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1 be named 'cryptic', 'pseudocryptic' or 'non-cryptic'.
2 ors, where their functions remain relatively cryptic.
3 oci encoding RiPPs but whose products remain cryptic.
4 s indicate that 1-2% of species may be truly cryptic.
5 ograft endothelium, autoantigens are usually cryptic.
7 n the beta(IVS2-654)-globin pre-mRNA such as cryptic 3' splice site, aberrant 5' splice site, cryptic
9 branchpoint recognition leading to usage of cryptic 3'-splice sites and subsequent aberrant junction
10 1, that correlated with significant usage of cryptic 3'ss known to be utilized in mutant SF3B1 expres
11 r, it is unclear how widespread this type of cryptic 3'ss usage is in cancers and what is the full sp
14 e species exploit social defences or produce cryptic acoustic signals, deep-diving beaked whales, wel
16 MY's de novo actin nucleation activity via a cryptic actin-binding sequence near JMY's N terminus, an
18 ally improved density estimates by informing cryptic activity (home range) center transiency and impr
20 l coincident binding mechanism mediated by a cryptic adhesion complex between TENs and LPHNs regulate
24 ctures of arsenic-bound p53 mutants reveal a cryptic allosteric site involving three arsenic-coordina
25 er of this approach, we apply it to discover cryptic allosteric sites in two different beta-lactamase
26 oteins, the DNA unwinding activity of Bad is cryptic and can be unmasked by inactivating the intrinsi
28 ium/long wavelength sensitive opsins both in cryptic and conspicuous species of this primate family.
29 ment associations, thereby creating a fairly cryptic and fine-scale dimension of niche differentiatio
31 coralline algal species are morphologically cryptic and their diversity has been globally underestim
33 ting an important role for autoantibodies to cryptic antigens as novel accelerators of kidney dysfunc
35 permissive conditions for the expression of cryptic autoantigens, allowing these autoantibodies to b
36 llowed transcription of an early termination cryptic axon, resulting in truncated, nonfunctional mRNA
38 and a thiophene-carboxamide, ML402-define a cryptic binding pocket unlike other ion channel small-mo
39 ee-dimensional (3D) genome organizer CTCF at cryptic binding sites, in conjunction with DNA cytosine
40 ction and characterization of allosteric and cryptic binding sites, which can be rendered "druggable"
44 uggests that the plight of this component of cryptic biodiversity is more dire than previously consid
46 -target engineered U7 snRNAs targeted to the cryptic branch point and an exonic splicing enhancer, U7
47 tic 3' splice site, aberrant 5' splice site, cryptic branch point and an exonic splicing enhancer.
48 the gene encoding cytochrome c (M) (CytM), a cryptic c-type heme protein widespread in cyanobacteria.
49 arate-dependent dioxygenases that generate a cryptic C7 beta-hydroxyl on each of the ent-kauranol and
50 y a single biosynthetic machinery, featuring cryptic C7 oxidations at the B-rings that transform the
51 es on the differentiation of lamellocytes, a cryptic cell type, dedicated to pathogen encapsulation a
54 ature termination of numerous transcripts at cryptic cleavage/polyadenylation sites in first introns.
55 ically, most TF on cell surfaces exists in a cryptic coagulant-inactive state but are transformed to
56 ultiple linked but recombining loci underlie cryptic color morphs of Timema chumash stick insects.
57 However, we found no correlation between cryptic coloration and symmetrical wing surface loss acr
59 We do so by measuring the genetic basis of cryptic colouration and survival in a field experiment w
60 beta receptors, indicating that Cripto-1 and Cryptic contact ligands at their receptor interaction su
61 to compare the diversity and composition of cryptic coralline algal assemblages at sites that differ
63 hat solvent exposure and redox regulation of cryptic cysteine residues contextually delineate redox s
64 ons indicated widespread redox regulation of cryptic cysteine residues that are solvent exposed only
65 wo distinct modes by which EGF specified the cryptic cysteine residues that became solvent exposed an
67 n ecological studies, reveals a key role for cryptic diversity in structuring communities of mutualis
68 % of the species examined and likely reflect cryptic diversity, highlighting the need for revision in
69 f irreversible tPAINT probe that exposes its cryptic docking site permanently and thus integrates for
70 ging, we engineered reversible probes with a cryptic docking site revealed only when the probe experi
73 Several metastable conformations present a cryptic drug-binding pocket near the allosteric site tha
75 t is widespread across eukaryotes, it can be cryptic due to nuclear suppression, highly variable, and
76 ies 2 (~521 Ma), suggesting a protracted but cryptic earlier history that possibly extends into the P
77 CD68(+) cells (macrophages/monocytes) as the cryptic EBOV reservoir cells in the vitreous humour and
80 seldom able to disentangle the influence of cryptic environmental variation from that of evolutionar
83 ysine with arginine at 378th position of the cryptic epitope of a Shanghai isolate, hCoV-19/Shanghai/
84 g TNF reporter is based on the exposure of a cryptic epitope on the C terminus of the transmembrane p
87 /12 CD4(+) T(EM) cell epitopes, but not with cryptic epitopes, induced HSV-specific polyfunctional IF
89 native splicing that results in inclusion of cryptic exon CE3 and translation of truncated AR protein
93 requires cell-generated forces, which expose cryptic FN-FN binding sites buried in FN Type III domain
95 n other terpene cyclases indicates that this cryptic function is broadly conserved among the greater
98 obustness properties, due the persistence of cryptic gene and pathway functions, to generate variatio
100 informatic analysis have identified numerous cryptic gene clusters that have the potential to produce
101 ediation effects suggests a critical role of cryptic gene regulation underlying many disease traits.
102 tebrate gene repertoire is characterized by "cryptic" genes whose identification has been hampered by
104 date loci associated with colony morphology, cryptic genetic structure, and apparent bleaching suscep
105 We also found many loci associated with cryptic genetic structure, yet relatively few loci assoc
109 oad repertoire of naive T cells specific for cryptic H1-HA peptides and demonstrate that antigen proc
110 e refining our ability to decipher otherwise cryptic human-mediated species translocations across the
112 K enhancer region, we detected 10 additional cryptic IGK juxtapositions to CCND3 (6 cases) and CCND2
115 se distinct ligand conformations delineate a cryptic inhibitor envelope that expands the observed foo
119 c tagging and survey data we reveal rare and cryptic interactions between these predators at a shared
120 The aim of this study was to (i) test if cryptic interchromosomal rearrangements of larger chromo
122 into the downstream gene body incorporates a cryptic intron required for repression of that gene.
123 duced, two of which arise from excision of a cryptic intron within the amyloid-forming repeat (RPT) d
124 Our analyses show that lncRNAs containing cryptic introns are targeted by the conserved Pir2(ARS2)
126 anum t-22, we identified and characterized a cryptic IPKS-containing cluster that synthesizes trichol
127 e leading edges of leader cells, but also in cryptic lamellipodia in submarginal cell rows NHE1 expre
129 ssessing the biodiversity of morphologically cryptic lineages can be problematic, yet may be crucial
135 s approach opens new opportunities to reveal cryptic mechanisms of postcopulatory sexual selection am
137 into the ecology, evolution, and mobilome of cryptic members of the oral microbiome, our study reveal
138 activity-HiTES, has the potential to uncover cryptic metabolites with desired biological activities t
139 ar analyses to demonstrate the presence of a cryptic methane cycle in sulfate-reducing sediments from
140 compounds driven methane production drives a cryptic methane cycling and fuels AOM coupled to the red
144 ures, I demonstrate a potential influence of cryptic minority subgroups that may illuminate the empir
146 gh somatic mosaicism has been postulated, as cryptic mosaicism cannot be detected from mutational scr
147 ver-represented amongst its targets, and the cryptic nature of many of these clusters appears to stem
148 tion and the Set3 HDAC coordinately suppress cryptic ncRNA transcription initiation internal to mRNA
152 ow here that APA products include a class of cryptic nonsense-mediated mRNA decay (NMD) substrates wi
153 ription, replication, etc.) can expose these cryptic off-target sites to Cas9 activity, highlighting
155 scopy, and electron microscopy to identify a cryptic, or hidden, Se cycle involving the reoxidation o
156 nly a single peptide expressed from both the cryptic ORF and wild-type genomes, suggesting a potentia
157 econd synthetic genome in which 71 conserved cryptic ORFs were simultaneously disrupted is viable but
160 However, recent advances in understanding cryptic oxygen cycling, namely the ubiquitous one-electr
164 modeling research to accelerate discovery of cryptic phenological patterns, to understand their cause
166 ble-headed to normal morphology, revealing a cryptic phenotype that is not apparent unless the animal
167 riation among orthologous proteins can cause cryptic phenotypic properties that only manifest in chan
168 rgue that conceptualizing and characterizing cryptic plant phenology is needed for understanding and
169 lar chromosome (CC), linear chromosome (LC), cryptic plasmid (pAt), and tumor-inducing plasmid (pTi),
172 s from non-S. aureus spp. into an indigenous cryptic plasmid, suggesting a mechanism for interspecies
174 chromosome and frequently carrying numerous cryptic plasmids - their genomes are often pockmarked wi
176 shown to have been caused by an increase in cryptic poaching, we discuss two additional independent
179 ents validate our prediction that preventing cryptic pocket opening decreases the affinity of M1-sele
180 conformation coincides with the opening of a cryptic pocket that accommodates thyroxine (T(4)) throug
181 design of subtype-specific drugs exploiting cryptic pockets that open in certain receptors but not i
183 f allosteric communication and features like cryptic pockets; both of which present new therapeutic o
184 utilizes its autophosphorylated noncatalytic cryptic polo-box (CPB) to phase separate and generate a
186 n of stathmin-2 pre-messenger RNA, uncover a cryptic polyadenylation site whose utilization produces
188 tongue as expected, two genomes represent a cryptic population of R. mucilaginosa in many buccal muc
189 ets from 15 cancer types, identifying 129 TE cryptic promoter-activation events involving 106 oncogen
190 t a fraction of chromatin-sensitive internal cryptic promoters initiates the transcription of alterna
191 ing the action of a promiscuous activator on cryptic promoters is a critical mechanism for specifying
194 Overall, we demonstrate that functional and cryptic prophages represent a diversity of genetic seque
196 owing to non-specific symptoms, chronic and cryptic protean clinical manifestations, and lack of cli
197 ere intercellular forces drive exposure of a cryptic protease site within a juxtamembrane proteolytic
202 ding how the mammalian homologs Cripto-1 and Cryptic recognize and regulate TGF-beta family ligands,
205 jects that are genetically too similar, e.g. cryptic relationships, or that are genetically too diffe
206 n Bcr late in development and stimulates its cryptic RhoA-GEF activity, which functions together with
207 e only notable exception is the toxin-linked cryptic satellite phage of Vibrio cholerae, TLCPhi, whic
209 ncing "main cells" and ~40 more functionally cryptic "secondary cells." Inhibition of bone morphogene
211 it is riddled with genetic errors, including cryptic sense/antisense promoters and translation, atten
213 ength and gene content, from highly degraded cryptic sequences to intact, functional prophages that r
215 the canonical E2 site, demonstrate that the cryptic Site 1 is associated with thioester formation, w
216 sect a putative allosteric network linking a cryptic site at the dimerization interface to enzyme fun
219 y and disease may nevertheless be subject to cryptic spatial variation, so ignoring spatial processes
220 (Monotropa, Hypopitys), which indicates that cryptic speciation may be occurring in several lineages.
222 e revealed an unforeseen hidden diversity of cryptic species among microscopic marine benthos, otherw
223 m Placozoa is harboring an unknown number of cryptic species and has become a challenge for modern sy
224 The 37 currently recognized Bemisia tabaci cryptic species are economically important species and c
225 the wild, but we did not find evidence that cryptic species are less likely to be attacked while at
231 first time, reports extensive new Anopheles cryptic species involved in the malaria transmission in
232 sive inventory suggests that the presence of cryptic species is a widespread phenomenon and that furt
233 t often morphospecies consist of clusters of cryptic species that can be identified genetically or mo
234 ns attributed to Bd have been reported among cryptic species undergoing direct development away from
235 Here, we describe M. decorus: a group of cryptic species within the M. guttatus species complex t
237 ion between overall microbial diversity with cryptic species, further indicate that the secondary end
244 ture: on one hand, they can be considered a 'cryptic' species complex due to their overall similarity
245 present study, show the unsuitability of a 'cryptic' species concept because the degree of crypticit
246 ansformation of exclusively molecular-based 'cryptic' species into morphologically-defined 'pseudocry
247 nous were later demonstrated to be multiple (cryptic) species with a different developmental mode.
248 sms, and one of these is the activation of a cryptic splice site at the expense of a canonical splice
250 ouse models of the R47H variant introduced a cryptic splice site, leading to nonsense mediated decay.
251 he frequency with which the spliceosome uses cryptic splice sites and identified two alleles in core
252 tified 264 genes where transposons introduce cryptic splice sites into the nascent transcript and the
255 rrant splicing have revealed the presence of cryptic splice sites within the halpha-globin gene trans
256 s, the method identified 32 potential exonic cryptic splice variants, two of which were experimentall
257 ome can aberrantly select nearby pseudo- or "cryptic" splice sites, often resulting in nonfunctional
258 insic mechanisms to reduce the occurrence of cryptic splicing and that these mechanisms are distinct
264 tudies promise to reveal rare cell types and cryptic states, but the high variability of single-cell
265 revealing a possible commitment point and a cryptic stochasticity in an otherwise invariant C. elega
266 -mediated protein cleavage, which produces a cryptic tethered agonist (termed Stachel (stinger)), and
267 tions, have been neglected because they are "cryptic"-that is, hidden from view (e.g., root productio
270 c tumor model, DNA demethylation upregulates cryptic transcript expression in a HIF-dependent manner,
271 cry, we observe low DNA methylation and high cryptic transcript expression in tumors with high immune
275 TSS) and chromatin dynamics, we observed the cryptic transcription of thousands of treatment-induced
276 iral transactivation factor, suggesting that cryptic transcription produces the transcripts that then
277 d sensitivity to hydroxyurea and activates a cryptic transcription reporter, suggesting that FACT and
283 ow that TSSs of chromatin-sensitive internal cryptic transcripts retain comparable features of canoni
287 or (VWF)-platelet aggregates by cleaving the cryptic Tyr(1605)-Met(1606) bond in the VWF A2 domain.
288 the power of UbV technology for identifying cryptic Ub-binding sites within large multiprotein compl
291 requirement and vice-versa, suggesting that cryptic variation in the endoderm GRN may be tuned by op
292 ansient developmental diapause also underlie cryptic variation in the requirement for SKN-1 in endode
296 and higher fitness than populations without cryptic variation, which converged on similar genotypes.
298 rates a positive relationship between Pepper cryptic virus 1 and jalapeno pepper (Capsicum annuum) pl
299 stimates for pumas (Puma concolor) and other cryptic, wide-ranging large carnivores is challenging.
300 is not clear if these differences are due to cryptic wSuz polymorphism, host background, geographical