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F Perini

Publications and source records attributed to F Perini.

At least 73 records · Page 4Linked to original sources

The use of drugs to dissect the pathway for secretion of the glycoprotein hormone chorionic gonadotropin by cultured human trophoblastic cells.

Agents that affect intracellular cation and pH gradients and inhibit energy production have been tested for their ability to modulate the processing and secretion of the free alpha subunit and the alpha beta dimer of human chorionic gonadotropin (hCG) by cultured human trophoblastic cells (JAR). Incubation of JAR cells with monensin or nigericin, monovalent cation ionophores that produce equilibration of Na+ and K+ across cellular membranes, dicyclohexylcarbodiimide, an agent that inhibits intracellular membrane ATPases, and methylamine, which neutralizes intracellular pH gradients, produced similar effects on hCG processing and secretion. All these agents inhibited the processing of the asparagine-linked oligosaccharide chains of free alpha subunit and the alpha and beta subunits contained in the hCG dimer. Moreover, after treatment of JAR cells with these agents, there was an intracellular accumulation of precursor forms and an inhibition of secretion of "mature" forms of hCG. Monensin affected the processing and secretion of hCG subunits differently at different concentrations. At 5 X 10(-7) M, monensin inhibited the processing of the asparagine-linked oligosaccharides of hCG without altering the rate-limiting step in the secretory pathway or blocking hCG secretion. The intracellular hCG subunit precursors in both control and monensin-treated cells contained a similar array of high mannose oligosaccharides, predominantly of the Man8GlcNAc2 and Man9GlcNAc2 types. However, monensin-treated cells secreted hCG subunits that contained endo H-sensitive oligosaccharides of the high mannose (mostly Man5GlcNAc2) and hybrid types rather than the endo H-resistant complex chains synthesized by control cells. Nevertheless, a full complement of serine-linked oligosaccharides was added to the hCG-beta subunit in monensin-treated cells. These results indicate that the intracellular movement of hCG from the rough endoplasmic reticulum to the cell surface was not inhibited by monensin at a concentration that impaired Golgi-localized steps in the processing of asparagine-linked oligosaccharides. At 5 X 10(-6) M, monensin significantly inhibited secretion of hCG and created a new rate-limiting step in the processing pathway. hCG subunits bearing Man5GlcNAc2 units accumulated intracellularly, suggesting that the equilibration of intracellular Na+/K+ pools blocked oligosaccharide processing at an intra-Golgi point, perhaps by inhibiting movement of the glycoprotein hormone from the "cis" to the "trans" Golgi compartment. Since the other drugs mentioned above produced similar effects on hCG processing and secretion, it appears that maintenance of intracellular cation and pH gradients is necessary for the intra-Golgi transport of glycoprotein hormones.(ABSTRACT TRUNCATED AT 400 WORDS)

Calcimycin↗

Purification and properties of ribonucleases from human urine.

The two major ribonuclease (EC 3.1.27.5) present in normal human urine have been highly purified and extensively characterized for their enzymatic, physical, chemical and structural properties. One of the enzymes, RNAase C, is a glycoprotein which exhibits a pH optimum of 8.5 with RNA as the substrate and preferentially degrades the synthetic homoribopolymer poly(C). This enzyme is resolved into multiple components by column electrofocusing. However, prior treatment with neuraminidase results in a single form of RNAase C with an isoelectric point of 10.4, indicating that the charge heterogeneity is the result of variability in sialic acid content. Amino acid composition and NH2- and COOH-terminal sequence analyses of RNAase C show that this enzyme is very similar to mammalian pancreatic RNAases; the data indicate a peptide chain of 126 amino acid residues and a 33% carbohydrate content. The second enzyme isolated from urine, termed RNAase U, is also a glycoprotein which has a pH optimum of 7.0 with RNA as substrate and is virtually inactive against poly(C). RNAase U lacks sialic acid and focuses as a single component with a highly basic isoelectric point of greater than pH 11.0. The NH2- and COOH-terminal sequences of RNAase U show little homology with the pancreatic RNAases. However, the amino acid composition of this enzyme indicates it is very similar to human spleen RNAase.

Amino Acid Sequence↗

Synthesis and secretion of human chorionic gonadotropin subunits by cultured human malignant cells.

The synthesis and secretion of human chorionic gonadotropin (hCG) subunits have been studied by pulse-chase techniques in JAR choriocarcinoma cells, which produce both the alpha and beta subunits of hCG "eutopically," that is, as part of their expected repertoire of gene products, and in three cell lines that produce either alpha or beta subunit "ectopically." JAR cells contain two intracellular forms of the alpha subunit (Mr = 15,000 and 18,000) and of the beta subunit (Mr = 18,000 and 24,000) but do not accumulate fully processed, "mature" alpha (Mr = 22,000) or beta (Mr = 34,000) subunits during chase of pulse-labeled cells. Mature subunits, however, are secreted into the culture medium during this time. Thus, secretion of mature subunits appears to occur rapidly after processing of the intracellular forms. Two cell lines that ectopically secrete alpha but not beta subunit, ChaGo bronchogenic carcinoma cells and HeLa S3 cervical carcinoma cells, also contain the Mr = 15,000 and 18,000 intracellular forms of alpha subunit and appear to accumulate mature alpha subunit intracellularly. The CBT cell line, derived from a glioblastoma multiforme, produces the Mr = 18,000 and 24,000 intracellular forms of beta subunit with no evidence for alpha subunit synthesis or secretion. These four cell lines should provide "biologic reagents" for the further study of alpha and beta subunit processing and secretion.

Carcinoma, Bronchogenic↗

[A case of retroperitoneal cystic lymphangioma].

A case of retroperitoneal cystic lymphangioma in a 62-yr-old woman presented as symptom-free abdominal swelling. The intraoperative diagnosis was confirmed histologically. Radical management consisted of stripping of the cyst from its adjacent structures. The postoperative course was uneventful.

Female↗

Hyperxanthinemia interferes with serum uric acid determinations by the uricase method.

Serum xanthine concentrations as high as 148 mg/L were noted after treatment of a patient with Burkitt's lymphoma who was receiving allopurinol. These markedly above-normal values for xanthine led to spuriously low values for serum uric acid as measured by the uricase method. Rapid tumor lysis in patients who are receiving allopurinol may lead to marked hyperxanthinemia, which in turn may obscure hyperuricemia in such patients when the uricase method is used for uric acid analysis. In such situations, uric acid concentrations should be measured by the phosphotungstate colorimetric assay.

Adult↗

Design of substrate-site-directed irreversible inhibitors of adenosine 5'-phosphate aminohydrolase. Effect of substrate substituents on affinity for the substrate site.

Derivatives of adenosine 5'-phosphate (AMP) have been synthesized in which the phosphoester (POCH2) grouping of AMP is replaced by PCH(R)CH2 where R is OC(O)Me, CH2NHCOMe, CH2NHCOEt, and CH2NHCOOR' (R' = Me, Et, and Pr). The 2',3'-O-isopropylidene and 2', 3'-di-O-acetyl derivatives of AMP were also prepared. All compounds were competitive inhibitors of rabbit muscle AMP aminohydrolase with enzyme-inhibitor dissociation constants (Ki values) of 330, 20, 17, 19, 16, 14, 260, and 105 muM, respectively. All compounds were substrates except those in which R was CH2NHCOEt and CH2NHCOOR' (R'=Me, Et, and Pr). The previously described allo and talo epimers of 5'-C-acetylaminomethyl-AMP and the allo epimer of 5'-C-propionylaminomethyl-AMP were substrates and competitive inhibitors with Ki values of 18, 47, and 42 muM, respectively. The talo epimer of 5'-C-propionylaminomethyl-AMP was not a substrate and was a noncompetitive inhibitor, Ki

AMP Deaminase↗

Design of substrate-site-directed inhibitors of adenylate kinase and hexokinase. Effect of substrate substituents on affinity on affinity for the adenine nucleotide sites.

Nineteen derivatives of adenosine 5'-phosphate (AMP) bearing acylaminomethyl, acetoxy, or alkylaminomethyl substituents on the phosphate-ribose bridge (5' and O-5' positions) of AMP together with 2',3'-O-ethylidene, 2',3',-O-isopropylidene, and 2',3'-di-O-acetyl derivatives of AMP have been synthesized. Their substrate and/or competitive inhibitor properties with pig rabbit muscle AMP kinases indicate that all the substituents except 2',3'-O-ethlidene with the pig enzyme permitted binding of AMP at its enzymic site. Determination of enzyme-inhibitor dissociation constants showed that several compounds with substituents on the ribose-phosphate bridge bind as well or better than AMP. The affinity is ascribed in part to interaction between substituents and a lipophilic region of the enzymes adjacent to the ribose-phosphate bridge in the enzyme-AMP complexes. The enzyme-inhibitor dissociation constants reveal a structural dissimilarity between the pig and rabbit enzymes in the vicinity of the lipophilic region. The substrate and inhibitor properties of eight ATP derivatives gave evidence that affinity of ATP for its substrate site on the AMP kinases is compatible with acetyl- or chloroacetylaminomethyl groups at the phosphate-ribose bridge or with 2',3'-O-ethylidene or isopropylidene residues. The yeast hexokinase-ATP complex tolerated an acetylaminomethyl group at C-5' or a benzoylaminomethyl group adjacent to O-5'. The present findings regarding substituent tolerance could be used in the design of adenine nucleotide site-directed irreversible inhibitors.

Adenine Nucleotides↗