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1 omal fibroblasts promotes the assembly of an architecturally abnormal ECM that is permissive to breas
2 pe of progressive hyperostosis combined with architecturally abnormal, poorly mineralized matrix that
3 ffold under an air-liquid interface to yield architecturally accurate crypts with a mucus bilayer (60
4 rminal half of Hof1 displays misoriented and architecturally altered cables, along with impaired secr
5 le-occupant roosts for sleeping) that differ architecturally among groups.
6 doplasmic reticulum, present a rich array of architecturally and compositionally complex supramolecul
7 istinct subcellular compartments that differ architecturally and electrically.
8 The mature mammalian cortex is composed of 6 architecturally and functionally distinct layers.
9        Many Gram-negative pathogens assemble architecturally and functionally diverse adhesive pili o
10 e-mapped enhancers across the lineage-differ architecturally and functionally from low-complexity gen
11 f this complex interaction, a mature kidney, architecturally and functionally ready for extrauterine
12 eukaryotes, and that the terminin complex is architecturally and functionally similar to shelterin.
13         Individual cell types are defined by architecturally and functionally specialized cortical do
14 rain spheroid model that mimics the BBB both architecturally and functionally.
15 ns) of both gyrases are highly similar, both architecturally and in their ability to introduce writhe
16            Fully matured dental enamel is an architecturally and mechanically complex hydroxyapatite-
17        In contrast to many other mammals, an architecturally and neurochemically distinct CA4 field w
18 ave recently suggested that there may be two architecturally (and evolutionarily) distinct cognitive
19 ignment of the absolute configuration of the architecturally challenging compound (+)-scholarisine A
20                          Regeneration of the architecturally complex alveolar niche of the lung requi
21 erpenoid alkaloids comprise some of the most architecturally complex and functional-group-dense secon
22 on of organic fuels (~tends of milliliters), architecturally complex and often inefficient devices, a
23 ant pathogen Agrobacterium tumefaciens forms architecturally complex biofilms on inert surfaces.
24            Bacillus subtilis is able to form architecturally complex biofilms on solid medium due to
25 ndomesticated strains such as NCIB 3610 form architecturally complex biofilms.
26 veloped viruses, the physical constraints of architecturally complex capsid viruses have imposed prac
27 ns are nonenveloped particles containing two architecturally complex capsids.
28 igand is enhanced not by modification of the architecturally complex chiral features but instead by a
29                                Bacteria form architecturally complex communities known as biofilms in
30  of Bacillus subtilis are capable of forming architecturally complex communities of cells known as bi
31 ium Bacillus subtilis are capable of forming architecturally complex communities of cells.
32 e such characteristic is the ability to form architecturally complex communities, referred to as biof
33  formation is coupled to the formation of an architecturally complex community of cells.
34                   The total synthesis of the architecturally complex Daphniphyllum alkaloid (-)-calyc
35 minating in the first total synthesis of the architecturally complex daphniphyllum alkaloid, (-)-caly
36 gral membrane proteins within their immense, architecturally complex dendritic arbors.
37  that DoC was predictive of the stability of architecturally complex features when photopatterning, u
38 ly believed and may facilitate expression of architecturally complex genes.
39 cine biosensors were developed by fusing the architecturally complex glycine riboswitch with Broccoli
40 de of tryptamines with enol lactones to form architecturally complex heterocycles in high enantiomeri
41          A convergent total synthesis of the architecturally complex indole diterpenoid (-)-nodulispo
42       In the context of the synthesis of the architecturally complex Lycopodium alkaloid lyconadin A,
43 f posttranslational modifications to produce architecturally complex macrocyclic scaffolds.
44 ed total synthesis of (+)-tedanolide (1), an architecturally complex marine antitumor macrolide, has
45 ent, stereocontrolled total synthesis of the architecturally complex marine sponge metabolite (-)-eni
46 nents that are required for the formation of architecturally complex mature biofilms in these bacteri
47 construct a compound collection populated by architecturally complex members with unique scaffolds, w
48                                        These architecturally complex metabolites are thought to origi
49 nthetic gene clusters (BGCs), which assemble architecturally complex molecules from simple building b
50 ityl migration, Michael reaction) leading to architecturally complex molecules.
51  process that culminates in the formation of architecturally complex multicellular communities.
52 itative assessment of the composition of the architecturally complex muscles traversing the cervical
53 ketide synthesis to produce some of the most architecturally complex natural lipids including the ess
54 sformations allowed the construction of this architecturally complex natural product in significant q
55 ated and efficient cyclizations to forge the architecturally complex natural product scaffold.
56 ynthesis of organic compounds, especially of architecturally complex natural products, are not easily
57                               The lung is an architecturally complex organ comprising a heterogeneous
58  an efficient three-step construction of the architecturally complex polycyclic skeleton found in (-)
59 d CP systems from linear-chain structures to architecturally complex polymers could potentially modul
60  linear polymers, and rationally redesigned, architecturally complex polymers for their unique proper
61                  Its versatility arises from architecturally complex polyubiquitin chains, in which i
62 des are a class of natural products that are architecturally complex potent antibiotics but generally
63                  Microfabrication can create architecturally complex scaffolds for 3D cell cultures t
64  identifying strategies for the syntheses of architecturally complex secondary metabolites.
65 ciketals A and B, two members of a family of architecturally complex spiroketals, have been achieved.
66  defines highly ordered myofiber patterns in architecturally complex tissue.
67 ent, stereocontrolled total synthesis of the architecturally complex tremorgenic indole alkaloid (-)-
68               This approach allows access to architecturally complex, natural-product-like N-heterocy
69         Cyanobacteria harvest light by using architecturally complex, soluble, light-harvesting compl
70 ble to form a 4-fold symmetric complex that, architecturally, comprises two major substructures, a la
71 copies totalling ~1,000 protein subunits and architecturally conserved across eukaryotes - establishe
72 e, confirming that the hantaviral Gn fold is architecturally conserved across hantavirus clades.
73 dentify that evolutionary malleability in an architecturally conserved parallel circuit guides adapta
74                                              Architecturally conserved viral portal dodecamers are ce
75  daily time course of radiation profiles for architecturally contrasting field-grown wheat (Triticum
76 ill allow for an easy and rapid synthesis of architecturally controlled supramolecular polymeric asse
77 nding of the histone-like protein, HU, to an architecturally critical position on DNA to facilitate t
78 some, further stabilized by HU binding to an architecturally critical position on the DNA.
79 d that the inhibitor selectively binds at an architecturally critical region of the protein.
80                                              Architecturally defective, leaky blood vessels typify pa
81 rt a semiautomated synthesis of sequence and architecturally defined, unimolecular macromolecules thr
82                        These TOG4 structures architecturally depart from the structures of TOG domain
83  can be used to three-dimensional (3D) print architecturally designed wood structures via direct ink
84 nto the tolerance and specificity of several architecturally different polyketide synthases.
85                         This highlights four architecturally distinct BC subcomplexes, the compositio
86 al new models for the transition between the architecturally distinct conformations of PAH and highli
87 of (-)-maoecrystal Z, demonstrate that three architecturally distinct ent-kauranoids can be prepared
88 for a new class of chloride channels that is architecturally distinct from previously characterized c
89 rin-A5-EphB2 complex is a heterodimer and is architecturally distinct from the tetrameric EphB2-ephri
90 ze and sorghum, closely related species with architecturally distinct inflorescences, we collected RN
91 nocrystals and will enable the design of new architecturally distinct nanostructures.
92 ion of PAH involves major domain motions and architecturally distinct PAH tetramers.
93 l structures, it is not always clear whether architecturally distinct regions of the brain correspond
94 and rapid engulfment, soft cargos induced an architecturally distinct response, characterized by fila
95 d bioinformatic analysis the existence of an architecturally distinct subfamily of acyl coenzyme A (a
96 tic fidelity and support our hypothesis that architecturally distinct TOGs arranged in a sequence-spe
97 opose an association of these modes with two architecturally distinct yet spatially overlapping and d
98  designed that present sequence diversity in architecturally distinct, biologically relevant combinat
99  is the archetype of a large family (>50) of architecturally distinct, bisguanidinium natural product
100 ecause of the marked cellular infiltrate and architecturally distorted microstructure.
101 t of actin nucleation factors that can build architecturally diverse actin structures.
102          The development of over 26 of these architecturally diverse adhesive organelles in various G
103 rescence spectroscopy has been used to probe architecturally diverse and unique model oligomers conta
104 together with previous work support that the architecturally diverse ATPase activating proteins of Pa
105 ested in Dubai, Amsterdam, and Boston (three architecturally diverse cities), our algorithm successfu
106 ted high-avidity CD8 T cell populations with architecturally diverse clonotypic repertoires that disp
107 alkaloid (-)-205B, a tricyclic member of the architecturally diverse family of natural products isola
108        Examining embolism-induced failure of architecturally diverse leaf networks, we found that con
109  DPB1(*)02 and DPB1(*)04 and recognition via architecturally diverse T cell receptors (TCRs).
110 at species-rich ecological networks are more architecturally diverse than previously recognized.
111                           These proteins are architecturally diverse, yet many of them share a conser
112 t wheat (Triticum aestivum) lines, which are architecturally diverse.
113        Centralized silos of genomic data are architecturally easier to initially design, develop and
114                Whether these TOG domains are architecturally equivalent is unknown.
115 reated tumors developed segmentally dilated, architecturally erratic tumor vessels with decreased nas
116         Marine bryozoans continue to provide architecturally fascinating halogenated alkaloids that p
117  of memory storage is shown to occur both in architecturally feedforward networks and in recurrent ne
118 iants (W-CNN R1, W-CNN R2 and W-CNN R3) that architecturally fuses discrete wavelet transforms (DWT)
119 RNA sequence folds into conformationally and architecturally heterogeneous structures under near-phys
120 nding sites and the collagen-binding pocket, architecturally important hydrophobic residues and the h
121  to sequester early developmental genes into architecturally inaccessible genomic compartments.
122 nderstanding of this medically important and architecturally interesting portion of the genome, we ha
123 ion is a versatile strategy for constructing architecturally interesting, sp(3)-rich cyclobutane-fuse
124          To address whether LTBP-1 functions architecturally like fibrillins, microfibrils were extra
125 d no detectable EPS(ETr) and did not form an architecturally mature biofilm.
126 enormous; actinobacteriophages comprise many architecturally mosaic genomes with distinct DNA sequenc
127 re of bacteriophage genomes is that they are architecturally mosaic, with each individual genome repr
128 crocephaly is the consequence of a small but architecturally normal brain, and it is the cerebral cor
129 iption and splicing, result in a reduced but architecturally normal brain.
130 (fl/fl) conditional knockout (cKO) mice have architecturally normal brains and no gross behavioral de
131 truct neighboring Fz4(-/-) ECs to produce an architecturally normal mosaic vasculature, a cell nonaut
132 gh-resolution X-ray crystal structures of an architecturally novel aromatic PTase, Orf2 from Streptom
133 ppears to be no relationship between muscles architecturally optimised to function as displacement sp
134                     Marginal zones (MZs) are architecturally organized for clearance of and rapid res
135                  Given that carboxysomes and architecturally related bacterial organelles are the sub
136 previously and in several unencountered with architecturally related benzyl ether-based supramolecula
137 leavage location can be conserved in distant architecturally related proteins.
138 unding member and its homologs FASTKD1-5 are architecturally related RNA-binding proteins, each havin
139 e mounds of termites, the housing markets of architecturally remodeled shells of social hermit crabs,
140 molecules in good to excellent yields, which architecturally resemble other indole-fused tricyclic mo
141 ian tube that molecularly, functionally, and architecturally resembles the organ.
142                                     Although architecturally resembling voltage-gated ion channels, n
143 ectural diversification, where members of an architecturally rich ancestral community diversified the
144 ive facades and that the presented system is architecturally scalable in quantity.
145 ng orthogonally arranged cruciform elements, architecturally similar to some hexactinellid sponges, a
146 inal winged helix DNA binding domain that is architecturally similar to that of the MarR family of tr
147  both the cerebellum and structures that are architecturally similar to the cerebellum.
148 ontains a core in the "ball-and-toes" region architecturally similar to the human U1 snRNP.
149                           The Cmr complex is architecturally similar to the type I CRISPR-Cascade com
150 al superfamily members, although they may be architecturally similar, exhibit strict specificity towa
151                            All BMCs share an architecturally similar, selectively permeable shell tha
152                The purpose of introns in the architecturally simple genome of Saccharomyces cerevisia
153 y cultured murine hippocampal neurons are an architecturally simple model for the study of cannabinoi
154                                     Although architecturally simple, a complex pattern of airflow is
155 re design strategies for compositionally and architecturally sophisticated nanocrystals.
156 class of enzyme is also frequently large and architecturally sophisticated.
157                                          The architecturally stabilized closing of UDG enforces disto
158                                          The architecturally symmetrical and synthetically challengin
159                        It is well known that architecturally the brain is a neural network, i.e. a co
160                                              Architecturally, the NPC's symmetric core is composed of
161                                              Architecturally, this complex shows striking resemblance
162                                              Architecturally, TLSs resemble SLOs with distinct T and
163 esults support the notion that LM and AL are architecturally, topographically, and connectionally dis
164 al polypeptides may be destroyed if they are architecturally unfit.
165                           The development of architecturally unique molecular nanocarbons by bottom-u
166 ich is reminiscent of the evolutionarily and architecturally unrelated mechanosensitive Piezo channel
167  the current work, we report eight novel and architecturally unusual secondary metabolites synthesize
168 ructures developed that resembled lymphatics architecturally, were distinct from CD34-positive blood

 
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