolved problem in epigenetics.
29 ial far-reaching implications for behavioral epigenetics.
30 ology, neuroplasticity, transcriptomics, and epigenetics.
31 k between Isl1 complexes and global cellular epigenetics.
32 es complex and link the species problem with epigenetics.
33 become one of the most researched topics in epigenetics.
34 s, telomere length homeostasis, and telosome epigenetics.
35 cDNA biology with modern cancer genomics and epigenetics.
36 rmation coded by the sequence, process named epigenetics.
37 H3K27ac indicating a possible involvement of epigenetics.
38 or understanding the ecological relevance of epigenetics.
39 ckground, we hypothesize that differences in epigenetics account for the striking functional differen
41 The importance of genetic susceptibility, epigenetics, aging, and the modern-day environment are h
42 e against generically equating chromatin and epigenetics; although many examples of epigenetics invol
44 t disease and supports a key contribution of epigenetics and a prenatal cell of origin during a criti
45 loiting the complex interplay between cancer epigenetics and cancer immunology to develop treatment r
48 omatin plasticity, cell differentiation, and epigenetics and discusses current progress and future pe
49 provide an overview of the current state of epigenetics and epigenetic therapy in AML and will descr
51 nd macromolecules such as starch and lipids, epigenetics and epigenomics, genome-wide association stu
53 Neuronal analyses such as transcriptomics, epigenetics and genome-wide association studies must be
54 study provides a link between Mtb infection, epigenetics and host immune response, which can be explo
55 the effect of various chemicals on germline epigenetics and how paternal exposure may impact the hea
56 cs is defined in opposition to developmental epigenetics and implies an absence of resetting of epige
57 tone deacetylases (HDACs) are key enzymes in epigenetics and important drug targets in cancer biology
60 y proliferation state, signalling crosstalk, epigenetics and metabolism, and propose an update on the
63 ptome, and also emphasises the importance of epigenetics and post-translational modifications in long
66 e moderately supports an association between epigenetics and schizophrenia and other psychotic disord
67 ting the lack of standardized definitions of epigenetics and the limited empirical support for potent
68 y and critical periods of brain development; epigenetics and the molecular underpinnings of biologica
71 Metabolism has been shown to integrate with epigenetics and transcription to modulate cell fate and
76 tigate the effect of genetic predisposition, epigenetics, and environmental exposures, avoiding pitfa
85 Many cancers, including STS, contain altered epigenetics, and our findings define an epigenetic mecha
87 papers in the fields of chromatin structure, epigenetics, and regulation of transcription in eukaryot
89 (cell cycle regulation, DNA damage response, epigenetics, and transcription factors) to identify addi
93 and areas of opportunity that discoveries in epigenetics are providing to the discipline of neuroscie
97 We conclude that IUGR disrupts developmental epigenetics around distal GHREs on the rat hepatic IGF-1
98 n living systems that has been implicated in epigenetics as well as in the pathologies of various can
99 re recent translational research programs in epigenetics as well as the challenges inherent in the in
100 rmation independent of the DNA sequence, the epigenetics, as well as gene transcription are profoundl
102 hizophrenia and other psychotic disorders to epigenetics, based on PubMed and Web of Science database
104 polymorphism poses an intriguing problem in epigenetics because it requires the unequal treatment of
105 of RNA-binding proteins can drive a form of epigenetics beyond the chromosome, instilling adaptive g
106 plicates regulation involving metabolism and epigenetics, beyond EMT driven by injury and repair in c
108 t oxygenases are essential regulators of RNA epigenetics by serving as erasers of one-carbon marks on
109 icity and highlight how patient genetics and epigenetics can facilitate researchers and clinicians in
110 use of the terms chromatin modifications and epigenetics can help separate the biochemical mechanisms
112 regulators (CRs), which are indispensable in epigenetics, can mediate HMs to adjust chromatin structu
113 ns on several topics including: genetics and epigenetics; cancer origin and evolution; microenvironme
114 hrough complex effects on genetic stability, epigenetics, cellular metabolism, proliferation, and sur
115 There is continued interest in the plant epigenetics community in trying to understand the broade
119 birth cohorts in the Pregnancy And Childhood Epigenetics Consortium, we find that DNA methylation in
124 ll type profiles, a majority of genomics and epigenetics data relies on the "reference-free deconvolu
126 ll also highlight recent successes in cancer epigenetics drug discovery and consider important factor
127 cial insects are promising model systems for epigenetics due to their immense morphological and behav
129 ed the Workshop on Mitochondria, Energetics, Epigenetics, Environment, and DNA Damage Response on 25-
132 tabolic targets, including those involved in epigenetics, Fe-S biogenesis, and glycine biology, for d
135 also deficient along with other biologic and epigenetics findings in the tumor microenvironment, conf
136 eview, we briefly outline some principles of epigenetics, focusing on highlighting important consider
138 th respect to the translational relevance of epigenetics for the study of psychopathology and to cons
140 al signals have transformed our knowledge of epigenetics from a collection of curious biological phen
141 a personal perspective on the development of epigenetics, from its historical origins to what we defi
143 advances highlighting the interplay between epigenetics, genetics, and cell-to-cell signaling in can
144 the immunophenotype, biological properties, epigenetics, genetics, and clinical associations of huma
145 information is relevant to gene regulation, epigenetics, genome-wide association studies, evolutiona
146 of genetics, recent work (e.g. in genomics, epigenetics, genomic plasticity) obliges us to criticall
156 ics, lymphocytic mitochondrial outcomes, and epigenetics (histone H3 Lys-4 trimethylation and 5-methy
157 sist latently for years by manipulating host epigenetics; however, its molecular essence remains undi
158 te improved measurements of host (genomics), epigenetics, identification of agents (metabolomics, pro
160 ts to identify changes in paternal germ cell epigenetics in association with offspring disease risk,
165 ssion in early sepsis, suggesting a role for epigenetics in coordinating the response to infection.
168 been some progress in revealing the role of epigenetics in ecological processes, studies with non-mo
169 be recalibrated to improve understanding of epigenetics in hard-to-access tissues (e.g. atrium) and
171 tic risk, and point to the potential role of epigenetics in mediating exposure effects on transcripti
172 veral studies that have revealed the role of epigenetics in multigenerational transmission of develop
173 marize our knowledge about transgenerational epigenetics in plants, which entails heritable changes i
174 d DNA from Eschericia coli, phosphorothioate epigenetics in Salmonella enterica Cerro 87, and oxidati
175 ecent research suggests an important role of epigenetics in shaping and maintaining cell identity in
176 nd clinical diagnosis may suggest a role for epigenetics in T1D pathogenesis; however, functional val
177 olism (cellular and whole body), the role of epigenetics in the developing prenatal and postnatal bra
178 gs define a crucial role of deregulated 5hmC epigenetics in the events leading to AD neurodegeneratio
185 ystems-level approach highlights the role of epigenetics in WS, and provides a possible explanation f
186 ndividual regulatory process that constitute epigenetics, including DNA methylation, histone modifica
189 he challenges inherent in the integration of epigenetics into developmental and clinical psychology.
191 n and epigenetics; although many examples of epigenetics involve chromatin changes, those chromatin c
192 ries, we suggest here a framework for cancer epigenetics involving three types of genes: 'epigenetic
198 prisingly, it is also becoming apparent that epigenetics is intimately involved in neurological disea
203 ce the human genome was sequenced, the term "epigenetics" is increasingly being associated with the h
207 ide methylation patterns, and to what extent epigenetics may be involved in environmental stress resp
210 control of normal stem cell differentiation, epigenetics may offer a useful arena to develop strategi
213 te that non-clinical factors (e.g. genetics, epigenetics) may have more potential to predict longer t
215 tle is known about a possible direct role of epigenetics, mediated by 24-nt sRNAs, in the induction o
216 inases and intracellular signaling pathways, epigenetics, metabolism, nuclear-cytoplasmic transport,
219 involved in inflammation, oxidative stress, epigenetics, mitochondrial dysfunction, the gut microbio
222 at affects potential markers associated with epigenetics, neuronal, glial, and vascular components of
223 rapidly take a snapshot of the genetics and epigenetics of each specific human centromere in nondisj
225 tant questions about gene expression and the epigenetics of Goltz syndrome-associated mutations and t
227 nsiders selected updates on the genetics and epigenetics of smoking behavior and associated cardiovas
228 This Review summarizes recent studies in the epigenetics of social behaviour and offers perspectives
229 issue, and open a new era of research on the epigenetics of stem cell aging that may represent therap
230 opose two key principles that may govern the epigenetics of stress and glucocorticoids along the life
231 the development of osteoarthritis, however, epigenetics of subchondral bone has not been extensively
232 deficient GIST that faithfully maintains the epigenetics of the parental tumour, including hypermethy
233 s demonstrate that targeting MUC1-C disrupts epigenetics of the PARP1 complex, inhibits PARP1 activit
237 r macrophages by targeting immunometabolism, epigenetics, or the cytokine milieu holds promise in res
238 The Keystone Symposium on Chromatin and Epigenetics, organized by Luciano Di Croce (Center for G
241 ected from Caucasian cohorts have found that epigenetics, particularly cytosine methylation, could pl
242 and psychiatric disorders, it is unclear how epigenetics, particularly DNA methylation, relate to bra
243 ave been made in our understanding of cancer epigenetics, particularly regarding aberrant DNA methyla
249 methylation have not established population-epigenetics principles to guide design, efficient statis
250 National Institutes of Health (NIH) Roadmap Epigenetics Program have now annotated more than 80% of
251 nscriptome, post-transcriptional regulation, epigenetics, proteomics, metabolomics, and the microbiom
259 ratio and OXPHOS, and eventually upregulate epigenetics remodeling complex SWI/SNF in CHME-5 cells.
262 m, we explore how non-human animal research, epigenetics research and genome-wide association studies
263 Here, we summarize current progress on HBV epigenetics research and the therapeutic implications fo
264 er the state of the science in environmental epigenetics research and to focus on DNA methylation and
268 field of biomedicine during the last years, epigenetics research is surprisingly very limited in eco
269 erves as a central experimental technique in epigenetics research, yet there are serious drawbacks: i
274 at the intersection between neurobiology and epigenetics, Rett syndrome (RTT) has garnered intense in
275 sents a new area to explore in translational epigenetics.Significance: This study offers a first look
276 We silenced 608 genes in parallel using an epigenetics siRNA library and used an unbiased Fourier a
277 ding the role of PRMTs in stem cell biology, epigenetics, splicing, immune surveillance and the DNA d
280 variant counterparts, is an entire branch of epigenetics that has received limited attention in the b
281 RE (gene expression prediction by long-range epigenetics), that quantifies the collective effects of
282 ancements suggest a potentially key role for epigenetics - the regulation of gene expression by nonco
284 To begin to understand the contribution of epigenetics to ASD, we have examined DNA methylation (DN
286 es, and the existing human sepsis studies in epigenetics to demonstrate that epigenetic mechanisms ar
291 to discuss the relevance of research in pain epigenetics to patients with persistent pain after thora
292 ic analyses to elucidate the contribution of epigenetics to plant phenotypes, stress responses, adapt
294 ion and highlight the major contributions of epigenetics, transcription factors, and nuclear architec
296 ic sessions on clinical trials, genetics and epigenetics, tumor microenvironment, immune suppression,
297 rmore, metabolic alterations directly impact epigenetics well beyond classical mechanisms of tumor pa
298 ucts is a powerful tactic to study bacterial epigenetics, which is poised to make novel and far-reach
299 across generations, clarify the interplay of epigenetics with genetics and sex, and suggest that CpG
300 ) plasticity, niche construction theory, and epigenetics with transgenerational epigenetic inheritanc