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1 transport for drug entry into the bacterial periplasmic space.
2 of the rod structure to proceed through the periplasmic space.
3 nt of iron associated with the cell wall and periplasmic space.
4 ization and protein folding in the bacterial periplasmic space.
5 in with calcofluor and aniline blue in their periplasmic space.
6 ortion of the exposure of the Ton box in the periplasmic space.
7 te channels of sufficient length to span the periplasmic space.
8 long that spans both the outer membrane and periplasmic space.
9 nonfluorescent version was localized to the periplasmic space.
10 The latter is a lipoprotein located in the periplasmic space.
11 tes across the cytoplasmic membrane into the periplasmic space.
12 tions with other Mxi-Spa subunits within the periplasmic space.
13 ide bond in the oxidizing environment of the periplasmic space.
14 pI = 4.8) that probably is secreted into the periplasmic space.
15 e channel, followed by diffusion towards the periplasmic space.
16 ase that has its active site residing in the periplasmic space.
17 plex rather than being freely soluble in the periplasmic space.
18 li cells was found in the culture medium and periplasmic space.
19 e folding of proteins within the T. pallidum periplasmic space.
20 ts explain the stability of (GlcNAc)2 in the periplasmic space.
21 nant plasmid pHdSOD and was localized to the periplasmic space.
22 s surface and then translocating it into the periplasmic space.
23 s hydrophilic carboxyl domain located in the periplasmic space.
24 tive in the reduction environment within the periplasmic space.
25 oth inner and outer membranes separated by a periplasmic space.
26 ins necessary for LPS to shuttle through the periplasmic space.
27 roteins through the cellular membrane to the periplasmic space.
28 t by molecular chaperones across the aqueous periplasmic space.
29 which localize to bacterial membranes or the periplasmic space.
30 anslocation across the two membranes and the periplasmic space.
31 sm, whereas the ceramide reductase is in the periplasmic space.
32 ap around the cell body, confined within the periplasmic space.
33 sis upon their expression exclusively in the periplasmic space.
34 s that may connect cells at the level of the periplasmic space.
35 n outer and an inner membrane separated by a periplasmic space.
36 dominantly as internally oriented toward the periplasmic space.
37 r, whereas the other is pumped to the low-pH periplasmic space.
38 teins that are translocated to the bacterial periplasmic space.
39 membrane fusion protein (MFP) that spans the periplasmic space.
40 of biosynthesis of molecules located in the periplasmic space.
41 e passive diffusion of Hg(II) species to the periplasmic space.
42 proteins across the inner membrane into the periplasmic space.
43 mislocalized alginate that is trapped in the periplasmic space.
44 ts the transporter to the channel within the periplasmic space.
45 bel single or paired cysteines that face the periplasmic space.
46 to the CM, and possibly having access to the periplasmic space.
47 tein PspA engineered to be secreted into the periplasmic space.
48 cilitate their rotation within the confining periplasmic space.
49 of flagellar filaments, displayed a uniform periplasmic space.
50 ester, is monomeric, and is localized to the periplasmic space.
51 lavins in RnfG and RnfD are localized in the periplasmic space.
52 domain (residues 46-618) protruding into the periplasmic space.
53 that formation of this complex occurs in the periplasmic space.
54 ytoplasm and only a fraction exported to the periplasmic space.
55 ps around the outside of the cell within the periplasmic space.
56 increasing the rate of Cbl release into the periplasmic space.
57 n digests the peptidoglycan cell wall in the periplasmic space.
58 ursor polypeptides from the cytoplasm to the periplasmic space.
59 hus demonstrating that the complex spans the periplasmic space.
60 ce is determined by the amount of GFP in the periplasmic space.
63 ranslocation across the OM and access to the periplasmic space (5-25 min later) correlates in time wi
64 pid moiety and oriented facing in toward the periplasmic space; a few lipoproteins have been shown to
65 misfolding during their passage through the periplasmic space and aid in the disassembly of OMP aggr
66 -electron tomograms show that tubes span the periplasmic space and are present while the genome is be
68 s enable the colicin Ia molecule to span the periplasmic space and contact both the outer and plasma
69 5 in the C-terminal fragment can form in the periplasmic space and greatly increase the efficiency of
71 mutants that would secrete FlgM-Bla into the periplasmic space and show ampicillin resistance (Ap(r))
72 The rod subunits self-assemble, spanning the periplasmic space and stopping at the outer membrane whe
73 lymerizes from the inner membrane across the periplasmic space and stops at a length of 25 nm at the
75 h itself was not resolved, is exposed to the periplasmic space and undergoes an extensive shift in po
76 of outer membrane protein precursors in the periplasmic space, and leads to the increased production
77 al being sent across the outer membrane, the periplasmic space, and the inner membrane, to a sigma fa
78 esis and translocation of DAT and PAT to the periplasmic space are coupled and topologically split ac
79 sing a library of proteins secreted into the periplasmic space are incubated with a fluorescent conju
80 e only portion of the protein exposed to the periplasmic space, are characterized by solution nuclear
81 1 remains unprocessed and is degraded in the periplasmic space, at least in part by the DegP protease
82 n the outer membrane and projects across the periplasmic space between inner and outer membranes.
83 at rod length is limited by the width of the periplasmic space between the inner and outer membranes.
84 t the SUN domain of Sun2 is localized to the periplasmic space between the inner and the outer nuclea
85 on is performed outside the cytoplasm in the periplasmic space between the plasma membrane and the ce
86 ane (IM) that surrounds the cytoplasm, and a periplasmic space between the two membranes containing p
88 redoxin 1 can be efficiently exported to the periplasmic space by the signal sequence of the DsbA pro
89 ochromatium vinosum is translocated into the periplasmic space by the Tat system of Escherichia coli.
91 and C-terminal domains are positioned in the periplasmic space, connected by eight transmembrane segm
93 h the hypothesis that this protein spans the periplasmic space coordinating the concerted operation o
94 r the activity of the enzymes located in the periplasmic space delineated by the inner and outer memb
95 ccess of the Cbl-binding site of BtuB to the periplasmic space does not require removal of the hatch
96 Regions of subunit a that are exposed to the periplasmic space have been identified by a new procedur
97 gella are internalized, being incased in the periplasmic space; i.e., between the outer membrane and
101 upporting their role in the maintenance of a periplasmic space in Gram-positive bacteria as a possibl
102 TonB1, but not TonB2, can span the increased periplasmic space in high osmolarity and thus mediate ha
105 ne of these (the cytolysin/hemolysin) to the periplasmic space indicates that these proteins are norm
106 ively translocate virulence factors from the periplasmic space into the extracellular environment.
107 visualized as a thin layer that divided the periplasmic space into zones of higher and lower electro
109 ty of FbpA in the diverse composition of the periplasmic space is illustrated by the ex vivo exchange
110 d that their small size and relatively large periplasmic space might enable them to outcompete other
115 as soluble antibody fragments (Fabs) in the periplasmic space of bacteria and isolated from small-sc
117 actamases (BLs) are enzymes localized in the periplasmic space of bacterial pathogens, where they con
119 ng protein (FbpA) transports iron across the periplasmic space of certain Gram-negative bacteria and
120 is to transport unchelated Fe(3+) across the periplasmic space of certain Gram-negative bacteria, a p
121 combinant chimeras that were produced in the periplasmic space of E. coli as soluble pentamers, as co
122 ssembles with high fidelity and yield in the periplasmic space of E. coli cells, where it can success
123 in the production of holocytochrome f in the periplasmic space of E. coli, but the yield was low.
125 We show that rat PDI (rPDI) secreted in the periplasmic space of Escherichia coli can catalyze the f
127 ese mutants could be recovered form from the periplasmic space of Escherichia coli in a soluble form,
128 y coexpressing 3 recombinant proteins in the periplasmic space of Escherichia coli-an antibody clone,
133 r layer and a low-density zone typifying the periplasmic space of gram-positive bacteria are apparent
134 T2SS) translocate virulence factors from the periplasmic space of many pathogenic bacteria into the e
135 9 kDa protein was expressed, exported to the periplasmic space of NovaBlue (DE) Escherichia coli, and
136 nFbp, a ferric-binding protein found in the periplasmic space of pathogenic Neisseria, has been char
137 ins, and nanobodies to the membrane-proximal periplasmic space of Saccharomycescerevisiae, enabling d
139 itate the transport of naked Fe3+ across the periplasmic space of several Gram-negative bacteria.
141 , we propose that nitrate is detected in the periplasmic space of the cell, and that a signal-transdu
144 FbpA functions as an iron shuttle within the periplasmic space of these Gram-negative human pathogens
149 hich polar substrates move directly into the periplasmic space, PpF1 TodX and CymD direct their hydro
150 h the membrane and/or the environment of the periplasmic space results in improved folding of recombi
152 Experiments on the uptake of Cbl into the periplasmic space showed that this process is reversible
153 otein sites that are normally exposed in the periplasmic space tethers the scFv onto the inner membra
154 cetes, including a defined outer membrane, a periplasmic space that can be greatly enlarged and convo
155 riven by rotation of the flagella within the periplasmic space, the narrow ( approximately 20-40 nm i
156 ec machinery, transported across the crowded periplasmic space through the assistance of molecular ch
162 Gram-negative bacteria are localized to the periplasmic space to promote interaction with their cogn
163 e generated force is transmitted through the periplasmic space to protein components associated with
166 of moving Braun's lipoprotein (BLP) from the periplasmic space to the outer membrane of E. coli, via
169 li in a precursor form and exported into the periplasmic space upon cleavage of a 23-amino-acid leade
171 rA and PEB3, depends on translocation to the periplasmic space via the general secretory pathway.
172 ipids are exported from the cytoplasm to the periplasmic space via the mycobacterial membrane protein
173 in the cytoplasmic membrane and, ultimately, periplasmic space was confirmed using AnkB-BlaM and AnkB
175 hen upon activation is translocated into the periplasmic space, where it functions in pilus assembly.
176 cating its channel forming domain across the periplasmic space, where it inserts into the inner membr
177 ize that S. oneidensis secretes FAD into the periplasmic space, where it is hydrolysed by UshA to FMN
178 domain alpha-helical protein is found in the periplasmic space, where it supports an acid resistance
180 higher curvature of the outer membrane and a periplasmic space with 2-fold larger volume/area ratio t
181 velope comprising an inner membrane, a large periplasmic space with a thick peptidoglycan (PG) layer,
182 permits reaction of sulfhydryl groups in the periplasmic space with MPB, but residues in the cytoplas
183 e as about 10 kDa can equilibrate within the periplasmic space without compromising the cell's integr