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991.
Pani A Batetta B Putzolu M Sanna F Spano O Piras S Mulas MF Bonatesta RR Amat di S Filippo C Vargiu L Marceddu T Sanna L La Colla P Dessì S 《Cellular and molecular life sciences : CMLS》2000,57(7):1094-1102
The product of the MDR1 gene (P-gp) has been implicated in the transport of cholesterol from plasma membrane to endoplasmic reticulum for esterification.
In previous studies on leukemia cell lines, we suggested that cholesterol esterification may regulate the rate of cell growth
and that the MDR1 gene might be involved in this process by modulating intracellular cholesterol esters levels. To further investigate this
matter, the rate of cell growth, cholesterol metabolism, expression of the MDR1 gene, and P-gp activity were compared in KB cell lines displaying differences in expression and function of P-gp (drug-sensitive
phenotype versus MDR phenotype). The rate of cell growth correlated with cholesterol esterification in all KB cell lines,
whereas the over-expression of MDR1 observed in the MDR cell lines was not always associated with an increased capacity of cells to esterify cholesterol. Two
known inhibitors of P-gp activity, progesterone and verapamil, strongly inhibited both cholesterol esterification and cell
proliferation in all KB cell lines, but they affected intracellular accumulation of labeled vinblastine only in MDR cell lines.
These results further support a role for cholesterol esters in the regulation of cell growth and suggest that the P-gp expressed
in MDR KB cells is not involved in the general process leading to cholesterol esterification.
Received 14 February 2000; received after revision 10 April 2000; accepted 8 May 2000 相似文献
992.
The role of ras and other low molecular weight guanine nucleotide (GTP)-binding proteins during hematopoietic cell differentiation 总被引:5,自引:0,他引:5
Recent progress in the understanding of signal transduction and gene regulation in hematopoietic cells has shown that many intracellular signalling pathways are modulated by low molecular weight guanine nucleotide (GTP)-binding proteins (LMWGs). LMWGs act as molecular switches for regulating a wide range of signal-transduction pathways in virtually all cells. In hematopoietic cells, LMWGs have been shown to participate in essential functions such as growth control, differentiation, cytoskeletal organization, cytokine and chemoattractant-induced signalling events, reduced nicotinamide adenine dinucleotide phosphate oxidase activity, intracellular vesicle transport and secretion. In human leukemias, myelodysplastic syndromes and myeloproliferative disorders, Ras activation occurs by point mutations, overexpression or by alteration of NF-1 Ras-GTPase activating protein (GAP). These are postinitiation events in leukemia but may modulate growth-factor-dependent and independent leukemic growth. Two animal models of mutated N-ras expression resulting in myelodysplastic and myeloproliferative features are discussed. The role of Ras in organ development is discussed in the context of transgenic knockout mice. More LMWG functions will certainly be identified as we gain a better understanding of regulatory pathways modulating myeloid signal transduction. This review will summarize our current understanding of this rapidly advancing area of research. 相似文献
993.
Selenium: an insulin-mimetic 总被引:17,自引:0,他引:17
Stapleton SR 《Cellular and molecular life sciences : CMLS》2000,57(13-14):1874-1879
Insulin or agents that can mimic its action (insulin-mimetics) are necessary to promote the entry of glucose into tissues where the glucose can either be converted into energy or stored for later use. In recent years, selenium has been shown to mediate a number of insulin-like actions both in vivo and in vitro. These insulin-like actions include stimulating glucose uptake and regulating metabolic processes such as glycolysis, gluconeogenesis, fatty acid synthesis and the pentose phosphate pathway. The mechanism by which selenium is capable of mimicking insulin is not clear; however, reports indicate that selenium does activate key proteins involved in the insulin-signal cascade. Various proteins in the insulin-signal cascade have been shown to be necessary for different insulin-regulated events, and presumably data will be forthcoming soon that illustrate this similarly for selenium. This review compares the action of selenium to that of insulin and discusses the available evidence in support of selenium as an insulin-mimetic. 相似文献
994.
Regulation of transcription factors by protein degradation 总被引:4,自引:0,他引:4
995.
996.
Recent insights on RNA folding mechanisms from catalytic RNA 总被引:5,自引:0,他引:5
Woodson SA 《Cellular and molecular life sciences : CMLS》2000,57(5):796-808
997.
Peschke E Ebelt H Brömme HJ Peschke D 《Cellular and molecular life sciences : CMLS》2000,57(1):158-164
This study compares functional and morphological alterations caused by application of alloxan, streptozotocin, xanthine oxidase/hypoxanthine
(generation of reactive oxygen species), or S-nitroso-N-acetyl-D,L-penicillamine (SNAP, liberation of nitric oxide) to isolated
rat pancreatic islets in vitro. In perifusion experiments, membrane leakage—detected by non-stimulated insulin release—was
found after application of all drugs, but showed a substance-specific time pattern. Twenty-four hours after application of
the classical diabetogens (alloxan or streptozotocin), potassium chloride- and glucose-stimulated insulin secretion were markedly
reduced, while a persistent reduction was observed neither after exposure to xanthine oxidase/hypoxanthine, nor to SNAP. Morphological
analysis of the islets revealed that nearly all β-cells were destroyed following alloxan or streptozotocin treatment, while the majority of β-cells were configured regularly after application of xanthine oxidase/hypoxanthine or SNAP. Necrotic cells found after xanthine
oxidase/hypoxanthine usually differed in morphology from those observed after application of the classical diabetogens. While
the former cells were characterised by swollen nuclei, the latter had shrunken nuclei with irregular condensed chromatin.
Apoptosis was found only following nitric oxide exposure. Due to these differences, it seems unlikely that alloxan, streptozotocin,
xanthine oxidase/hypoxanthine, and nitric oxide have a common major feature in their toxic action.
Received 16 September 1999; received after revision 15 November 1999; accepted 26 November 1999 相似文献
998.
Oxidative stress and hypoxia-like injury cause Alzheimer-type molecular abnormalities in central nervous system neurons 总被引:11,自引:0,他引:11
de la Monte SM Neely TR Cannon J Wands JR 《Cellular and molecular life sciences : CMLS》2000,57(10):1471-1481
Neuronal loss and neuritic/cytoskeletal lesions (synaptic disconnection and proliferation of dystrophic neurites) represent
major dementia-associated abnormalities in Alzheimer’s disease (AD). This study examined the role of oxidative stress as a
factor contributing to both the cell death and neuritic degeneration cascades in AD. Primary neuron cultures were treated
with H2O2 (9–90 μM) or desferrioxamine (2–25 μM) for 24 h and then analyzed for viability, mitochondrial mass, mitochondrial function,
and pro-apoptosis and sprouting gene expression. H2O2 treatment causes free-radical injury and desferrioxamine causes hypoxia-type injury without free radical generation. The
H2O2-treated cells exhibited sustained viability but neurite retraction, impaired mitochondrial function, increased levels of
the pro-apoptosis gene product CD95/Fas, reduced expression of N2J1-immunoreactive neuronal thread protein and synaptophysin,
and reduced distribution of mitochondria in neuritic processes. Desferrioxamine treatment resulted in dose-dependent neuronal
loss associated with impaired mitochondrial function, proliferation of neurites, and reduced expression of GAP-43, which has
a role in path-finding during neurite outgrowth. The results suggest that oxidative stress can cause neurodegeneration associated
with enhanced susceptibility to apoptosis due to activation of pro-apoptosis genes, neurite retraction (synaptic disconnection),
and impaired transport of mitochondria to cell processes where they are likely required for synaptic function. In contrast,
hypoxia-type injury causes neuronal loss with proliferation of neurites (sprouting), impaired mitochondrial function, and
reduced expression of molecules required to form and maintain synaptic connections. Since similar abnormalities occur in AD,
both oxidative stress and hypoxic injury can contribute to AD neurodegeneration.
Received 24 May 2000; received after revision 7 July 2000; accepted 27 July 2000 相似文献
999.
Calvete JJ Costa FH Saker-Sampaio S Murciano MP Nagano CS Cavada BS Grangeiro TB Ramos MV Bloch C Silveira SB Freitas BT Sampaio AH 《Cellular and molecular life sciences : CMLS》2000,57(2):343-350
The primary structure of a lectin isolated from the red alga Bryothamnion triquetrum was established by combination of Edman degradation of sets of overlapping peptides and mass spectrometry. It contains 91 amino acids and two disulphide bonds. The primary structure of the B. triquetrum lectin does not show amino acid sequence similarity with known plant and animal lectin structures. Hence, this protein may be the paradigm of a novel lectin family. 相似文献
1000.
Differential basal synthesis of Hsp70/Hsc70 contributes to interindividual variation in Hsp70/Hsc70 inducibility 总被引:7,自引:0,他引:7
Boshoff T Lombard F Eiselen R Bornman JJ Bachelet M Polla BS Bornman L 《Cellular and molecular life sciences : CMLS》2000,57(8-9):1317-1325
The source of intraspecies variation in the expression of heat shock proteins (HSPs) remains unresolved but could shed light
on differential stress tolerance and disease susceptibility. This study investigated the influence of variable basal HSP synthesis
on differential inducibility of HSP synthesis. Basal and heat-induced synthesis of the major HSP families in peripheral blood
monocytes from healthy donors (n=42) were analysed using biometabolic labelling and densitometry. Basal Hsp70/Hsc70 synthesis
and percentage induction of Hsp70/Hsc70 synthesis were significantly correlated (r=−0.57, p<0.0001), and described most accurately
by an exponential decay equation (R=0.68, R2=0.46). This regression equation suggests that increasing levels of basal Hsp70/Hsc70 synthesis are accompanied byan exponential
decrease in the percentage induction of Hsp70/Hsc70 synthesis. The model fits data from European and non-European population
groups independently, although both coefficients in the regression equation were larger for non-Europeans. This implies population
group as an additional factor influencing differential HSP expression. The differential inducibility of Hsp70/Hsc70 due to
variable basal synthesis of Hsp70/Hsc70 and based upon population group may contribute to differential stress tolerance or
disease susceptibility.
Received 27 March 2000; received after revision 19 June 2000; accepted 20 June 2000 相似文献