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2 artic, ~19% (44/233) cysteine, ~40% (93/233) metallo, ~28.3% (66/233) serine and ~6.4% (15/233) threo
3 , ~8% (12/150) are cysteine, ~58.7% (88/150) metallo, 30% (45/150) serine and ~3.3% (5/150) are threo
4 cribes the fabrication of electropolymerized Metallo 4', 4'', 4''', 4'''' tetra-amine phthalocyanine
5 to add further insight into the chemistry of metallo-Abeta, which may assist better understanding of
10 a parasite Plasmodium falciparum employs two metallo-aminopeptidases, PfA-M1 and PfA-M17, which are e
11 es may reflect an evolutionary adaptation of metallo and nonmetallo KDO8PS's to the cellular concentr
13 nclude homologs of beta-1,3-glucanases (16), metallo- and aspartyl proteases (13), glycerophosphodies
14 ctronic similarities and differences between metallo- and organic OPEs can be understood largely on t
16 dothelial cells in the presence of the major metallo- and serine protease systems that modified peric
17 ry cells through connective tissues involves metallo- and serine types of cell surface proteases.
20 urther solution studies demonstrate that the metallo-base pair is compatible with Z- or B-DNA conform
22 nally high kinetic stabilities of T-Hg(II)-T metallo-base pairs (half-lives = 0.3-1.3 h) perturbed dy
23 wo tandem cGMP-binding sites downstream of a metallo beta-lactamase domain, a superfamily that includ
25 yme active site provides a binding model for metallo beta-lactamase inhibition with utility for futur
26 hibit L2 (serine beta-lactamase) but not L1 (metallo beta-lactamase) from the extensively drug resist
30 ored K. pneumoniae carbapenemase (56.1%), 54 metallo-beta-lactamase (40.9%), and four both (3.0%).
34 ch X-ray absorption spectroscopy of a dizinc metallo-beta-lactamase (MbetaL) reaction intermediate.
40 atened by the emergence and global spread of metallo-beta-lactamase (MBL) mediated resistance, specif
42 robacteriaceae (CRE) producing the New Delhi metallo-beta-lactamase (NDM) are rare in the United Stat
45 region) and the catalytic efficiency of the metallo-beta-lactamase (the motions are damped out when
46 apenemase (KPC), and Verona integron-encoded metallo-beta-lactamase (VIM) were the most common carbap
50 istronic operon (blhA-orfY), which encodes a metallo-beta-lactamase and a coenzyme A-disulfide reduct
51 re, mechanism, and biochemical properties of metallo-beta-lactamase Bla2 from Bacillus anthracis, the
53 c features of the catalytic action of dizinc metallo-beta-lactamase CcrA from Bacteroides fragilis.
58 CPSF-73 and CPSF-100 contain two domains, a metallo-beta-lactamase domain and a novel beta-CASP (nam
59 odes a protein containing a highly conserved metallo-beta-lactamase domain, within which our swip-10
60 l library of thiols/disulfides with the BcII metallo-beta-lactamase enabled the rapid identification
62 opening (AHL lactonases) are members of the metallo-beta-lactamase enzyme superfamily and rely on a
65 Inactivation of beta-lactam antibiotics by metallo-beta-lactamase enzymes is a well-recognized path
67 vii) delta genomes encode multiple copies of metallo-beta-lactamase enzymes; (viii) a host of secreti
68 ssay, the boronic acid synergy test, and the metallo-beta-lactamase Etest, had specificities of >90%
70 at similar or identical endonucleases of the metallo-beta-lactamase family generate the 3' ends of po
73 e class of these enzymes is a zinc-dependent metallo-beta-lactamase for which there are no clinically
74 ne and tryptophan side chain dynamics of the metallo-beta-lactamase from B. fragilis have been examin
75 nem- and cephamycin-resistant dinuclear zinc metallo-beta-lactamase from Bacteroides fragilis and its
77 ve, estimating a lower bound of evidence for metallo-beta-lactamase functionality but not an upper bo
78 , given that ancestral proteins may have had metallo-beta-lactamase functionality with variation in s
79 of these models conform to our criteria for metallo-beta-lactamase functionality, suggesting that th
80 hat the integration site disrupts a putative metallo-beta-lactamase gene with a 21.3 kb deletion enco
83 lts give the first structural information on metallo-beta-lactamase ImiS and suggest that the second
84 dy of a spin-labeled variant of the class B2 metallo-beta-lactamase ImiS identified movement of a com
86 nterobacteriaceae strain harboring the NDM-1 metallo-beta-lactamase in a pediatric patient in the Uni
87 ted with the nonoutbreak spread of New Delhi metallo-beta-lactamase in diverse Enterobacteriaceae spe
89 an effort to further probe metal binding to metallo-beta-lactamase L1 (mbetal L1), Cu- (Cu-L1) and N
91 effort to probe whether the metal content of metallo-beta-lactamase L1 is affected by metal ion bioav
92 residues 152-164), a site-directed mutant of metallo-beta-lactamase L1 was engineered that contained
93 he structure of the reaction intermediate of metallo-beta-lactamase L1 when reacted with nitrocefin a
94 ort to probe the role of the Zn(II) sites in metallo-beta-lactamase L1, mononuclear metal ion contain
95 s with the preparation of Co(II)-substituted metallo-beta-lactamase L1, two strategies were undertake
96 characterize the roles of each metal ion in metallo-beta-lactamase NDM-1, heterodimetallic analogues
97 In an effort to biochemically characterize metallo-beta-lactamase NDM-1, we cloned, overexpressed,
98 e an acceptable diagnostic reagent to detect metallo-beta-lactamase phenotypes in the clinical microb
104 ng Escherichia coli cells carrying New Delhi metallo-beta-lactamase subclass 1 (NDM-1) can be monitor
105 Escherichia coli cells expressing New Delhi metallo-beta-lactamase subclass 1 (NDM-1), an emerging a
107 ts subunit 11 (IntS11), which belongs to the metallo-beta-lactamase superfamily and is a paralog of C
108 ese AHL lactonases have been assigned to the metallo-beta-lactamase superfamily of proteins, which in
114 effort to probe the structure of a group Bb metallo-beta-lactamase, Co(II)-substituted ImiS was prep
116 mase domain and a novel beta-CASP (named for metallo-beta-lactamase, CPSF, Artemis, Snm1, Pso2) domai
117 to understand the reaction mechanism of a B2 metallo-beta-lactamase, steady-state and pre-steady-stat
118 M), the gene encoding the emerging New Delhi metallo-beta-lactamase, using label-free electrochemical
119 iotic resistance factor called the New Delhi metallo-beta-lactamase-1 (NDM-1) has been found to confe
129 shared sequence homology with beta-lactamase/metallo-beta-lactamases (enzymes that provide resistance
130 preparation of a set of clinically relevant metallo-beta-lactamases (i.e., NDM-1 (New Delhi MBL), IM
131 -A, and SME type), 40 isolates that produced metallo-beta-lactamases (including NDM-1, GIM-1, SPM-1,
134 ria pose a major health threat by expressing metallo-beta-lactamases (MbetaLs), enzymes able to hydro
142 tance to beta-lactam antibiotics mediated by metallo-beta-lactamases (MBLs) is a growing problem.
144 reaction mechanism to be offered for the B2 metallo-beta-lactamases and demonstrate that the mono- a
145 ass of monocyclic beta-lactams are stable to metallo-beta-lactamases and have excellent P. aeruginosa
146 the determinants of substrate specificity in metallo-beta-lactamases and the design of potentially cl
147 nies of the Subclass B1 + B2 and Subclass B3 metallo-beta-lactamases and their homologs show that the
148 bacteria that produce extended-spectrum- and metallo-beta-lactamases are being discovered at an alarm
151 ient formats were developed for detection of metallo-beta-lactamases based on the reduction of imipen
156 t for the broad substrate specificity of the metallo-beta-lactamases from Bacteroides fragilis and ot
158 cific detection of carbapenemases, including metallo-beta-lactamases in active bacterial pathogens.
159 Reduced holomycin also strongly inhibits metallo-beta-lactamases in vitro, major contributors to
161 a kinetic mechanism similar to that used by metallo-beta-lactamases L1 and CcrA, in which a reactive
162 ism of hydrolysis of nitrocefin by binuclear metallo-beta-lactamases may be atypical and that cleavag
163 the binding of substrates and inhibitors to metallo-beta-lactamases may involve binding to the organ
165 additional support to the proposal that the metallo-beta-lactamases should be divided into two disti
167 nding site is very similar to those of other metallo-beta-lactamases that belong to the B1 subclass.
168 now report KPC serine carbapenemases and the metallo-beta-lactamases VIM, IMP, and NDM-1, even though
169 nhibitors effective against both serine- and metallo-beta-lactamases, and which could also have antim
170 we reconstructed a sample of 98 MRCAs of the metallo-beta-lactamases, each based on a different tree
181 Our work provides new evidence into the metallo-biology of PD and opens new lines of research as
182 oped into the planes of borophenes to create metallo-borophenes, opening vast opportunities to design
183 emases in Enterobacteriaceae, while OXA- and metallo- carbapenemases are of growing importance in Aci
186 f a large subunit that harbors a NiFe(CN)2CO metallo-center and a small subunit with three iron-sulfu
187 that acts on amyloid by perturbing amyloid's metallo-chemistry, and Clioquinol treatment has been sho
188 es (UV-vis and fluorescence spectra) of the (metallo)chlorin-like chromophores that possess slightly
189 flavodoxin essential for assembly of the RNR metallo-cofactor) have been identified and characterized
194 hree members of the metallocarboxypeptidase (metallo-CP) family that had not been described in the li
196 specific members of the protein phosphatase metallo-dependent (PPM/PP2C) family and is independent o
197 Both dihydroorotases are members of the metallo-dependent hydrolase superfamily, whose members h
198 Here we report the crystal structure of a metallo-dependent or class II FBP aldolase from an extre
199 en the individual porphyrin systems, and the metallo derivatives also displayed significant variation
202 ve metamaterial properties of thin, periodic metallo-dielectric multilayers by exploiting a broadband
204 ibP), proposed to encode a lysostaphin-like, metallo-endopeptidase that is exported to the periplasm
205 substrate binding pocket conserved in active metallo-endopeptidases has been adapted to control PG hy
206 rally and/or biochemically characterized are metallo-endopeptidases that cleave cross-links in the pe
209 group; (2) [3+n]-cycloadditions (n = 1-5) by metallo-enolcarbenes formed by catalytic dinitrogen extr
210 +1]-cycloaddition of catalytically generated metallo-enolcarbenes was successfully extended to reacti
211 of biomimetic complexes for the modeling of metallo-enzyme active sites is a fruitful strategy for o
212 hich spin-state is key, including catalysis, metallo-enzyme modeling studies, and host-guest chemistr
213 IP5 2-K from Arabidopsis thaliana is a zinc metallo-enzyme, including two separated lobes (the N- an
215 molecular dynamics simulations of the dizinc metallo form indicates that the dinuclear metal cluster
217 monoxide, aldehydes, and olefins to produce metallo formyl, alpha-hydroxyalkyl, and alkyl complexes,
218 activity and regioselectivity of (endohedral metallo)fullerenes have in the past decade been shown to
219 e on interactions of diastereomerically pure metallo-helical 'flexicate' complexes, bimetallic triple
221 lutarate, and acetate to a C(3)(v) symmetric metallo-host (1) are characterized in terms of the bindi
222 ne) complex affords the first supramolecular metallo-hydrogelator that not only self assembles in wat
223 or the first time the identification of five metallo-intramembrane cleaving proteases in Anabaena var
224 Unlike Class-I KDO8P synthases, the Class II metallo-KDO8P synthases containing Zn2+, Cd2+, Cu2+, and
225 metallo KDO8PS from Escherichia coli and the metallo KDO8PS from Aquifex aeolicus are the best charac
226 rovided by beta-lactamases belonging to both metallo (MBL)- and serine (SBL)-beta-lactamase subfamili
227 s the catalyst, tandem 1,3-acyloxy migration/metallo-Nazarov cyclization/1,6-enyne addition/Cope rear
228 ng a more rapid tandem 1,3-acyloxy migration/metallo-Nazarov cyclization/[4 + 2]-cyclization pathway
238 plexes were employed to construct brominated metallo-organic intermediates, followed by a Suzuki coup
240 py-Ru(2+) -tpy was employed to construct two metallo-organic ligands for the assembly of G2 and G3 Si
242 nder equilibrium control, numerous nanoscale metallo-organic particles with potentially useful proper
244 and ferrous ions, Fet3p can be considered a metallo-oxidase and appears to play an essential role in
245 n-transfer-mediated enone reduction produces metallo-oxy-pi-allyls en route to [2 + 2] cycloadducts a
246 These enzymes constitute an unusual pair of metallo-oxygenases that remain fully active after a meta
249 igestion (cysteine-, aspartic-, serine-, and metallo-peptidases), cell, protein and lipid binding inc
250 sc-PLD) is a member of the diverse family of metallo-phosphodiesterase/phosphatase enzymes that also
251 The protein consists of a core binuclear metallo-phosphoesterase fold (exemplified by bacteriopha
253 olecular beacon (MB) probe consisting of two metallo-phthalocyanine (Pc) fluorophores that use near-I
254 ther environments and by the eminent role of metallo-phthalocyanines in synthetic materials, the cont
255 Zr6-polyoxo-cluster and uniformly embedded (metallo)porphyrin centers endow CPM-99 with highly desir
256 series of zirconium polyphenolate-decorated-(metallo)porphyrin metal-organic frameworks (MOFs), ZrPP-
261 ariety of serine-, cysteine-, carboxyl-, and metallo-proteases, including trypsin, chymotrypsin, peps
262 stic classes-serine, cysteine, aspartyl, and metallo-proteases-and develop a discriminatory scoring f
267 s, serine proteinases, aspartic proteinases, metallo proteinases, and aggressive proteinase mixtures,
268 decreased expression of PD-L1 and of matrix metallo-proteinases (MMPs) and CD-10 in those cells.
269 during morphogenesis, the function of matrix metallo-proteinases (MMPs) and their inhibitors, the tis
272 ytic properties of single-atom catalysts and metallo-proteins, we exploit the potential of metal-orga
277 milies, C56 and C64 (cysteine), M20 and M23 (metallo), S24 and S28 (serine) as revealed by a lack of
278 ixed (Section 6), desymmetrized (Section 7), metallo (Section 8), and N-heterocyclic linkers (Section
281 in catalysis, this implies that the various metallo-substituted enzymes are capable of some level of
282 report the first X-ray crystal structures of metallo-substituted HDAC8, Co(2+)-HDAC8, D101L Co(2+)-HD
283 constructed on adamantane, three discrete 3D metallo-supramolecular architectures were assembled, i.e
288 me, this new topology has been combined with metallo-supramolecular interactions to construct novel c
291 les with Zn(2+) ion to form a highly soluble metallo-supramolecular polymer 1 with M(n) approximately
293 e report, herein, the preparation of gellike metallo-supramolecular polymers prepared from a monomer
295 stituting the metal-coordinating cysteine of metallo synthases with the corresponding asparagine of n
296 several fields, provide an elegant route to metallo-tetrapyrrole systems often elusive to convention
298 onal supramolecular architectures, so-called metallo-triangles, were assembled from terpyridine (tpy)
299 h Zn(II) or Cd(II) to obtain high-generation metallo-triangular architectures in nearly quantitative
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