PubMed HealthSearch

Biomedical subjects

T K Mukherjee

Publications and source records attributed to T K Mukherjee.

18 recordsLinked to original sources

Regulation of apo-A-I processing in cultured hepatocytes.

Apo-A-I, the major protein component of high density lipoproteins, appears intracellularly as an intermediate precursor (pro-apo-A-I) with a hexapeptide extension (RHFWQQ) at its amino terminus. Proteolytic processing of pro-apo-A-I to apo-A-I has been shown to occur extracellularly in cell and organ cultures from rat and human tissues. Recently, however, intracellular conversion has been detected in chickens. To determine what distinguishes and regulates these two processing methods, the proteolytic processing and secretion of apo-A-I was studied by metabolic labeling in chick hepatocytes and in Hep-G2 cells (derived from a human hepatocellular carcinoma). The proportions of intracellular and secreted pro-apo-A-I and apo-A-I were measured by sequencing NH2-terminal portions of the proteins and determining the location of radio-labeled amino acids. Chick hepatocytes cultured in the absence of hormones or fetal bovine serum secreted primarily processed apo-A-I (83%). In the presence of serum these cells secreted only pro-apo-A-I, whereas incubation with a combination of hormones (insulin, triiodothyronine, dexamethasone) resulted in secretion of a nearly equal mixture of the pro- and processed forms of the protein. In contrast, Hep-G2 cells, maintained in the absence of serum, secreted only pro-apo-A-I; when grown in the presence of serum these cells secreted a mixture of pro- and processed apo-A-I. Under conditions in which chick hepatocytes and Hep-G2 cells secreted both forms of the protein, a mixture of pro- and processed apo-A-I was also found intracellularly; when only the pro-form was secreted, the cells likewise contained only pro-apo-A-I. Under all the above conditions, the secreted apo-A-I exhibited similar isoform patterns in two-dimensional gel electrophoresis. These data show that both chick hepatocytes and human hepatoma cells are capable of intracellularly processing pro-apo-A-I to apo-A-I, and that the extent of intracellular processing is controlled by the cell's hormonal environment.

Amino Acid Sequence

Kell blood group antigens are part of a 93,000-dalton red cell membrane protein.

Monospecific Kell blood group antibodies, of either human alloimmune or mouse monoclonal origin, react with a single surface-exposed protein of 93,000 daltons. Chymotryptic peptide maps of the 93,000-dalton protein isolated by antibodies of two different specificities (anti-K7 or anti-K14) indicate that Kell epitopes reside on the same protein. Kell protein is similar in size to band 3 protein but differs markedly in its tryptic and chymotryptic peptide maps, indicating that they are different proteins. In addition, sheep antibody to human band 3 does not react with Kell protein. Rabbit antibody to Kell protein reacts, by Western immunoblotting, with membrane proteins from Kell antigen positive red blood cells but not from those of a Ko (Kell null) cell. In intact red cells only a small portion of the Kell protein is available to lactoperoxidase-catalyzed iodination. Under nonreducing conditions Kell antigen is isolated not only as a 93,000-dalton protein but also as larger protein complexes ranging in size from above 200,000 to 115,000 daltons. Treatment of red cells with iodoacetamide, prior to isolation of Kell protein, reduces the amount of the very large complexes, but Kell protein occurs both as 115,000- and 93,000-dalton proteins.

Animals

Biosynthesis of high density lipoprotein by chicken liver: intracellular transport and proteolytic processing of nascent apolipoprotein A-1.

To study the in vivo processing and secretion of Apolipoprotein A-I (Apo A-I), young chickens were administered individual L-[3H]amino acids intravenously and the time of intracellular transport of nascent Apo A-I from rough endoplasmic reticulum (RER) to the Golgi apparatus was measured. Within 3 to 9 min there was maximal incorporation of radioactivity into Apo A-I in both the RER and the Golgi cell fractions. By contrast, the majority of radioactive albumin was also present in the RER by 3 to 9 min, but did not reach peak amounts in the Golgi fraction until 9 to 25 min. Both radioactive Apo A-I and albumin appeared in the blood at about the same time (between 20 and 30 min). NH2-terminal amino acid sequence analysis of nascent intracellular Apo A-I showed that it contains a pro-hexapeptide extension identical to that of human Apo A-I. After 30 min of administration of radioactive amino acids radioactive Apo A-I was isolated by immunoprecipitation from the liver and serum. NH2-terminal sequence analysis of 20 amino acids indicated that chicken liver contained an equal mixture of nascent pro-Apo A-I and fully processed Apo A-I, whereas the serum only contained processed Apo A-I. Further studies showed that the RER only contained pro-Apo A-I, whereas a mixture of pro-Apo A-I and processed Apo A-I was found in the Golgi complex. These results indicate that, in chicken hepatocytes, there is a more rapid transport of Apo A-I than of albumin from the RER to the Golgi cell fractions, and that Apo A-I remains in the Golgi apparatus for a longer period of time before it is secreted into the blood. In addition these studies show that the in vivo proteolytic processing of chicken pro-Apo A-I to Apo A-I occurs in the Golgi cell fractions.

Albumins

Correlation between first morning sample and 24-hour urinary estriol excretion.

The estriol concentration of a morning sample of urine from high-risk pregnant women was correlated with the total 24-hour estriol excretion. One hundred seventy sample pairs compared the estriol concentration of the morning specimen with those of a 24-hour specimen of the previous day, while 110 sample pairs compared the value of morning specimen with those of a 24-hour specimen of the following day. Although there is highly significant statistical correlation between those sample pairs, they are of modest magnitude. The mean values of the sample pairs are significantly different. Also, the morning sample estriol concentrations are significantly more variable than those of the 24-hour specimen.

Creatinine

Significance of amniotic fluid corticosteroid levels in human pregnancies.

Retrospective analysis of 103 samples of amniotic fluid was performed. Twenty-four samples were obtained prior to midtrimester abortion, 31 were from patients who delivered spontaneously, 14 were from patients in whom labor was induced, and the remaining samples were obtained from patients who were delivered by cesarean section. In all normal pregnancies, there was a rising trend in corticosteroid levels in amniotic fluid as the gestation advanced. This was less marked in abnormal pregnancies. There is a suggestive fetal role in initiation of normal spontaneous labor, as reflected by a significant increase in amniotic fluid corticosteroid levels, in patients immediately prior to vaginal delivery as opposed to abdominal delivery. There was a significant correlation between the birthweight of babies born vaginally with the amniotic fluid corticosteroid levels, as compared to the weight of babies born by cesarean section.

Adrenal Cortex Hormones

Appraisal of collection techniques and storage temperatures on turkey plasma cholinesterase levels and blood glutathione concentrations.

The effects of different blood collection procedures, various storage temperatures and durations of storage on the levels of plasma cholinesterase and whole blood glutathione in turkeys were investigated. Collection of blood through vacutainers yielded satisfactory results. Whereas the plasma cholinesterase activity remained unchanged even after three weeks of storage at -17.8 degrees C., blood glutathione concentration was unaffected only when the samples were stored at -28.9 degrees C for the three weeks. The range of mean activity was from 4.64 to 4.71 DeltapH/hour x 10 for cholinesterase and from 44.85 to 47.91 mgm/100 ml for glutathione.

Animals