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Biomedical subjects

B Gridelli

Publications and source records attributed to B Gridelli.

At least 55 records · Page 3Linked to original sources

A histidine to tyrosine replacement in lysosomal acid lipase causes cholesteryl ester storage disease.

The genetic defect causing cholesteryl ester storage disease (CESD) has been investigated in an 11 year old patient. Lysosomal acid lipase (LAL) activity in cultured skin fibroblasts and peripheral lymphocytes was reduced to approximately 3% and approximately 4% of controls, respectively. The parents had low acid lipase activity in white blood cells. Using the polymerase chain reaction followed by ribonuclease protection assay, we examined the LAL mRNA from the liver of the affected patient to identify small deletion, abnormal splicing or missense mutation. Using this technique we identified a LAL mRNA cytosine to thymidine transition in position 923, predicting a missense substitution of tyrosine for histidine in codon 274. By differential oligonucleotide hybridization on an amplified white blood cell mRNA, the cytosine to thymidine transition was investigated in the family members and in the population. No normal mRNA coding for cytosine in position 923 was detectable in the propositus and mRNA from the phenotypically normal parents coded for both cytosine and thymidine. This can only be accounted for by assuming that the propositus is homozygote for the mutation. The mutation, segregated in the family with levels of acid lipase activity in white blood cells, was not detected in mRNA from 60 normal subjects. These data provide evidence that the cytosine to thymidine transition in position 923 in LAL mRNA causes the clinical expression of CESD in this patient. The predicted substitution of tyrosine for histidine in codon 274 suggests that this amino acid is involved in the structure-function of the lysosomal acid lipase enzyme.

Adolescent↗

A phenylalanine codon deletion at the UGT1 gene complex locus of a Crigler-Najjar type I patient generates a pH-sensitive bilirubin UDP-glucuronosyltransferase.

The characterization (Ritter, J. K., Chen, F., Sheen, Y. Y., Tran, H. M., Kimura, S., Yeatman, M. T., and Owens, I. S. (1992) J. Biol. Chem. 267, 3257-3261) of the single-copy UGT1 gene complex encoding both bilirubin and phenol UDP-glucuronosyltransferases (transferase) has been critical to the determination of genetic defects in Crigler-Najjar Type I patients. The complex (UGT1A-UGT1G) codes for at least two bilirubin, three bilirubin-like, and two phenol transferases. Seven different exons 1, each with an upstream promoter and each encoding the amino terminus of an isoform, are arrayed in series with four common exons (encoding seven identical carboxyl termini) in the 3'-region of the locus. Predictably, a critical mutation in a common exon inactivates the entire locus. A deleterious mutation in an exon 1, as we report here for the UGT1A gene in a Crigler-Najjar Type I patient, predictably affects the amino terminus of that single isoform. The code for the predominant bilirubin isozyme, the HUG-Br1 protein, is missing the phenylalanine codon at position 170 in exon 1 of UGT1A, abolishing a conserved diphenylalanine. We demonstrate that, at the pH (7.6) routinely used for bilirubin glucuronidation studies, both the HUG-Br1 protein and human liver microsomes have approximately one-third the activity seen at the major pH optimum of 6.4 and at low ionic strength. The altered isozyme with nearly normal activity at pH 7.6 is inactive at pH 6.4, a result consistent with the definition of a pH-sensitive mutant. The Km value for bilirubin using the wild-type protein is approximately 2.5 microM at both pH 6.4 and 7.6 and that for the mutant is 5.0 microns at pH 7.6. The structure of the wild-type enzyme compared to that of the mutant indicates that hydrophobic properties at the active center are critical for metabolizing the lipophile-like substrate. The low ion/pH requirements for bilirubin glucuronidation may signal the basis for the distribution of these isozymes to an organelle (endoplasmic reticulum) that can establish compatible conditions/compartments for each catalysis.

Alleles↗

Hepatitis C virus infection in liver allograft recipients.

The impact of HCV infection after liver transplantation remains a topic of discussion. The aims of this study were to define the prevalence of anti-HCV antibodies in liver donors; the risk of acquired HCV infection and HCV re-infection according to the pre-transplant anti-HCV status; the prevalence of HCV infection in post-transplant chronic hepatitis. Sera from 42 recipients with follow up longer than 6 months and their donors were tested for anti-HCV. By results at pre-transplant time patients were classified as follows: donor (D) negative and recipient (R) negative (D-/R-) 31; D-/R+ 9; D+/R- 1; D+/R+ 1. Twenty-one patients with sustained hepatic dysfunction underwent liver biopsy. In group D-/R-, 5 patients showed anti-HCV positivity and 3 (9.7%) of them had acquired HCV hepatitis. In group D-/R+, 6 patients showed persistent anti-HCV positivity and 4 (44.4%) of them had recurrent HCV hepatitis; of these 2 died due to liver failure. The 2 patients of groups D+/R- and D+/R+ had normal liver function. Anti-HCV negative hepatitis was found in 2 patients. The prevalence of anti-HCV positivity in liver donors appeared low (3.2%). Acquired HCV infection rate was 9.7%. Pre-transplant HCV infection led to a high incidence of recurrence (44.4%). HCV was the major etiological agent in post-transplant chronic hepatitis (77.8%).

Adolescent↗

Autoradiographic localization of putative melatonin receptors in the brains of two Old World primates: Cercopithecus aethiops and Papio ursinus.

The distribution of putative melatonin receptors in the brains of two Old World primates of the superfamily Catarrhina, Cercopithecus aethiops and Papio ursinus, was characterized using 2-[125I]iodomelatonin autoradiography. The specific binding demonstrated a discrete distribution pattern. The median eminence was intensely labelled, and examination at the light microscopic level demonstrated that the binding was confined to the small layer of cells comprising the pars tuberalis of the pituitary gland. The collar of pars distalis, present in the baboon (Papio ursinus), was diffusely labelled. No binding was detected in the pars distalis proper or the neural lobe of the pituitary gland. The binding in the suprachiasmatic nuclei was weaker, but well discernible. Diffuse faint specific binding was found in the frontal cortex and the dentate gyrus of the hippocampus. Two non-neural sites expressed strong, well-delineated binding: the walls of some brain blood vessels (the vertebral and spinal arteries, the inferior cerebellar and acoustic arteries, the basilar, pericallosal, internal carotid arteries, the arteries forming the circle of Willis) and the choroid plexuses. Binding in the arteries of the circle of Willis, the pars tuberalis and the suprachiasmatic nuclei was readily displaceable. Addition of 1 microM unlabelled 2-iodomelatonin following 45 min of preincubation with the radioactive ligand completely abrogated the binding. Co-incubation with guanosine 5'-O-(3-thiotriphosphate) led to a significant decrease in the apparent binding density in the pars tuberalis and abolished binding in the suprachiasmatic nuclei, but was without effect on the binding in the walls of the adjacent arteries, forming the circle of Willis, in the cortex and in the hippocampus. This qualitative distribution pattern demonstrates that in the two primate species studied, melatonin high-affinity, G-protein-linked binding sites are present in the pars tuberalis and the hypothalamic suprachiasmatic nuclei, and that melatonin may be acting as a synchronizer of the endogenous pacemakers' circadian activity, apart from its possible reproductive effects at the level of pars tuberalis, where the highest receptor density was observed. The strongly labelled arterial walls, and the flimsy labelled cortex and hippocampus, expressed different characteristics: though the binding was readily reversible, it was apparently not regulated by a guanine nucleotide-binding protein.

Animals↗

Prognostic value of hemostatic parameters after liver transplantation.

The prognostic value of hemostatic parameters after orthotopic liver transplantation was evaluated in 37 consecutive patients. Six simple hemostatic parameters (prothrombin time, activated partial thromboplastin time, thrombin time, thrombin coagulase time, plasma fibrinogen and platelet count) were obtained for each patient pre-transplantation and daily post-transplantation for at least 8 days. Using the results of these tests, the degree of hemostatic impairment was arbitrarily scored from 0 to 6. Starting from the first day post-transplantation, hemostatic parameters improved progressively, reaching plateau values on day 7 post-transplantation. On day 8 there were significant differences in the activated partial thromboplastin time, prothrombin time, and in the overall hemostatic scores between patients who survived at least 6 months and those who died. Comparing these hemostasis parameters with such liver function tests as AST, ALT and serum bilirubin, univariate analysis showed that activated partial thromboplastin time, coagulation score and AST were significant predictors of 6-month survival, but by multivariate analysis (Cox proportional hazard rate model) only the activated partial thromboplastin time was an independent predictor. Hence, a simple coagulation test is useful for predicting the survival of patients undergoing liver transplantation.

Adolescent↗