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1 ' resources and high-throughput based assays are beginning to accelerate antiviral drug discovery and
7 stem cell biology and regenerative medicine are beginning to advance and refine our understanding of
8 archers build on this early foundation, they are beginning to advance the field towards more fine-gra
9 dy of atherosclerosis, and our new knowledge is beginning to affect how we treat this ubiquitous dise
10 cellular mechanisms, novel treatment options are beginning to appear for a number of specific conditi
16 , the climate science and policy communities are beginning to assess the feasibility and potential be
17 orthologous phenotypes and cell types, which are beginning to be addressed by emerging technologies.
18 eview, we discuss analytical approaches that are beginning to be applied to help synthesize the vast
19 teomic analyses, newer non-gel-based methods are beginning to be applied to overcome throughput and c
20 rited platelet disorders, and these findings are beginning to be applied to the genetic diagnosis of
21 ole in intercellular communication, exosomes are beginning to be appreciated as agents of immunoregul
24 ways responsible for alpha-granule formation are beginning to be assembled as a result of the charact
25 ll as of invertebrate tricellular junctions, are beginning to be characterized, many questions remain
27 s (DUBs) that function in the nervous system are beginning to be defined, but the mechanisms that con
28 eptor (NLR) family member NLRP3 inflammasome are beginning to be defined, little is known about the m
29 e phenomena such as neutrophil migration and are beginning to be developed for diagnostic application
30 hanisms that govern glia-mediated regulation are beginning to be discovered, but much remains unknown
32 of Wnts and Wnt amplifers such as R-spondins are beginning to be elucidated as well as their function
33 Cellular events monitored by this checkpoint are beginning to be elucidated, yet signaling pathways u
37 in and gene expression, but importantly they are beginning to be essential players in genome organiza
38 rapies based on knowledge of viral functions are beginning to be evaluated, mostly in preclinical mod
42 pounds, scaffolds, and biological activities are beginning to be globally explored, beyond individual
43 mponents underlying this rapid communication are beginning to be identified, such as the ROS producin
46 r mechanisms of external genital development are beginning to be identified; however, the origin of c
47 pathologies, and microbiome-based approaches are beginning to be implemented in the clinic for diagno
49 ough these sources of experimental artefacts are beginning to be recognized and managed(11,12), conce
50 thways underlying islet cell differentiation are beginning to be resolved, the cellular basis of isle
51 nsequences of individual m(6)A modifications are beginning to be revealed, but the effects of m(5)C a
54 which can be used to augment rehabilitation, are beginning to be studied in the context of their effe
55 In turn, the results of scientific studies are beginning to be translated back to the bedside to im
56 ce to other neurodegenerative conditions and are beginning to be translated into clinical trials.
57 h fibroblasts and promote tissue remodelling are beginning to be understood and will be an important
58 rimary cilium formation and ciliary motility are beginning to be understood, but little is known abou
59 mitochondrial movement toward axon terminals are beginning to be understood, the frequency and functi
60 gh many aspects of optic pathway development are beginning to be understood, the mechanisms promoting
61 at initially orient the left-right body axis are beginning to be understood, the mechanisms that shap
69 tion of post-transcriptional gene expression are beginning to be unveiled, the precise roles of m(6)A
70 n cancer care, a precision medicine approach is beginning to be adapted to cognitive impairment and d
71 rognosing the associated outcomes, its value is beginning to be appreciated, and the genomics revolut
72 ical elements to cell polarity and migration is beginning to be appreciated, underlying mechanisms ar
73 tion capabilities, in therapeutic resistance is beginning to be better understood, the significance o
77 by the World Health Organization in 2017 and is beginning to be introduced in countries around the wo
79 tween RNA splicing and histone modifications is beginning to be recognized, a lack of knowledge exist
87 ed and massively parallel genomic sequencing is beginning to be used in clinical practice to determin
88 r large-scale genome sequencing projects and is beginning to be used in the clinical diagnostic testi
92 epigenetic enzymes in specific brain regions are beginning to build causal links between these epigen
96 and allele discovery for various conditions, is beginning to challenge classic definitions of genetic
97 ation and damage limitation during infection is beginning to change perspectives on infectious diseas
100 area have accumulated, new areas of emphasis are beginning to characterize the determinants of variab
101 gineering by endothelializing these networks is beginning to close the gap between in-vitro and in-vi
102 g Genetics through Meta Analysis) consortium are beginning to collect data in large quantity and to c
103 kingdom, transkingdom, and immune cross talk are beginning to come into focus, setting the stage for
105 ough exome- and genome-sequencing approaches are beginning to compete, disease-targeted testing retai
106 ype (e.g., feeding, pollination), ecologists are beginning to consider networks which combine multipl
107 aging gene x environment interaction (iGxE), is beginning to contribute to our understanding of the n
108 eks to eliminate trachoma by 2020, countries are beginning to control the transmission of trachomatou
109 and activity-dependent modes of myelination are beginning to crystallize in a model of myelin plasti
112 ystem to a proinflammatory phenotype, and we are beginning to delineate the reciprocal influence of o
117 role in hair or feather bud development, we are beginning to discover that multiple mechanisms may,
118 as more bacterial genomes are sequenced, we are beginning to discover their prevalence and their dif
120 have led to a renaissance in this field and are beginning to dissect circuit mechanisms in the basal
122 ation; hence even the earliest mammaliaforms were beginning to diversify--morphologically, functional
123 Systems-level, integrative pathway analyses are beginning to elucidate the additive, polygenic contr
124 developments in RNA sequencing technologies are beginning to elucidate the cellular diversity presen
126 composition of dorsal-horn networks, studies are beginning to elucidate the intricate computational l
127 of miRNA biogenesis and modes of action, and are beginning to elucidate the mechanisms of miRNA degra
129 nce, it is not surprising that disease links are beginning to emerge and that interference with sumoy
130 in particular, the areas of convergence that are beginning to emerge from multiple study designs.
132 nd NF2 genes, molecularly targeted therapies are beginning to emerge, as a result of a deeper underst
133 indings from genome-wide association studies are beginning to emerge, as are discoveries of large-eff
134 ssically cytoplasmic proteins in the nucleus are beginning to emerge, in particular, as participants
135 differentiation in normal tissue homeostasis are beginning to emerge, it is still unclear whether can
136 h intriguing roles for plant linker histones are beginning to emerge, much of our current understandi
138 ation is still lacking, but important themes are beginning to emerge, primarily in budding yeast.
154 erlying ligand-dependent receptor activation is beginning to emerge with the recent expansion in GPCR
155 tural information on ABC sterol transporters is beginning to emerge, with published structures of ABC
156 Although the role of 5-LO in tumor cells is beginning to emerge, with the notion that tumor-promo
163 ruses transform cells into a malignant state was beginning to emerge as the first viral genomic seque
164 sms underlying nonclear cell variants of RCC are beginning to engender novel therapeutic strategies d
165 ating regenerative strategies in RPE disease are beginning to enroll subjects, and initial results su
166 as well as novel experimental manipulations, are beginning to erode many of these established concept
167 articles from the peer-reviewed literature, is beginning to erode the trust of both the scientific c
168 ed information from human and animal studies is beginning to expand insights regarding neurobiologica
169 ohormonal, vascular, and coagulation systems are beginning to explain how this haemostatic impairment
171 oss the globe have large shale resources and are beginning to explore extraction of these resources.
172 asingly becoming more networked, researchers are beginning to explore how social media can be used to
173 omic gas Bose-Einstein condensates, research is beginning to focus on the roles of vortices in quantu
176 Three-dimensional (3D) imaging technologies are beginning to have significant impact in the field of
179 R and highlight the way in which AHR testing is beginning to highlight distinct abnormalities associa
181 rieties of maize, teosinte and other grasses are beginning to identify the genes responsible for the
182 l (hPSC)-based platforms have emerged, which are beginning to illuminate the current black box state
183 in part by an interest in tumor metabolism, are beginning to illuminate the mechanisms through which
184 gs of Rett syndrome, and to what extent they are beginning to impact our understanding and management
185 cians, as well as public and private payers, are beginning to implement alternative delivery and paym
186 echniques, it is encouraging that guidelines are beginning to include evidence from robust observatio
190 p and laptop usage, scientists and educators are beginning to integrate mobile devices into their res
191 neering liver-experimental and computational-are beginning to interplay toward greater illumination o
192 amsters to study acute social stress, and we are beginning to investigate the genetic mechanisms subs
198 r own unconventional petroleum resources and are beginning to move forward with development, thus cal
199 equivalents that mimic mechanical signaling are beginning to offer exciting new methods for improvin
202 cations in different fields of investigation are beginning to prove the relevance and effectiveness o
204 perturbation and systems-biology approaches are beginning to provide a glimpse of how natural popula
205 metabolomics, particularly in the human gut, are beginning to provide a new route to identify functio
214 communities across all aquatic environments are beginning to provide insights into the ecology of mi
217 rvey how the recent developments in genetics are beginning to provide social scientists with a powerf
219 of SELEX with novel sequencing technologies is beginning to provide the data that will allow the exa
220 the genetic relationship between T2D and CHD is beginning to provide the promise for improved prevent
221 in chemistry, radiology, and systems biology is beginning to provide useful biomarkers, and the emerg
222 ., folkphysics, folkpsychology, folkbiology) are beginning to query the domains themselves and offer
223 astatic or locally advanced solid tumors who were beginning to receive a course of chemotherapy were
224 I am grateful for the recognition, and I am beginning to recognize that having an atypical backgr
226 or the direct functionalization of C-H bonds are beginning to reshape the field of retrosynthetic ana
227 strate the ways in which simulation modeling is beginning to reshape our understanding of the domesti
228 Interdisciplinary structure-function studies are beginning to resolve the effect each interaction has
233 ide approaches for probing the transcriptome are beginning to reveal how RNA structure affects each s
234 dies on the molecular-structural association are beginning to reveal how the spatiotemporal gene expr
235 teractions with their host; new technologies are beginning to reveal important aspects of host-microb
236 deling of upconverting nanoparticles (UCNPs) are beginning to reveal the complex details of their ene
238 of DNA methylation and histone modifications are beginning to reveal the landscape of cancer-specific
239 of high fidelity structural information and are beginning to reveal the macromolecular organization
240 tional, and electrophysiological experiments are beginning to reveal the mechanism of action of parti
241 Although cancer genome sequencing studies are beginning to reveal the mutational patterns of genes
242 organization at unprecedented resolution and are beginning to reveal the ways that cells co-opt the s
243 owever, rapid progress in the last few years is beginning to reveal a surprisingly diverse set of pat
245 ingly computational nature of social science is beginning to reverse this traditional bias against pr
247 he recreational use of Ketamine increases we are beginning to see the signs of major renal and bladde
248 reatment, this area of molecular diagnostics is beginning to see an upsurge in biotechnological advan
249 Emerging methods to infer cellular functions are beginning to shed new light on the interplay of comp
252 arostat, despite their technical challenges, are beginning to show promise in clinical practice.
254 the brain, and how some recent human trials are beginning to show some promise as to the effectivene
255 arch in animal models of Parkinson's disease is beginning to show exercise-induced neuroplastic effec
257 Progress in understanding sterolin function is beginning to show that xenosterols can be toxic and a
258 , new applications of ecohydrological models are beginning to simulate small-scale water movement pro
259 y to molecular markers to targeted therapies are beginning to solidify the identification of select m
260 ental requirements and function of MPS cells are beginning to solve this problem in an objective mann
262 number of curved and helical Proteobacteria is beginning to suggest possible mechanisms and provide
263 microscale devices and bioprinted 3D tissues are beginning to supplant traditional 2D cell cultures a
265 ing and controlling matter at the microscale are beginning to take hold, suggesting new modular appro
266 ns of these different chemical modifications is beginning to take shape, but it's clear that in both
268 logists in providing high-resolution insight is beginning to transform drug discovery efforts, and th
269 ective therapies for mitochondrial disorders are beginning to translate from bench to bedside along t
270 mediate TLS and describe how this knowledge is beginning to translate into the development of small
272 l groups and genome-wide association studies are beginning to uncover the complex genetic architectur
273 iven experiments and new modeling techniques are beginning to uncover the general control principles
277 ion and super-resolution imaging studies, we are beginning to understand how the ULK1 and PI3KC3-C1 c
278 005, but after 10 years of investigation, we are beginning to understand how they are organized in th
284 vel investigation of the neonatal microbiome is beginning to unearth substantial information, with a
286 ughs in structural and computational biology are beginning to unravel the mechanistic basis of GPCR a
289 ecent genomic and in-vivo biological studies are beginning to unveil the molecular drivers of follicu
291 microbiology and public health laboratories are beginning to utilize next-generation sequencing (NGS
292 approaches examining regional neurochemistry are beginning to yield additional insights with regard t
293 velopment and summarize recent findings that are beginning to yield important insights into deuterost
294 nstitution and their homeostatic maintenance are beginning to yield improved mouse strains to create
295 ved cells in vitro, and co-culture platforms are beginning to yield insights into the complex interac
296 to a renaissance in the study of the BF and are beginning to yield new insights about cell-type-spec
298 cular networks driving vaccine immunity, and are beginning to yield novel insights about the immune s
300 Tandem catalysis is a growing field that is beginning to yield important scientific and technolog