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1  encoding water channels, and sensitivity to mercurial agents are typical of the expression of functi
2 ake of L-lactate was inhibited by phloretin, mercurials and alpha-cyano-4-hydroxycinnamic acid (4-CHC
3 inhibitor with respect to NADPH, and a bulky mercurial compound (p-chloromercuribenzoate) is a mixed
4                                          The mercurial compound 4-aminophenylmercuric acetate (APMA)
5 e site for inhibition of water permeation by mercurial compounds and is located near to the NPA motif
6 both carriers was saturable and inhibited by mercurial compounds and other inhibitors of mitochondria
7 d lysine, and was saturable and inhibited by mercurial compounds and other inhibitors of mitochondria
8 n 1) is activated in vitro by proteinases or mercurial compounds by stepwise processes which include
9 ased on the inhibition of water transport by mercurial compounds.
10 ptomyces griseochromogenes was the first non-mercurial fungicide used on a large scale to prevent ric
11                     The high Pf, low Ea, and mercurial inhibition indicate the involvement of molecul
12 increases were abolished with HgCl2, and the mercurial inhibition was reversible with beta-mercaptoet
13 re made of Arrhenius activation energy (Ea), mercurial inhibition, diffusional water permeability (Pd
14                                          The mercurial insensitive water channel (MIWC, AQP-4) is a w
15 by stopped-flow light scattering showed high mercurial insensitive water permeability in plasma membr
16  vesicle fraction in [+/+] mice was high and mercurial insensitive, and was decreased by 14-fold in [
17  together, these results suggest the MIWC is mercurial-insensitive because of absence of a cysteine r
18  also involves a parallel, AQP1-independent, mercurial-insensitive pathway.
19 ter channels showed strong expression of the mercurial-insensitive water channel (AQP-4) at the basol
20                                          The mercurial-insensitive water channel (MIWC or AQP-4) is a
21           Three cDNAs encoding isoforms of a mercurial-insensitive water channel (mMIWC) were cloned
22 l/baculovirus system was used to express the mercurial-insensitive water channel aquaporin-4 (AQP4) f
23 attering indicated that AQP4 functioned as a mercurial-insensitive water-selective transporter.
24                      Aquaporin-4 (AQP4) is a mercurial-insensitive, water-selective channel that is e
25  indicated that each isoform functioned as a mercurial-insensitive, water-selective channel.
26                           To investigate the mercurial insensitivity and key residues involved in MIW
27                Despite the important role of mercurials, little is known about the structural changes
28 spect to sensitivity to NaN(3), as well as a mercurial, p-chloromercuribenzosulfonic acid.
29 rough aquaporin-1 (AQP1) water channels were mercurial reagents such as HgCl(2).
30 4 +/- 0.7) x 10(-4) cm/s (10 degrees C) in a mercurial-sensitive manner.
31 n of human AQP5 in Xenopus oocytes conferred mercurial-sensitive osmotic water permeability (Pf) equi
32 enopus oocytes indicated that Aqp2 encoded a mercurial-sensitive, water-selective channel.
33  been developed to sequentially add indole-3-mercurials to dichlorinated quinones using palladium cat
34                To determine if speciation of mercurials would differentially alter GS activity and ex

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