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1 hey share a common structural motif, and are channel forming.
2 rogen and oxygen species via three different channels, forming: (1) nitrogen dioxide (NO2) and hydrox
3 at functions as a phospholipid translocation channel, forming a 20-A-thick doughnut embedded in the
4 at PP2calpha binds directly to neuronal Ca2+ channels forming a functional protein complex in vivo.
5 fically with both PKCepsilon and N-type Ca2+ channels, forming a PKCepsilon-ENH-Ca2+ channel macromol
6 ip that has multiple vertical and horizontal channels, forming a three-dimensional separation system.
7 lters channel stability, as monitored by the channel forming ability and channel lifetime, and ion pe
8 in, would reveal differences in the relative channel forming ability of monomeric, oligomeric, and fi
9  of the molecule in solution aggregation and channel forming ability.
10 ral plasticity is a major determinant of its channel-forming ability.
11 ted that its cytotoxicity is mediated by its channel-forming ability.
12 ce protein with beta(3) integrin binding and channel forming activities.
13        Despite detectable differences in the channel-forming activities and cytotoxic properties of t
14 ouble bond, and yet both its apoptogenic and channel-forming activities are greatly reduced.
15 ese peptides exhibit antibiotic and membrane channel-forming activities.
16                                              Channel forming activity has been monitored by incorpora
17      (ii) At lower concentrations, where its channel forming activity is hardly evident, alpha-LT aug
18 ution aggregation with complete retention of channel forming activity were generated.
19                                        Thus, channel-forming activity does not seem to be either nece
20  showed according to lipid bilayer studies a channel-forming activity of 0.6 nanosiemens in 1 m KCl.
21 on in planar lipid bilayers, we examined the channel-forming activity of subfractions of Pseudomonas
22 membrane, protects the cell from the lethal, channel-forming activity of the bacteriocin, colicin E1.
23 hat ablate vacuolating activity and membrane channel-forming activity render VacA unable to induce cy
24 ing octameric PA possess enhanced stability, channel-forming activity, and macrophage cytotoxicity re
25 th other Bcl-2 family proteins known to have channel-forming activity, but its activity exhibits a no
26 amphiphilic, beta-sheet-rich structures with channel-forming activity.
27  glycosylation and surface expression of the channel-forming alpha subunits.
28 y 100-residue polypeptides with at least one channel-forming alpha-helical transmembrane (TM) domain.
29 serine residues emerging from the top of the channel-forming alpha-helix, suggesting that this is the
30             Complementary DNA coding for the channel-forming alpha-subunit of a large conductance Ca(
31  rat brain, which contain four transmembrane channel-forming alpha-subunits and four cytoplasmically-
32             Through direct interactions with channel-forming alpha1 subunits, beta subunits enhance e
33 RC2, completing the ring and the DNA-binding channel, forming an additional ATP hydrolysis site.
34 on that enhances constitutively active TRPC3 channels, forming an ultra-short substantia nigra pars c
35 nly associate with a small number of calcium channels, forming an unreliable single vesicle release s
36 e subfamily of proteins, which contains both channel-forming and adhesin molecules, is extremely high
37 ses of kainate receptors vary when different channel-forming and auxiliary subunits are co-expressed
38  detection of NADH and use of alamethicin, a channel-forming antibiotic that enables an unrestricted
39 DH to intact mitochondria via alamethicin, a channel-forming antibiotic.
40 urally occurring analogues of this family of channel-forming antibiotic.
41                      The structure reveals a channel-forming architecture that could allow passage of
42 mily proteins display structural homology to channel-forming bacterial toxins, such as colicins, tran
43                                Colicin Ia, a channel-forming bactericidal protein, uses the outer mem
44 membrane sequence for apoptosis induction by channel-forming Bcl-2 proteins.
45 t large exoproteins through highly conserved channel-forming beta-barrel proteins.
46    These proteins contain a highly conserved channel-forming C-terminal domain, which functions toget
47  N-terminal translocation (T) domain and its channel-forming C-terminal domain.
48 omains of the colicin: (i) the COOH-terminal channel-forming (C) domain with the highest thermal stab
49 hogenic mutation A116V greatly increases the channel-forming capability of moPrP.
50 PrP, providing a rationale for its increased channel-forming capability.
51 e effective harnessing of the remarkable ion channel-forming capacity of this prototypical small mole
52 containing G121R or S246L mutations retained channel-forming capacity.
53 we demonstrate that cholesterol action on BK channel-forming Cbv1 proteins is mediated by their cytos
54 dies in Xenopus oocytes that co-expressed BK channel-forming (cbv1) and accessory beta1 subunits clon
55                                      The ion-channel forming colicins A, B, E1, Ia, Ib and N all kill
56                                              Channel-forming colicins are bacterial toxins that spont
57 em for the bacteriocin and immunity genes of channel-forming colicins B and Ia to optimize production
58 ese data offer new insights into the toxin's channel-forming component and the intermolecular interac
59  translocation system are the heterotrimeric channel-forming component SecYEG and its binding partner
60                                  The toxin's channel-forming component, protective antigen (PA), olig
61 nning segments and is similar in sequence to channel-forming components of ABC transporters.
62 timates for the head-to-head GAsl dimer (the channel-forming conformation), which matches the hydroph
63 (70 kDa), and subsequently translocating its channel forming domain across the periplasmic space, whe
64 with full-length colicin Ia to show that the channel forming domain is initially positioned 150 A abo
65                                          The channel-forming domain has been localized to amino acid
66 tal motion of the closed state of colicin Ia channel-forming domain in membranes of different anionic
67                                          The channel-forming domain of colicin E1 is composed of a so
68 ter-soluble and membrane-bound states of the channel-forming domain of colicin Ia.
69 ne (Q) to an arginine (R) located within the channel-forming domain of the alpha-amino-3-hydroxy-5-me
70 s carrying a Ryr2 mutation in the C-terminal channel-forming domain showed an increased odds of nonsu
71 ensus amphipathic region" (CAR), a potential channel-forming domain that is found to be evolutionaril
72 y replacing amino acids within the predicted channel-forming domain with the corresponding amino acid
73 eparation of this highly hydrophobic minimal channel-forming domain.
74 binding domains but different transmembrane, channel forming domains.
75 in Ia and diphtheria toxin N-terminal to the channel-forming domains can be translocated across plana
76                                 The 10-helix channel-forming domains of colicins Ia and E1 are struct
77             We explored whether the putative channel-forming fifth and sixth alpha-helices of Bcl-2 a
78  specific sequence, or the chirality, of the channel-forming gA analogues.
79                      Pannexin 1 (Panx1) is a channel-forming glycoprotein expressed in different cell
80                         Pannexin1 (Panx1), a channel-forming glycoprotein is expressed in neonatal bu
81 ions that are required for translocating the channel-forming helices across the lipid bilayer upon vo
82 ing pocket contains residues from 2 adjacent channel-forming helices.
83 tly reported that a water channel, aquaporin-channel-forming integral protein of 28 kDa, is present i
84         In contrast to previous data for the channel-forming integral protein of 28kDa (CHIP28), the
85            The aquaporins are a family of 10 channel-forming, integral membrane proteins of approxima
86                                          All channel-forming isoforms of TRPP channels (polycystin-2,
87 cement by a single I18'S substitution in the channel-forming M2 helix (EC50 = 979 +/- 88 muM).
88  and conformer heterogeneity of an important channel-forming membrane peptide.
89                The p7 protein is a small ion-channel-forming membrane polypeptide encoded by the hepa
90 ontaining CYP proteins to the peripheral and channel-forming mitochondrial outer membrane translocase
91 ontaining CYP proteins to the peripheral and channel-forming mitochondrial outer membrane translocase
92 l ion channel design, only a small number of channel-forming molecules are currently available for ad
93  hydroxyl, amino, and carboxyl groups of the channel-forming molecules; in particular, some hydroxyl
94 the many hydroxyl groups appended to the ion channel-forming natural product amphotericin B.
95 confirmed that megakaryocytes expressed open channel-forming NMDA receptors in vivo.
96 nit, where it could contribute to the proton-channel-forming part of the structure.
97                           Crystals of an ion-channel-forming peptaibol peptide in a partial membrane
98 he putative transmembrane segment of the ion channel forming peptide NB from influenza B was synthesi
99 t of tension on dimerization kinetics of the channel-forming peptide gramicidin A.
100 e using semisynthetic derivatives of the ion-channel-forming peptide gramicidin A.
101 nel ion conductance through pores of the ion channel-forming peptide gramicidin A.
102                           The effects of the channel-forming peptide gramicidin D (gD) on the conduct
103 tion of an anion selective pore, formed by a channel-forming peptide, has been hypothesized as a nove
104 partitioning of alamethicin, a voltage-gated channel-forming peptide, was measured as a function of t
105 cin is a helical 20-amino acid voltage-gated channel-forming peptide, which is known to exhibit segme
106 esolution atomic-level crystal structures of channel forming peptides, theory has become a powerful t
107  protein (MW approximately 30 kD) to the ion channel-forming peptides (MW approximately 2.5 kD) eithe
108                                  A number of channel-forming peptides derived from the second transme
109 riggering disruption of self-assembly of ion channel-forming peptides in planar lipid bilayers.
110 ride selectivity for the different assembled channel-forming peptides.
111                              The hydrophobic channel-forming polypeptide gramicidin adopts a left-han
112 d insertion mechanism proposed for other ion channel-forming polypeptides.
113 g sites, the neomycin binding sites, and the channel-forming portion of the Ca2+ release channel are
114 e polar Ser residues decrease the analogues' channel-forming potency by 3 orders of magnitude, indica
115 es form membrane-spanning channels, with the channel-forming potency of the Ala analogue being much l
116 rthermore, similar deletions for the related channel-forming proapoptotic Bax and Bak did not impair
117 es in the subunit conformational preference, channel-forming propensity, single channel conductance a
118 not identified any notable difference in the channel forming properties between Abeta(1-40) and Abeta
119        Anthrax toxin, which is composed of a channel-forming protein and two substrate proteins, is a
120 xport across the outer membrane requires the channel-forming protein FhaC.
121                                     A single channel-forming protein is found in yeast, whereas highe
122 s believed to be based in an outer membrane, channel-forming protein known as VDAC (voltage-dependent
123 ve been identified in mammals, including the channel-forming protein MCU.
124 ant cells are also resistant to aerolysin, a channel-forming protein secreted by Aeromonas spp., whic
125                   Connexins are gap junction channel-forming protein subunits.
126  toxin produced by Clostridium septicum is a channel-forming protein that is an important contributor
127 tors Tom20, Tom22, and Tom70 and the central channel-forming protein Tom40.
128 novel function for HPV16 E5 as an oligomeric channel-forming protein, placing it within the virus-enc
129            Mutations in Cx32, a gap-junction channel-forming protein, result in X-linked Charcot-Mari
130 ell interface, as a strong candidate for the channel-forming protein.
131           PKD proteins differ from known ion channel-forming proteins and are generally thought to ac
132                               Two classes of channel-forming proteins in the eye lens, the water chan
133                        The reconstitution of channel-forming proteins into planar lipid bilayers enab
134 ne contains a considerably larger variety of channel-forming proteins than assumed thus far.
135 receptor (nAChR) belongs to a family of five channel-forming proteins that regulate communication bet
136 n the heart whereas levels of mRNAs of other channel-forming proteins were not affected at all.
137  lens fibers contain two known intercellular channel-forming proteins, connexin50 (Cx50) and Cx46.
138  importance because loss of the gap junction channel-forming proteins, connexins Cx32 and Cx47, resul
139  that PKD subunits constitute a new class of channel-forming proteins, enriching our understanding of
140 at induce water permeability comparable with channel-forming proteins, such as aquaporins and gramici
141 onstrated that of all six sarcolemmal K(ATP) channel-forming proteins, SUR2A was probably the least e
142 annexin1 (Panx1) or Pannexin2 (Panx2) as the channel-forming proteins.
143 n RNAi screen of innexin genes, which encode channel-forming proteins.
144 rried missense mutations within the NR2B ion channel-forming re-entrant loop (p.Asn615Ile, p.Val618Gl
145 developed to study the chemical reactions of channel-forming receptor proteins in the microsecond-to-
146  the middle-coupling domain (wc703), and the channel-forming region (ka901).
147 de chain is removed, implicating this as the channel-forming region.
148  residue to influence the positions of other channel-forming residues.
149  and tested to determine the plasticity of a channel-forming sequence and to define whether channel p
150 is attributable to collaboration between the channel-forming small molecule and protein ion pumps.
151 d that PKD1L3, a PKD protein, functions as a channel-forming subunit in an acid-sensing heteromeric c
152 BK steady-state activity solely requires the channel-forming subunit slo1 within a bare lipid environ
153 is composed of three proteins, a translocase channel-forming subunit, called protective antigen (PA),
154 RAC channel activity mediated by a different channel-forming subunit.
155  backbone folding pattern is retained in the channel-forming subunits and that the substitutions prim
156                                          Two channel-forming subunits encoded by KCNH2 (hERG 1a and 1
157 v1.3 encoded by CACNA1D are dominant calcium channel-forming subunits of L-type Voltage-dependent Ca(
158 and a very similar pattern was observed when channel-forming SUR1-Kir6.2-GFP was expressed on its own
159 nduces the expression of Claudin-2, a cation-channel-forming tight junction protein.
160 OM20, or TOM22 for translocation through the channel-forming TOM40 protein.
161 OM20, or TOM22 for translocation through the channel-forming TOM40 protein.
162 pC (outer membrane protein C), and bacterial channel-forming toxin alpha-hemolysin.
163 wo primate-specific apolipoproteins: the ion channel-forming toxin ApoL1 (apolipoprotein L1) and the
164                               Aerolysin is a channel-forming toxin secreted by Aeromonas spp. that bi
165       The three-dimensional structure of the channel-forming trans-membrane domain of virus protein "
166 ions have been carried out on bundles of the channel-forming transmembrane (TM) domain of the viral p
167 main (ATD), a ligand-binding domain (LBD), a channel-forming transmembrane domain (TMD), and a carbox
168           Here, we have identified a minimum channel-forming truncation of the TD, the "beltless" TD,
169 beta1 modulates the gating properties of the channel-forming type IIA alpha subunit, resulting in an

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