<?xml version="1.0" encoding="UTF-8"?><?xml-stylesheet type="text/xsl" href="static/style.xsl"?><OAI-PMH xmlns="http://www.openarchives.org/OAI/2.0/" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="http://www.openarchives.org/OAI/2.0/ http://www.openarchives.org/OAI/2.0/OAI-PMH.xsd"><responseDate>2026-09-22T20:00:01Z</responseDate><request verb="GetRecord" identifier="oai:bura.brunel.ac.uk:2438/7875" metadataPrefix="dim">https://bura.brunel.ac.uk/oai/request</request><GetRecord><record><header><identifier>oai:bura.brunel.ac.uk:2438/7875</identifier><datestamp>2014-11-01T13:20:00Z</datestamp><setSpec>com_2438_23</setSpec><setSpec>com_2438_58</setSpec><setSpec>col_2438_3672</setSpec><setSpec>col_2438_166</setSpec></header><metadata><dim:dim xmlns:dim="http://www.dspace.org/xmlns/dspace/dim" xmlns:doc="http://www.lyncode.com/xoai" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="http://www.dspace.org/xmlns/dspace/dim http://www.dspace.org/schema/dim.xsd">
<dim:field mdschema="dc" element="contributor" qualifier="advisor">Slater, TF</dim:field>
<dim:field mdschema="dc" element="contributor" qualifier="advisor">Cheeseman, KH</dim:field>
<dim:field mdschema="dc" element="contributor" qualifier="author">Li, Li</dim:field>
<dim:field mdschema="dc" element="date" qualifier="accessioned">2014-01-14T11:57:21Z</dim:field>
<dim:field mdschema="dc" element="date" qualifier="available">2014-01-14T11:57:21Z</dim:field>
<dim:field mdschema="dc" element="date" qualifier="issued">1992</dim:field>
<dim:field mdschema="dc" element="identifier" qualifier="uri">http://bura.brunel.ac.uk/handle/2438/7875</dim:field>
<dim:field mdschema="dc" element="description" lang="en_US">This thesis was submitted for the degree of Doctor of Philosophy and was awarded by Brunel University.</dim:field>
<dim:field mdschema="dc" element="description" qualifier="abstract" lang="en_US">1). The effect of temperature, P450 inhibitors (pyrazole and imidazole),&#xd;
sulphydryl reagents (iodoacetamide and N-ethyl maleimide) and&#xd;
glutathione on the activation of CCl4 in rat liver microsomes was&#xd;
studied. Spin trapping of CCI3', covalent binding of CCl4 to protein and&#xd;
CCl4-dependent MDA formation were used as indices of CCl4&#xd;
metabolism. Formation of PBN-CCI3' adduct, 14CCl4 covalent binding to&#xd;
protein and CCl4-dependent :MDA production were dependent on&#xd;
temperature range from 15-40°C. The transition temperature was at&#xd;
26.7 -27 .5°C when the activation was measured by formation of PBNCCl3' adduct and specific 14CCl4 covalent binding. The transition&#xd;
temperature was found to be 34.3°C when CCl4 -dependent MDA&#xd;
production was taken as the index of the activation of CCI4. Pyrazole,&#xd;
imidazole and iodoacetamide inhibited CC14 -dependent MDA formation&#xd;
only at high concentrations (10-20 mM), whereas glutathione showed a&#xd;
strong inhibitory effect on CCl4-stimulated lipid peroxidation. MDA&#xd;
formation was nearly 100°;6 inhibited by 1 roM GSH. GSH also delayed&#xd;
the onset of lipid peroxidation. N-ethyl maleimide (NEM) exerted&#xd;
biphasic effects on CCl4 -dependent MDA formation. The lower&#xd;
concentration of NEM (0.5 mM-l mM) reduced the :MDA prodUction,&#xd;
while the higher concentration of NEM (5-10 mM) enhanced the MDA&#xd;
formation.&#xd;
2). Ribonucleotide reductase was partially purified from juvenile&#xd;
normal rat liver. The enzyme was purified 30 fold after DEAE-cellulose&#xd;
chromatography. The CDP reductase activity in tissues with different&#xd;
growth states or rates was compared. The enzyme activity was&#xd;
developed well in juvenile rat liver, regenerating liver and hepatoma&#xd;
(cells), while the enzyme activity was undetectable in adult rat liver&#xd;
and sham-operated rat liver. The enzyme activity in Yoshida cells was&#xd;
3-fold of the activity in Morris 5123tc tumours. Dithiothreitol (DIT)&#xd;
activated the activity of CDP reductase from 48h and 60h regenerating&#xd;
liver, but DIT did not activate the enzyme activity of juvenile 'normal&#xd;
rat liver. The possible mechanism of the activation of enzyme activity by&#xd;
DIT was discussed and a mechanism of regulation of the&#xd;
ribonucleotide reductase activity in regenerating liver was suggested.&#xd;
3). The effect of the lipid peroxidation product 4-hydroxynonenal&#xd;
(HNE) on CDP reductase from juvenile normal rat liver was&#xd;
investigated. HNE inhibited the CDP reductase activity. The inhibition&#xd;
was dependent on the concentration of HNE and the incubation time.&#xd;
The enzyme activity was reduced 500/0 by 0.1 roM HNE. The inhibitory&#xd;
effect of HNE was irreversible. DIT protected the enzyme against HNE&#xd;
suggesting that HNE inhibited the activity of ribonucleotide reductase&#xd;
from rat liver through the mechanism of blockage of functional SH&#xd;
groups in the enzyme protein.</dim:field>
<dim:field mdschema="dc" element="description" qualifier="provenance" lang="en">Submitted by Terese Jonsson (terese.jonsson@brunel.ac.uk) on 2014-01-14T11:56:55Z&#xd;
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<dim:field mdschema="dc" element="language" qualifier="iso" lang="en_US">en</dim:field>
<dim:field mdschema="dc" element="relation" qualifier="uri">http://bura.brunel.ac.uk/bitstream/2438/7875/1/FulltextThesis.pdf</dim:field>
<dim:field mdschema="dc" element="subject" lang="en_US">Ribonucleotide reductase</dim:field>
<dim:field mdschema="dc" element="subject" lang="en_US">4-hydroxynonenal</dim:field>
<dim:field mdschema="dc" element="subject" lang="en_US">Carbon tetrachloride activation</dim:field>
<dim:field mdschema="dc" element="subject" lang="en_US">Dividing cells</dim:field>
<dim:field mdschema="dc" element="title" lang="en_US">Ribonucleotide reductase in dividing cells: Purification and inhibition studies with 4-hydroxynonenal</dim:field>
<dim:field mdschema="dc" element="type" lang="en_US">Thesis</dim:field>
</dim:dim>
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