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Biomedical subjects

M Abbate

Publications and source records attributed to M Abbate.

At least 55 records · Page 3Linked to original sources

Growth of LLC-PK1 renal cells is mediated by EGR-1 up-regulation of G protein alpha i-2 protooncogene transcription.

The early growth response zinc finger transcription factor (EGR-1) and the heterotrimeric guanine nucleotide binding protein encoded by the protooncogene G alpha i-2 each play pivotal roles in signaling pathways that control cell growth and differentiation. The G alpha i-2 gene 5'-flanking region contains a putative binding site (5'-CGCCCCCGC-3') for EGR-1 that may allow it to be a target gene for EGR-1 mitogenic signaling. We now demonstrate in LLC-PK1 renal cells the temporal expression of EGR-1 protein by immunoblotting and immunocytochemistry coincident with the maximal activation of the G alpha i-2 gene during cell growth. To determine whether G alpha i-2 or EGR-1 influence epithelial cell growth, LLC-PK1 cells were transiently transfected with plasmids encoding cDNAs for G alpha i-2 (pRSV G alpha i-2) or EGR-1 (pRSV EGR-1) driven by a viral Rous sarcoma promoter enhancer to overexpress each protein. Following transfection, cell growth was examined in media containing either 10 or 0.1% fetal bovine serum. Only cells transfected with plasmids encoding G alpha i-2 and EGR-1 had growth rates greater than that of serum replete cohorts. To assess whether EGR-1 was contributing to the transcriptional activation of the G alpha i-2 gene, cells were cotransfected with pRSV EGR-1 and plasmids encoding firefly luciferase reporter genes fused to 5'-flanking areas of the G alpha i-2 gene containing either the EGR-1 binding site or a mutated EGR-1 binding site (5'-AAAAACCGC-3'). A 320% enhancement of G alpha i-2 transcription was found only in LLC-PK1 cells following their transfection with plasmids that contained both the EGR-1 binding site and overexpressed EGR-1 protein. Utilizing mobility shift assays, which compared nuclear extracts from cells before and after cell polarization, a probe containing the EGR-1 motif detected induced nuclear protein complexes during transcriptional activation of the G alpha i-2 gene. An anti-EGR-1 antibody specifically retarded the mobility of the induced nuclear complexes, indicating that the EGR-1 protein was a component of these complexes. These data provide direct evidence for a novel mitogenic signaling pathway coupling proximal signaling events that activate EGR-1 gene expression to a target protooncogene G alpha i-2 that is participatory for growth and differentiation in renal cells.

Animals↗

The microtubule network of renal epithelial cells is disrupted by ischemia and reperfusion.

Ischemia results in alterations in the integrity of the plasma membrane of renal epithelial cells, changes in cell polarity, and initiation of cell division. Because microtubules are implicated in these processes, we examined the effects of ischemia and reperfusion on the microtubular cytoskeleton in rat kidney. Major alterations in the microtubule network of S3 proximal tubules were detected after 40 min of ischemia followed by 1 h of reperfusion. There was fragmentation of microtubules and considerably less intense staining with antitubulin antibodies than with normal kidneys. Some thick ascending limbs of Henle close to medullary vascular bundles showed a variable loss of tubulin staining. After 24 and 48 h of reperfusion, tubulin labeling was again present in most proximal tubule cells in contact with the basement membrane but was not detectable in exfoliated cells. Numerous mitotic figures were present in kidneys 48 h after reperfusion. Kidneys subjected to 40 min of ischemia without reperfusion and contralateral kidneys studied after 1 h of reperfusion showed only mild microtubular disruption. Because of the established role of microtubules in the generation and maintenance of epithelial cell polarity, their loss may contribute to structural changes that occur after ischemia and reperfusion.

Animals↗

Expression of gp330 and gp330/alpha 2-macroglobulin receptor-associated protein in renal tubular differentiation.

The gp330/alpha 2-macroglobulin receptor-associated protein (RAP) is a 39- to 45-kd protein that binds to the low-density lipoprotein receptor-related protein/alpha 2-macroglobulin receptor and to gp330, a major glycoprotein of the brush border of proximal tubule cells. Despite evidence that gp330 functions as a receptor for several ligands and that soluble RAP inhibits ligand binding to gp330 in vitro, the physiologic function of RAP is unknown. Given the predominant location of RAP within the rough endoplasmic reticulum (RER), RAP might be involved in the intracellular processing and/or transport of gp330. The developing rat kidney was used as a dynamic model to study in detail the relationship between gp330 and RAP in vivo by immunohistochemical techniques. RAP was expressed in the renal vesicle and continued to be present, with a vesicular and perinuclear pattern of staining, in both proximal tubule cells and glomerular cells at subsequent stages. Immunoperoxidase electron microscopy demonstrated RAP in cisternae of the RER and in large subapical vesicles. gp330 was initially expressed in early proximal tubule cells in S-shaped bodies and was located in the perinuclear envelope and cytoplasmic vesicles as well as at the apical surface. Cytoplasmic gp330 staining was more evident at a stage subsequent to the S-shaped body, possibly related to more active biosynthesis. By comparative analysis of the patterns of immunofluorescence and immunoperoxidase staining, gp330 and RAP colocalized in the RER and in some large subapical vacuoles, but no definite RAP staining could be detected at the surface of proximal tubule cells at any stage, despite the presence of abundant gp330 in this location. The expression of gp330 at the apical surface of immature tubular cells was associated with the onset of fluid-phase endocytosis of fluoroscein isothiocyanate-dextran and, therefore, of reabsorption of material from the tubular lumen, in the absence of concomitant changes in RAP expression in the same cells. These findings indicate that the role of endogenous RAP may not be directly related to ligand binding of gp330 at the surface of proximal tubule cells, although RAP may be involved in the processing and the intracellular trafficking of newly synthesized gp330, in particular in the delivery of gp330 to the plasma membrane.

Animals↗

[Echocardiography in the early diagnosis of acute rejection in patients with heart transplant].

The aim of our study was to assess the sensibility and specificity of Doppler echocardiographic evaluation of left ventricular diastolic function during acute cardiac rejection. We studied 34 patients who had undergone a recent heart transplant and compared the echocardiographic results with the histologic findings. We considered the following parameters of left ventricular filling: early peak of mitral flow velocity; pressure half-time (PHT); isovolumic relaxation time (IVRT). We divided the patients into two groups according to the histologic findings: Group I (25 patients who had at least 1 episode of mild-moderate rejection), Group II (6 patients without documented rejection after at least three consecutive biopsies). Three patients with clinically evident rejection were excluded from the analysis. In Group I cardiac rejection was associated with a statistically significant decrease in IVRT (p < 0.0005), without significant changes in heart rate and in the early peak of mitral flow velocity. In Group II Doppler parameters remained unchanged. These variations were not associated with changes in echocardiographic morphologic parameters and in parameters of ventricular systolic function. IVRT and PHT returned to normal values after adequate immunosuppressive treatment. Considering variations of IVRT and PHT of at least 20%, we obtained a sensibility of 88% for isolated variations of PHT and a specificity of 93% for consensual variations of PHT and IVRT. Therefore, the assessment of the left ventricular diastolic function by Doppler echocardiography represents a safe and non-invasive method for an early detection of acute cardiac rejection.

Acute Disease↗

Establishment and characterization of a new granulocyte-macrophage colony-stimulating factor-dependent and interleukin-3-dependent human acute myeloid leukemia cell line (GF-D8).

A novel factor-dependent human myeloid leukemia cell line (GF-D8) was established from the peripheral blood of an 82-year-old man suffering from acute myeloblastic leukemia (AML). By morphology, cytochemical staining, and analysis of surface antigens, GF-D8 cells are myeloblasts of immature progenitor origin. The consensus karyotype is 45, XY, -5, 7q-, inv(7) (q31.2q36), 8q+, +8q+, 11q+, 12p-, -15, -17, + marker. The long-term survival and proliferation of GF-D8 cells is dependent on the presence of either granulocyte-macrophage colony-stimulating factor (GM-CSF) or interleukin-3 (IL-3). Weak colony growth was observed after exposure of GF-D8 cells to stem cell factor (SCF) but not after exposure to granulocyte-CSF (G-CSF), macrophage-CSF (M-CSF), IL-1 beta, IL-2, IL-5, or tumor necrosis factor-alpha (TNF-alpha). GM-CSF- and IL-3-induced proliferation is dose dependent, with significant growth observed at concentrations as low as 0.1 ng/mL, but the combination of both factors has no synergistic effect. A significant proliferation is induced by GM-CSF and IL-3 even in serum-deprived cultures, although with a slightly decreased efficiency. GF-D8 cells were shown to express specific messenger RNAs for the alpha chains of the GM-CSF and IL-3 receptors as well as for the beta chain, common to both receptors. Interestingly, despite the absence of biologic response to G-CSF, specific transcripts for the G-CSF receptor gene were similarly identified by reverse polymerase chain reaction analysis. GF-D8 cells represent a useful tool for studying chromosome abnormalities of human AML as well as the regulation of myeloid proliferation and differentiation in vitro.

Aged↗

Location of gp330/alpha 2-m receptor-associated protein (alpha 2-MRAP) and its binding sites in kidney: distribution of endogenous alpha 2-MRAP is modified by tissue processing.

The alpha 2-macroglobulin receptor-associated protein (alpha 2-MRAP) is a 39 to 44 kDa protein that copurifies with the alpha 2-macroglobulin receptor (alpha 2-MR/LRP) and also with gp330, a highly glycosylated protein located within kidney proximal tubules and glomerular podocytes. Both gp330 and the alpha 2-macroglobulin receptor are members of the low density lipoprotein receptor family but the physiological ligands for gp330 are unknown. In order to understand potential functions of the alpha 2-MRAP, specific anti-alpha 2-MRAP antibodies were used for immunocytochemical studies on paraformaldehyde lysine periodate (PLP)-fixed rat kidneys and on snap-frozen/acetone-fixed tissue. Conflicting results were obtained. After PLP fixation, alpha 2-MRAP was detected almost exclusively in rough endoplasmic reticulum (RER) cisternae; cell surface staining was virtually absent. In snap-frozen tissue, intense staining of the proximal tubule brush border was found, with little or no cytoplasmic staining. A series of experiments showed that during incubation of snap-frozen tissues, endogenous alpha 2-MRAP is released in soluble form from its intracellular location (i.e., the RER) and binds to gp330 on the brush border of proximal tubules. The location of binding sites for alpha 2-MRAP in rat kidney was also examined, using an alpha 2-MRAP-IgG fusion protein. In both snap-frozen and PLP-fixed tissues, this probe bound exclusively to brush borders, and not to intracellular sites. Our results demonstrate: a) that in renal proximal tubule cells, alpha 2-MRAP is located predominantly in the RER, b) that alpha 2-MRAP-binding sites are present on gp330, which is on the proximal tubule brush border, and c) that the apparent brush border localization of alpha 2-MRAP detected in snap-frozen sections is due to an artifactual redistribution of endogenous alpha 2-MRAP that occurs during tissue processing.

Animals↗

Detection of two forms of GP330. Their role in Heymann nephritis.

Heymann nephritis is characterized by glomerular immune deposits that contain a glycoprotein called gp330. The deposits are believed to result from shedding of immune complexes formed on podocytes. Complexes are also shed from proximal tubule cells, when antibodies combine with gp330 on the cell surface. We performed the present study to investigate what portion of the gp330 molecule is shed, using a rabbit antiserum against a peptide deduced to be in the cytoplasmic domain of gp330, as well as a rabbit antiserum and two monoclonal antibodies that recognize extracellular epitopes of gp330. The anti-cytoplasmic peptide antiserum precipitated from Fx1A (a crude renal cortical membrane preparation), a protein with a mass of about 440 kd that was reactive with two monoclonal anti-gp330 antibodies. (In our experiments, the protein called gp330 generally has a mass estimated to be about 440 kd.) The anti-cytoplasmic peptide antiserum also reacted with a truncated gp330 protein produced in transfected COS cells. Immunohistochemical studies showed that all the antibodies recognized the same group of epithelial cells. However, as seen in immunoultrastructural studies of proximal tubules, the anti-cytoplasmic peptide antiserum reacted only with components at the base of microvilli, whereas the anti-gp330 ectodomain antibodies identified material not only at the base, but over the surface of microvilli as well. In rats with Heymann nephritis, glomerular deposits and material shed into tubule lumens reacted with antibodies against extracellular epitopes of gp330, but not with the anti-cytoplasmic peptide antiserum. We propose that there are two forms of gp330 on the cell surface of proximal renal tubules. One form is restricted to coated pit regions at the base of microvilli and has a cytoplasmic domain containing a sequence deduced from a partial complementary DNA encoding gp330. The other form is present over microvilli (and possibly at the base of microvilli as well) and lacks the cytoplasmic domain deduced from the complementary DNA. The complexes that are shed in Heymann nephritis contain either a portion of gp330 cleaved from the full-length molecule or a form of gp330 that lacks the cytoplasmic domain.

Amino Acid Sequence↗

Acute undifferentiated leukemia with CD7+ and CD13+ immunophenotype. Lack of molecular lineage commitment and association with poor prognostic features.

The authors studied six adult patients with acute leukemia with these unusual characteristics: unclassifiable morphology and undifferentiated cytochemistry by French-American-British (FAB) criteria; concurrent expression of CD13 (and CD33) myeloid and early T-cell CD7 immune markers; no evidence of T-cell lineage commitment as determined by T-cell receptor beta (beta), gamma (gamma), and delta (delta) chain gene rearrangement study and cytoplasmic CD3 epsilon expression; and no evidence of myeloid cell lineage commitment, as shown by absent myeloid-specific c-fms proto-oncogene expression and negative myeloperoxidase ultrastructural staining (one case). Clinically, these diagnostic features matched with a poor prognosis, being associated with refractoriness to treatment, relapse and progression of disease, antecedent hematologic abnormality, and other malignancy. These cases may represent a distinct stem cell leukemia syndrome deserving immediate recognition and a nonconventional chemotherapeutic approach.

Acute Disease↗

Intracardiac extension of a calcified ovarian hemangioma--a case report.

The authors report a case of a fifty-five-year-old woman with clinical and echocardiographic diagnosis of right atrial myxoma. At fluoroscopy and phlebography a mobile calcified peduncle was appreciable originating from the left ovarian vein. This passed through the inferior cava to the right atrium where it wound round itself and extended into the right ventricle during diastole. The authors suspected the presence of a vascular leiomyoma. The tumor and its peduncle were removed by pulling through the right atrium during extracorporeal circulation. The site of origin was confirmed at pelvic surgery.

Calcinosis↗

Verotoxin glycolipid receptors determine the localization of microangiopathic process in rabbits given verotoxin-1.

Infection with verotoxin-producing Escherichia coli has been implicated in the cause of hemolytic-uremic syndrome. Cases of thrombotic thrombocytopenic purpura and verotoxin infections have been also described. In this study we sought to determine the following: (1) whether verotoxin induces microvascular lesions in the rabbit, (2) the organ distribution of such lesions, and (3) the distribution of verotoxin glycolipid receptors in the various organs. Rabbits challenged with verotoxin-1 purified from E. coli O157:H7 had anorexia, lethargia, and limb paralysis; renal function, however, was normal. Central nervous system lesions found included pericellular and perivascular edema, focal hemorrhage, vascular lesions, and severe alterations of Purkinje cells. Histologic changes were also seen in the colon, with mucosal and submucosal edema and hemorrhage, and in the lung, with interstitial fibrosis and focal lymphohistiocitic infiltration. No lesions were detected in kidney, heart, liver, and spleen. Screening of various tissues for the presence of the verotoxin receptors revealed galabiosyl ceramide in the central nervous system and globotriosyl ceramide in the gastrointestinal tract, lung, and spleen. No receptors for verotoxin were found in the heart, liver, and kidney. These results indicate that organ localization of the disease in rabbits is dependent on the distribution of verotoxin receptors.

Administration, Oral↗

Pathophysiologic implications of proteinuria in a rat model of progressive glomerular injury.

BACKGROUND: Males of a substrain of Munich-Wistar rats (MWF/Ztm), selected for their large number of superficial glomeruli, develop spontaneous proteinuria with age, whereas females of this strain have a normal urinary protein excretion rate. EXPERIMENTAL DESIGN: We investigated the relationship between functional and structural glomerular alterations in four groups of male and female MWF/Ztm rats, respectively at 20 and 35 weeks of age. Systolic blood pressure, urinary protein excretion and composition of urinary proteins were periodically measured during the study. At the end of the observation period, renal function was evaluated with solute clearance technique and kidney tissue processed for morphologic and morphometrical analysis using light and electron microscopy. RESULTS: Systolic blood pressure in males was significantly higher than in females, and progressed toward systemic hypertension with age. Urinary protein excretion became spontaneously abnormal in males. About 50% of urinary proteins consisted of albumin, whereas 35% was a sex-dependent low molecular weight protein. Albumin excretion increased with age in these animals, whereas excretion of the sex-dependent protein decreased. Urinary protein excretion in females was significantly lower than in males of the same age, remaining near normal levels. No decline in renal function with age was observed in all animal groups. Glomerular structural alterations developed progressively with age in males, leading to important glomerular and tubular alterations. Female rats maintained almost intact glomerular morphology until the end of the study. Morphometric analysis showed an important increase in glomerular volume with age in males but not in females. This glomerular tuft enlargement was the result of an increase in the number of glomerular cells and a concomitant increase in cell volume. CONCLUSIONS: Male MWF/Ztm rats develop spontaneously systemic hypertension, proteinuria of glomerular origin, and glomerulosclerosis. Female rats develop less severe hypertension and are protected from proteinuria and glomerulosclerosis.

Aging↗