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Andrew R Pettitt

Publications and source records attributed to Andrew R Pettitt.

9 recordsLinked to original sources

Basic fibroblast growth factor suppresses p53 activation in the neoplastic cells of a proportion of patients with chronic lymphocytic leukaemia.

p53 is the most frequently inactivated gene in human cancers, reflecting its pivotal role in maintaining genomic integrity. The present study was conducted to explore the possibility that tumour cells with no intrinsic defects of the p53 pathway might nevertheless acquire p53 dysfunction through extrinsic suppression of the pathway by microenvironmental factors. Neoplastic cells from patients with chronic lymphocytic leukaemia (CLL) were cultured in the presence or absence of basic fibroblast growth factor (bFGF) and exposed to ionizing radiation (IR) to induce p53 accumulation. bFGF is greatly increased in the plasma of CLL patients and can suppress p53 activation in some experimental models. IR induced a marked increase in p53 levels in 28 samples from 24 patients. bFGF inhibited IR-induced p53 accumulation to some extent in most of these samples and by more than 50% in seven samples from seven patients. Suppression of p53 activation by bFGF was frequently but not always accompanied by upregulation of the p53-inhibitory protein MDM2 and/or phosphorylation of MDM2 at serine 166, and was associated with impaired transcriptional activation of the p53 target gene p21. These observations provide the first demonstration in human cancer cells that the p53 pathway can be suppressed by factors in the tumour-cell microenvironment.

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The ATR-p53 pathway is suppressed in noncycling normal and malignant lymphocytes.

Chronic lymphocytic leukaemia (CLL) results from the accumulation of apoptosis-resistant clonal B cells that are arrested in G0/G1, and is heterogeneous with respect to clinical outcome. An aggressive form of the disease is identified by an impaired p53 response to ionizing radiation (IR). This is associated with inactivating mutations of either p53 or ATM, a regulator of p53 activated by IR-induced DNA damage. Since other forms of DNA damage activate p53 via ATR, a kinase closely related to ATM, abnormalities of the ATR-p53 pathway also have the potential to result in p53 dysfunction. We therefore tested cases of CLL for abnormal p53 responses to ultraviolet irradiation (UVC), a known activator of ATR, to screen for additional forms of p53 dysfunction. CLL cells and normal peripheral blood mononuclear cell (PBMC) preparations (predominantly noncycling lymphocytes) were treated with UVC and assessed for p53 responses. In all of the CLL cases and PBMC preparations tested, we were unable to detect p53 accumulation, phosphorylation or transcriptional consequences in response to UVC-induced DNA damage. The most likely explanation for the absence of UVC-induced p53 activation in CLL and normal lymphocytes was that, in contrast to other cell types, the UVC-induced ATR pathway was inactive. This notion was confirmed by showing that ATR protein was absent or undetectable in all of the cases of CLL and normal PBMCs screened. This was an unexpected finding because ATR was thought to be essential for the viability of somatic cells and for normal human and murine embryonic development. An obvious difference between the cell lines used as positive controls for ATR antibodies and the CLL cells/PBMCs was that the former were actively cycling while the latter were quiescent. We therefore hypothesized that the ATR-p53 pathway is selectively downregulated in noncycling lymphocytes. To test this, we induced cycling in the T-cell fraction of PBMC preparations and demonstrated that ATR protein expression was restored. Furthermore, p53 was upregulated and phosphorylated in response to UVC in these cells. Our data support the conclusion that the ATR-p53 pathway is suppressed in noncycling lymphocytes via ATR downregulation. We tentatively suggest that this repressed DNA damage response may have evolved to protect quiescent lymphocytes from the potential for p53-dependent apoptosis in the face of some forms of endurable genotoxic stress. If this is the case, DNA repair and genome stability might be compromised in quiescent lymphocytes with potentially negative consequences.

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Correlation between cell size and CD38 expression in chronic lymphocytic leukaemia.

Both CD38 expression and increased cell size are features of B-lymphocyte activation and have been implicated as adverse prognostic factors in B-cell chronic lymphocytic leukaemia (CLL). We therefore examined the relationship between these two variables by FACS analysis in 140 consecutive CLL patients. Using the mean forward-angle light scatter (FSC) as a measure of cell size, circulating B lymphocytes were found to be significantly larger in "CD38-positive" cases (those in which the antigen was expressed in at least 20% of the malignant cells) as compared with "CD38-negative" patients (p = 0.029). Furthermore, within individual cases B lymphocytes expressing CD38 were, on average, significantly larger than cells that did not express the antigen (p < 0.0001). Finally, when B lymphocytes of individual "CD38-positive" cases were arbitrarily divided into large and small subpopulations using their mean FSC as a cut-off, CD38 was found to be more frequently expressed on the larger cells (p < 0.0001). This strong positive correlation between CD38 expression and cell size implicates cell activation as a possible underlying determinant of both tumour-cell phenotype and clinical outcome in CLL.

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Relationship between p53 dysfunction, CD38 expression, and IgV(H) mutation in chronic lymphocytic leukemia.

Established adverse prognostic factors in chronic lymphocytic leukemia (CLL) include CD38 expression, relative lack of IgV(H) mutation, and defects of the TP53 gene. However, disruption of the p53 pathway can occur through mechanisms other than TP53 mutation, and we have recently developed a simple screening test that detects p53 dysfunction due to mutation of the genes encoding either p53 or ATM, a kinase that regulates p53. The present study was conducted to examine the predictive value of this test and to establish the relationship between p53 dysfunction, CD38 expression, and IgV(H) mutation. CLL cells from 71 patients were examined for IgV(H) mutation, CD38 expression, and p53 dysfunction (detected as an impaired p53/p21 response to ionizing radiation). Survival data obtained from 69 patients were analyzed according to each of these parameters. Relative lack of IgV(H) mutation (less than 5%; n = 45), CD38 positivity (antigen expressed on more than 20% of malignant cells; n = 19), and p53 dysfunction (n = 19) were independently confirmed as adverse prognostic factors. Intriguingly, all p53-dysfunctional patients and all but one of the CD38(+) patients had less [corrected] than 5% IgV(H) mutation. Moreover, patients with p53 dysfunction and/or CD38 positivity (n = 31) accounted for the short survival of the less mutated group. These findings indicate that the poor outcome associated with having less than 5% IgV(H) mutation may be due to the overrepresentation of high-risk patients with p53 dysfunction and/or CD38 positivity within this group, and that CD38(-) patients with functionally intact p53 may have a prolonged survival regardless of the extent of IgV(H) mutation.

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Response of hairy cells to IFN-alpha involves induction of apoptosis through autocrine TNF-alpha and protection by adhesion.

Although hairy cell leukemia is uniquely sensitive to interferon-alpha (IFN-alpha), the biologic basis for this phenomenon remains unclear. Here we examine the effects of IFN-alpha on cultured hairy cells (HCs), taking into account the possible modifying influence of cell adhesion. We make the novel observation that therapeutic concentrations of IFN-alpha kill nonadherent HCs by inducing apoptosis. In keeping with the persistence of HCs in tissues during therapy, such killing was inhibited by integrin-mediated adhesion to vitronectin or fibronectin. Exposure of HCs to IFN-alpha resulted in a marked increase in tumor necrosis factor-alpha (TNF-alpha) secretion. Furthermore, blocking antibodies to TNF-RI or TNF-RII protected HCs from IFN-alpha-induced apoptosis, demonstrating that such killing was mediated by TNF-alpha. In the absence of IFN-alpha, exogenous TNF-alpha did not induce HC apoptosis, showing that IFN-alpha sensitized HCs to the proapoptotic effect of autocrine TNF-alpha. This sensitization to TNF-alpha-induced killing was attributable to suppression of IAP (inhibitors of apoptosis) production known to be regulated by the cytoprotective nuclear factor-kappaB-dependent arm of TNF-alpha signaling. Moreover, engagement of the receptors for fibronectin or vitronectin prevented this IFN-alpha-induced down-regulation of IAPs. Understanding of the signals involved in the combined effects of IFN-alpha and TNF-alpha and abrogation of those induced by integrin engagement offers the possibility of sensitizing other malignant cells to IFN-alpha-induced killing and thereby extending the therapeutic use of this cytokine.

Apoptosis↗

Cytoprotective antioxidant activity of serum albumin and autocrine catalase in chronic lymphocytic leukaemia.

Chronic lymphocytic leukaemia (CLL) cells are long lived in vivo but undergo spontaneous apoptosis when cultured in vitro. Intriguingly, CLL cells also appear to have a specific susceptibility to oxidative stress - a potent inducer of apoptosis. Here, we show that serum albumin can function as a cytoprotective antioxidant of potential relevance to circulating CLL cells, and that autocrine catalase - a hydrogen peroxide-inactivating enzyme that may be released extracellularly - can perform a similar role under the crowded conditions that prevail at sites of tissue involvement. Albumin lowered oxidative stress in cultured CLL cells and inhibited spontaneous and reactive oxidant-induced apoptosis. Maximal effects were observed at a concentration of 10 mg/ml - fourfold lower than that in plasma and twofold higher than that in standard culture medium containing 10% fetal calf serum. Oxidative stress and spontaneous apoptosis were also decreased by cell crowding and by conditioned medium (CM) from crowded CLL cells, indicating that these processes were subject to autocrine regulation. CLL cells were found to express catalase and release enzyme activity into the culture medium. Exogenous catalase decreased oxidative stress and spontaneous apoptosis, and the anti-apoptotic effect of CM from crowded CLL cells was abrogated by the specific catalase inhibitor, 3'-amino-1,2,4-triazole. Together, these data strongly implicate autocrine catalase as a cytoprotective antioxidant. Oxidative stress in CLL cells was greatly diminished by ruthenium red - an inhibitor of mitochondrial reactive oxidant production - and by the glutathione (GSH) precursor N-acetylcysteine, suggesting that the GSH peroxidase antioxidant system may be compromised by lack of available substrate. Our findings highlight the importance of endogenous reactive oxidants in regulating CLL-cell apoptosis, and help to explain why CLL cells survive for prolonged periods in vivo despite their vulnerability to oxidative stress and spontaneous apoptosis when cultured in vitro.

Acetylcysteine↗