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S Engelbrecht

Publications and source records attributed to S Engelbrecht.

At least 37 records · Page 2Linked to original sources

Detection of p53 gene mutations in oral squamous cell carcinomas of a black African population sample.

Mutations in the p53 gene have been reported in head and neck carcinomas. We determined the p53 mutation profile in 55 oral squamous cell carcinomas (OSCCs) from a black African population sample. DNA from all the patients were investigated using PCR amplification of the p53 gene (exons 5-9), followed by heteroduplex single-stranded conformational polymorphism (HEX-SSCP) analysis on the PCR products. Direct sequencing was performed on cases where mutations were identified. The results showed mutations in 13 of 55 (23.6%) tumours. Eleven of 13 (85%) were single base pair substitutions (9 transitions and 2 transversions), and 2 were deletions. Two novel mutations were identified: a large 63-base pair deletion, and a single base pair substitution. The mutations in our study occurred outside the head and neck tumour hot spot region (codons 238-248).

Adult↗

Simian immunodeficiency viruses (SIVs) from eastern and southern Africa: detection of a SIVagm variant from a chacma baboon.

Simian immunodeficiency viruses (SIVs) have been shown to infect many Old World African primate species. Thus far, no work has been published on southern African primates. In this study we investigated the genetic diversity between SIV strains from Kenyan and South African vervets (Cercopithecus aethiops pygerythrus). We amplified and sequenced a 1113 bp region of the env gene. Phylogenetic analysis of these sequences showed that all strains clustered with members of the vervet subgroup of SIVagm. The SIVs from South African vervets differed by 7% from each other and by 8-14% from the Kenyan SIV strains, while the Kenyan SIV strains differed by 10-21% from SIVagm of other east African vervets. We also isolated and sequenced, for the first time, a SIV strain from a healthy chacma baboon (Papio ursinus), caught in South Africa. Phylogenetic analysis of the env region showed the virus to be closely related to the South African vervet SIV strains, while analysis of its pol region confirmed the virus to be a SIVagm variant.

Amino Acid Sequence↗

Eosinophil granule proteins expressed in ocular cicatricial pemphigoid.

BACKGROUND: Blister formation and tissue damage in bullous pemphigoid have been attributed to the release of eosinophil granule proteins--namely, to eosinophil derived cationic protein (ECP) and major basic protein (MBP). In the present investigation these eosinophil granule proteins were studied in the conjunctiva of patients with ocular cicatricial pemphigoid (OCP). METHODS: Conjunctival biopsy specimens obtained from patients with subacute (n = 8) or chronic conjunctival disease (n = 13) were analysed histologically and immunohistochemically using antibodies directed against EG1 (stored and secreted ECP), EG2 (secreted ECP), MBP, CD45 (common leucocyte antigen), CD3 (pan T cell marker), and HLA-DR (class II antigen). RESULTS: Subepithelial mononuclear cells, mast cells, and neutrophils were detected in all specimens. The number of mononuclear cells, neutrophils, CD45+ cells, CD3+ cells, and the HLA-DR expression were significantly higher in the subacute than in the chronic disease group. Some eosinophils were found in specimens from five of eight patients with subacute OCP, but in none of the patients with chronic disease. The eosinophil granule proteins (ECP and MBP) were found in the epithelium and substantia propria in patients with subacute conjunctivitis. CONCLUSIONS: Subepithelial cell infiltration in the conjunctiva greatly differs between subacute and chronic ocular cicatricial pemphigoid specimens. The findings suggest that eosinophil granule proteins may participate in tissue damage in acute phase of inflammation in OCP.

Aged↗

Neutralization of HIV-1 subtypes: implications for vaccine formulations.

More than 20.8 million people are infected with HIV in sub-Saharan Africa, with South Africa having one of the fastest growing HIV-1 epidemics, where an estimated 2.4 million people were infected. Thirty-two sera from 25 patients were tested for their ability to neutralize HTLV-IIIB (IIIB) and four primary isolates representing subtypes B, C, D, and a recombinant gag C/env B type. A CEM-SS cell line-based assay was used and the neutralizing titer was defined as the reciprocal of the highest dilution giving a 50% reduction in p24 antigen production. All isolates were neutralized better by subtype-specific sera, except for the C4714 strain, which was neutralized by both subtype B and C sera. C4714 was neutralized by 18/25 (72%) sera, IIIB by 19/32 (59%) sera, D482 by 7/31(23%) sera, B3245 by 6/29 (21%) sera, and the recombinant B/C1491 isolate by 4/25 (16%) sera. Five sera were unable to neutralize any of the isolates. The V3 region of the isolates used in the neutralization assay was amplified by PCR, directly sequenced, and analyzed to reveal variability between the consensus HIV-1 sequences and the isolates. HIV-1 strain C4714 was neutralized more effectively with the sera tested than the IIIIB laboratory strain. Variability in the amino acid sequence of the V3 region, which can alter the conformation of the V3 loop secondary structure, can influence the neutralization of a particular viral isolate. Vaccine formulations should be broadened to include multiple subtypes, especially C subtypes, which is rapidly spreading worldwide.

AIDS Vaccines↗

Cross-linking of chloroplast F0F1-ATPase subunit epsilon to gamma without effect on activity. Epsilon and gamma are parts of the rotor.

Cys residues were directed into positions 17, 28, 41 and 85 of a Cys6-->Ser mutant of subunit epsilon of spinach chloroplast F0F1 ATP synthase. Wild-type and engineered epsilon were expressed in Escherichia coli, purified in the presence of urea, refolded and reassembled with spinach chloroplast F1 lacking the epsilon subunit [F1(-epsilon)]. Cys-containing epsilon variants were modified with a sulfhydryl-reactive photolabile cross-linker. Photocross-linking of epsilon to F1(-epsilon) yielded the same SDS gel pattern of cross-link products independent of the presence or absence of Mg2+ x ADP, phosphate and Mg2+ x ATP. Epsilon (wild type) [Ser6,Cys28]epsilon and [Ser6,Cys41]epsilon were cross-linked with subunit gamma. With chloroplast F0F1 the same cross-link pattern was obtained, except for one extra cross-link, probably between [Ser6,Cys28]epsilon and F0 subunit III. [Ser6,Cys17]epsilon and [Ser6,Cys85]epsilon did not produce cross-links. Cross-linking of epsilon, [Ser6,Cys28]epsilon, [Ser6,Cys41]epsilon to gamma in soluble chloroplast F1 impaired the ability of epsilon to inhibit Ca2+-ATPase activity. The Mg2+-ATPase activity of soluble F1 (measured in the presence of 30% MeOH) was not affected by cross-linking epsilon with gamma. Functional reconstitution of photophosphorylation in F1-depleted thylakoids was observed with F1 in which gamma was cross-linked to [Ser6,Cys28]epsilon or [Ser6,Cys41]epsilon but not with wild-type epsilon. In view of the intersubunit rotation of gamma relative to (alphabeta)3, which is driven by ATP hydrolysis, gamma and epsilon would seem to act concertedly as parts of the 'rotor' relative to the 'stator' (alphabeta)3.

Amino Acid Sequence↗

ATP synthase: a tentative structural model.

Adenosine triphosphate (ATP) synthase produces ATP from ADP and inorganic phosphate at the expense of proton- or sodium-motive force across the respective coupling membrane in Archaea, Bacteria and Eucarya. Cation flow through the intrinsic membrane portion of this enzyme (Fo, subunits ab2c9-12) and substrate turnover in the headpiece (F1, subunits alpha3beta3 gammadeltaepsilon) are mechanically coupled by the rotation of subunit gamma in the center of the catalytic hexagon of subunits (alphabeta)3 in F1. ATP synthase is the smallest rotatory engine in nature. With respect to the headpiece alone, it probably operates with three steps. Partial structures of six out of its at least eight different subunits have been published and a 3-dimensional structure is available for the assembly (alphabeta)3gamma. In this article, we review the available structural data and build a tentative topological model of the holoenzyme. The rotor portion is proposed to consist of a wheel of at least nine copies of subunits c, epsilon and a portion of gamma as a spoke, and another portion of gamma as a crankshaft. The stator is made up from a, the transmembrane portion of b2, delta and the catalytic hexagon of (alphabeta)3. As an educated guess, the model may be of heuristic value for ongoing studies on this fascinating electrochemical-to-mechanical-to-chemical transducer.

ATP Synthetase Complexes↗

Functional and idling rotatory motion within F1-ATPase.

ATP synthase mediates proton flow through its membrane portion, F0, which drives the synthesis of ATP in its headpiece, F1. The F1-portion contains a hexagonal array of three subunits alpha and three beta encircling a central subunit gamma, that in turn interacts with a smaller epsilon and with F0. Recently we reported that the application of polarized absorption recovery after photobleaching showed the ATP-driven rotation of gamma over at least two, if not three, beta. Here we extend probes of such rotation aided by a new theory for assessing continuous versus stepped, Brownian versus unidirectional molecular motion. The observed relaxation of the absorption anisotropy is fully compatible with a unidirectional and stepping rotation of gamma over three equidistantly spaced angular positions in the hexagon formed by the alternating subunits alpha and beta. The results strongly support a rotational catalysis with equal participation of all three catalytic sites. In addition we report a limited rotation of gamma without added nucleotides, perhaps idling and of Brownian nature, that covers only a narrow angular domain.

Adenosine Triphosphate↗

ATP synthase: an electrochemical transducer with rotatory mechanics.

ATP synthase (F0F1-ATPase) uses proton- or sodium-motive force to produce ATP form ADP and P(i). Three lines of experiment have recently demonstrated large-scale intersubunit rotation during ATP hydrolysis by F1. We discuss how ion flow through the membrane-intrinsic portion, F0, may generate torque and how this might be transmitted between stator and rotor to finally expel spontaneously formed ATP from F1 into water.

Adenosine Triphosphate↗

Detection of human herpes virus 8 DNA and sequence polymorphism in classical, epidemic, and iatrogenic Kaposi's sarcoma in South Africa.

The aetiology and detection of human herpes virus type 8 (HHV-8) DNA sequences in Kaposi's sarcoma (KS) is a matter of intense investigation. We report on the detection of HHV-8 DNA and sequence polymorphism in different clinicopathological subtypes of cutaneous KS samples from South Africa. The diagnosis was confirmed by histological examination in all cases. Six patients had classic KS (CKS), 3 epidemic KS (EKS), and 3 iatrogenic KS (IKS). A nested polymerase chain reaction (PCR) assay was used to detect HHV-8 DNA in cell lysates, prepared from formalin fixed, paraffin embedded sections. We investigated polymorphism in the HHV-8 DNA using single-stranded conformational polymorphism (SSCP) analysis on the PCR products, followed by direct sequencing. HHV-8 DNA was detected in all the patients with KS, irrespective of the clinicopathological subtype. Direct sequencing was performed on 5 selected cases and showed single base pair substitutions in all. The spectrum of mutations was similar to those described previously. No correlation was found between the different types of KS and sequence variation. The results support the hypothesis that HHV-8 is strongly associated with different clinicopathological subtypes of KS and confirm the occurrence of HHV-8 in patients with CKS, EKS, and IKS in South Africa.

DNA, Viral↗

Cross-linking of engineered subunit delta to (alphabeta)3 in chloroplast F-ATPase.

Ser --> Cys mutations were introduced into subunit delta of spinach chloroplast F0F1-ATPase (CF0CF1) by site-directed mutagenesis. The engineered delta subunits were overexpressed in Escherichia coli, purified, and reassembled with spinach chloroplast F1-ATPase (CF1) lacking the delta subunit (CF1(-delta)). By modification with eosin-5-maleimide, it was shown that residues 10, 57, 82, 160, and 166 were solvent-accessible in isolated CF1 and all but residue 166 also in membrane-bound CF0CF1. Modification of the engineered delta subunit with photolabile cross-linkers, binding of delta to CF1(-delta), and photolysis yielded the same SDS gel pattern of cross-link products in the presence or absence of ADP, phosphate, and ATP and both in soluble CF1 and in CF0CF1. By chemical hydrolysis of cross-linked CF1, it was shown that deltaS10C was cross-linked within the N-terminal 62 residues of subunit beta. deltaS57C, deltaS82C, and deltaS166C were cross-linked within the N-terminal 192 residues of subunit alpha. Cross-linking affected neither ATP hydrolysis by soluble CF1 nor its ability to reassemble with CF0 and to structurally reconstitute ATP synthesis. Functional reconstitution, however, seemed to be impaired.

Adenosine Triphosphate↗

Intersubunit rotation in active F-ATPase.

The enzyme ATP synthase, or F-ATPase, is present in the membranes of bacteria, chloroplasts and mitochondria. Its structure is bipartite, with a proton-conducting, integral membrane portion, F0, and a peripheral portion, F1. Solubilized F1 is composed of five different subunits, (alpha beta)3 gamma delta epsilon, and is active as an ATPase. The function of F-ATPase is to couple proton translocation through F0 with ATP synthesis in F1 (ref.3). Several lines of evidence support the spontaneous formation of ATP on F1 (refs 4,5) and its endergonic release at cooperative and rotating (or at least alternating) sites. The release of ATP at the expense of protonmotive force might involve mechanical energy transduction from F0 into F1 by rotation of the smaller subunits (mainly gamma) within (alpha beta)3, the catalytic hexagon of F1 as suggested by electron microscopy, by X-ray crystal structure analysis and by the use of cleavable crosslinkers. Here we record an intersubunit rotation in real time in the functional enzyme by applying polarized absorption relaxation after photobleaching to immobilized F1 with eosin-labelled gamma. We observe the rotation of gamma relative to immobilized (alpha beta)3 in a timespan of 100 ms, compatible with the rate of ATP hydrolysis by immobilized F1. Its angular range, which is of at least 200 degrees, favours a triple-site mechanism of catalysis, with gamma acting as a crankshaft in (alpha beta)3. The rotation of gamma is blocked when ATP is substituted with its non-hydrolysable analogue AMP-PNP.

Adenosine Triphosphate↗

Reassembly of Synechocystis sp. PCC 6803 F1-ATPase from its over-expressed subunits.

Subunits alpha, beta, and gamma of the F1-part of cyanobacterial F0F1-ATPase have been cloned into expression vectors. Over-expressed subunit beta was found soluble in the cytoplasmic fraction of Escherichia coli cells under appropriate culture and induction conditions and was purified from cell extracts. Recombinant alpha and gamma subunits precipitated into inclusion bodies and had to be solubilized, purified and refolded. The correct folding and functional integrity of the alpha and beta subunits was monitored by their ability to bind nucleotides. Active cyanobacterial F1-ATPase was assembled from its purified subunits alpha, beta, gamma, delta and epsilon. The reassembled enzyme reconstituted ATP synthesis in F1-depleted thylakoid membranes of Synechocystis sp. PCC 6803 and hydrolyzed ATP.

Adenosine Triphosphate↗

Detection of southern African human immunodeficiency virus type 1 subtypes by polymerase chain reaction: evaluation of different primer pairs and conditions.

The purpose of the study was to develop a specific and sensitive PCR protocol using env, gag and LTR primer pairs to detect HIV-1 subtypes present in the Western Cape, South Africa. Twenty-two virus strains, belonging to HIV-1 subtypes B, C and D, were randomly selected for PCR evaluation. Cell lysates prepared from these virus-infected cultured cells were tested using 5 different primer pairs: gag SK38/SK39; gag 22/SK39; gag a/b, gag c/d (nested); env SK68/SK69 and LTR SK29/SK30. Eight different PCR profiles were evaluated: one profile each for the 3 gag primer pairs, 3 profiles for the env and 2 profiles for the LTR primer pairs. The number of PCR cycles, time per cycle and/or annealing temperature were changed in each profile. The optimum PCR profile for a specific primer pair was defined as that which detected one copy of proviral plasmid DNA after dot-blot hybridisation. Gag primer pairs detected HIV-1 DNA in all 22 samples. With the env primer pair, suboptimal conditions failed to detect most of the HIV-1 subtype C samples. By increasing the number of cycles and time per cycle, a 100% sensitivity was achieved. With the LTR primer pair all samples were detected by decreasing the annealing temperature and increasing the individual cycle times. This confirms that once PCR conditions are optimised, all HIV-1 subtypes in our study could be detected using different PCR primer pairs.

AIDS-Related Complex↗

Purification and characterization of the inhibitory subunit (delta) of the ATP-synthase from Micrococcus luteus.

Subunit delta was isolated from the ATP-synthase from Micrococcus luteus strain (ATCC 4698). delta, in the case of M. luteus F0F1-ATPase, acts as an inhibitor of ATP hydrolysis and thus resembles subunits in E. coli and chloroplast ATP-synthase. After treatment with 1.5 M LiCl the ATP-synthase dissociated, and subsequently subunit delta (27 kDa) was purified by hydrophobic interaction chromatography. Inhibition of ATP-synthase lacking delta by addition of delta showed non-competitive kinetics with a Ki of approximately 5.9 nM. Subunit epsilon from chloroplast F1, which corresponds functionally to the M. luteus F0F1-delta, and chloroplast delta were tested for ATPase inhibitory activity by addition to the partially delta-depleted ATP-synthase from M. luteus. CF1-epsilon inhibited M. luteus ATP-synthase up to 80%, whereas CF1-delta did not show any influence.

Adenosine Triphosphate↗

Over-production, renaturation and reconstitution of delta and epsilon subunits from chloroplast and cyanobacterial F1.

We studied the functioning of chimeric F0F1-ATPases by replacing subunits delta and epsilon of spinach CF1 with their counterparts from Synechocystis sp. PCC 6803. The sequence identities between these subunits are 26 and 41%, respectively. For a systematic approach to such studies and later extension to genetically modified subunits recombinant proteins are required. The genes coding for spinach and Synechocystis delta and epsilon were cloned into pET3 expression vectors and expressed in Escherichia coli. Upon expression at 37 degrees C the recombinant subunits formed inclusion bodies within the host cells except for spinach delta, which was soluble. Synechocystis delta and epsilon could be obtained in soluble form upon expression at 20 degrees C. After purification (and refolding of spinach epsilon) both epsilon subunits inhibited the Ca(2+)-ATPase activity of soluble CF1(- epsilon). Subunits delta and epsilon from both species raised the rate of ATP synthesis in partially CF1-depleted spinach thylakoids when added together with CF1(- delta) or CF1(- delta, epsilon). This showed the functionality of recombinant Synechocystis and spinach delta and epsilon together with spinach alpha 3 beta 3 gamma. The molar excess of epsilon necessary for saturation was higher for Ca(2+)-ATPase inhibition than for reconstitution of photophosphorylation thus pointing to a direct interaction between epsilon and both CF1 and CF0.

Amino Acid Sequence↗

Complementation of Escherichia coli uncD mutant strains by a chimeric F1-beta subunit constructed from E. coli and spinach chloroplast F1-beta.

ATP-synthesizing F0F1-ATPases are complex enzymes consisting of at least eight different subunits. These subunits are conserved during evolution to a very variable degree ranging in pairwise comparison between, for example, Escherichia coli and spinach chloroplast from 20% to 66% identical residues. It was surprising to find that some of the less well conserved subunits like delta and epsilon could replace their E. coli counterparts, whereas the highly conserved beta subunit, which carries the active site, in the E. coli enzyme could not be substituted by spinach chloroplast beta (Lill et al. (1993) Biochim. Biophys. Acta 1144, 278-284). We constructed a chimeric F1-beta subunit consisting of spinach beta in which the 96 N-terminal amino acids were replaced by the respective residue sequence from E. coli beta. Whereas spinach beta did not complement E. coli uncD mutant strains, the chimeric beta subunit restored growth under conditions of oxidative phosphorylation.

Amino Acid Sequence↗