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Biomedical subjects

J H Im

Publications and source records attributed to J H Im.

36 records · Page 2Linked to original sources

Disappearance of essential tremor after small thalamic hemorrhage.

Stereotactic thalamotomy has been reported to be effective in the control of various tremors, including essential tremor. We report a 69-year-old female who experienced spontaneous thalamotomy with a small thalamic hemorrhage, resulting in disappearance of essential tremor on the contralateral side to the hematoma, which involved the nucleus ventralis intermedius (Vim) of the thalamus and a portion of the posterior limb of the internal capsule.

Aged↗

Identification of mycoplasma membrane proteins by systematic Tn phoA mutagenesis of a recombinant library.

Wall-less prokaryotes in the genus Mycoplasma include over 90 species of infectious agents whose pathogenicity for humans and other animals is currently being assessed. Molecular characterization of surface proteins is critical in this regard but is hampered by the lack of genetic systems in these organisms. We used TnphoA transposition to systematically mutagenize, in Escherichia coli, a genomic plasmid library constructed from Mycoplasma fermentans, a potential human pathogen. The strategy circumvented problems of expressing mycoplasma genes containing UGA (Trp) codons and relied on the construction of the vector pG7ZCW, designed to reduce TnphoA transposition into vector sequences. Functional phoA gene fusions directly identified genes encoding 19 putative membrane-associated proteins of M. fermentans. Sequences of fusion constructs defined three types of export sequence: (1) non-cleavable, membrane-spanning sequences, (2) signal peptides with signal peptidase (SPase) I-like cleavage sites, and (3) signal peptides with SPase II-like lipoprotein-cleavage sites which, like most other mycoplasmal lipoprotein signals analysed to date, differed from those in several Gram-negative and Gram-positive eubacteria in their lack of a Leu residue at the -3 position. Antibodies to synthetic peptides that were deduced from two fusions to predicted lipoproteins, identified corresponding amphiphilic membrane proteins of 57 kDa and 78 kDa expressed in the mycoplasma. The P57 sequence contained a proline-rich N-terminal region analogous to an adhesin of Mycoplasma gallisepticum. The P78 protein was identical to a serologically defined phase-variant surface lipoprotein. TnphoA mutagenesis provides an efficient means of systematically characterizing functionally diverse lipoproteins and other exported proteins in mycoplasmas.

Alkaline Phosphatase↗

Syndromes of pontine base infarction. A clinical-radiological correlation study.

BACKGROUND AND PURPOSE: Although there have been sporadic reports of lacunar syndromes due to pontine base infarction, studies of clinical-radiological correlation in sufficient numbers of patients have not yet been reported. METHODS: We studied the clinical features of 37 patients with acute infarcts that mainly involved the base of the pons and correlated the clinical syndromes with the radiological findings. RESULTS: The clinical presentations included pure motor hemiparesis (PMH) in 17, sensorimotor stroke in 3, ataxic hemiparesis (AH) in 4, and dysarthria-clumsy hand (DA-CH) syndrome in 6 patients. Variants of AH included 1 patient with dysarthria-hemiataxia and 2 with quadrataxic hemiparesis, and in 4 patients dysarthria-facial paresis syndrome was considered a variant of DA-CH syndrome. Hypertension was the single most common and important risk factor, and the pathogenetic mechanisms of ischemia were likely to be small arterial (lacunar) occlusion or basilar atheromatous branch occlusion in most of the patients. Our clinical-radiological correlation study suggested that large lesions involving the paramedian caudal or middle pons correlate with severe hemiparesis (PMH), whereas lesions of similar size located in the paramedian rostral pons tended to produce DA-CH syndrome. Lesions producing AH were located variously but tended to spare the pyramidal tracts. The prognosis of these patients is fair or good, although residual hemiparesis remained in patients with initially severe hemiparesis. CONCLUSIONS: Our data suggest that the various lacunar syndromes that follow pontine base infarcts reflect the balance of the involvement of the corticospinal, corticopontocerebellar, and corticobulbar tracts. Analysis of radiological findings aids in determining the clinical-anatomic correlation in patients with pontine base infarction.

Adult↗

Metabolic adaptation during erythropoietin-mediated terminal differentiation of mouse erythroid cells.

Metabolic development was examined in erythroid precursor cells, which were isolated from the spleens of mice infected with the anemia-inducing strain of Friend virus (FVA cells). FVA cells undergo differentiation in vitro from the proerythroblast stage through the reticulocyte stage over a 48-hour period in the presence of erythropoietin. Concomitant with marked decreases in cellular size and energy demand, metabolic capacities of both glycolysis and oxygen consumption diminish after 48 hours in culture by 7- and 18-fold, respectively. Because the oxidative capacity decreases more than glycolytic ability does, the metabolic machinery increasingly shifts toward anaerobic metabolism. During the 48-hour period of differentiation, the 2,3-diphosphoglyceric acid (DPG) content per cell and 2,3-DPG mutase activity per cell increased eightfold and threefold, respectively. Freshly harvested FVA cells have adenosine triphosphate (ATP) levels of 7.23 +/- 2.52 mumol/10(10) cells or 3.76 +/- 1.31 mumol/mL cell water which are 12- or 2.3-fold higher, respectively, than the ATP levels of mature red blood cells. In the course of FVA cell differentiation, ATP content per cell decreases by fourfold, but ATP concentration in cell water remains unchanged because of a corresponding decrease in cellular size and water content during differentiation. These studies show that in the face of dramatic decreases in cell size and cellular energy demand, terminally differentiating erythroid cells maintain a constant ATP level by undergoing an involution of their glycolytic machinery as well as by losing their aerobic metabolic capacity.

2,3-Diphosphoglycerate↗

Partial purification and characterization of erythropoietin receptors from erythroid progenitor cells.

We have partially purified and characterized erythropoietin (Epo) receptors of erythroid progenitor cells which were obtained from the spleens of anemia-inducing Friend virus infected mice. Membrane proteins of splenic erythroid progenitor cells were solubilized with 1% Triton X-102. Upon chromatography on DEAE-Sephacel anion-exchange columns, two distinct Epo receptor peak fractions referred to as Peak I and Peak II were identified by 125I-Epo binding assays using the polyethylene glycol precipitation method. The Peak I and Peak II samples were then individually chromatographed on an S-Sepharose column. The S-Sepharose-purified Peak I and Peak II samples were crosslinked with 125I-Epo in the presence and absence of excess unlabeled Epo by disuccinimidyl suberate treatment, and then analyzed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) and autoradiography. Both Peak I and Peak II samples showed a radiolabeled peptide with a Mr 135K and the labeling was blocked by excess unlabeled Epo. Since the Mr of Epo is about 35K, Epo receptor peptide has a Mr approximately 100K. To determine whether Epo stimulates autophosphorylation of the receptors, the S-Sepharose-purified Peak I and Peak II samples were incubated with or without Epo, and then briefly incubated in the presence of [gamma-32P]ATP and Mn2+. The tyrosine residue phosphorylated protein was isolated by an immunochemical technique, and then analyzed by SDS-PAGE and autoradiography. The result showed that Epo stimulates phosphorylation of a 100-kDa peptide.

Animals↗

Purification and properties of parathyroid hormone-related peptide isolated from milk.

The occurrence and properties of PTH-related peptide (PTH-RP) in milk was investigated. PTH-RP was purified to homogeneity from human and bovine milk using heat and acid to precipitate milk proteins followed by ion exchange chromatography and reverse-phase HPLC. The peak of PTH-RP from HPLC was detected using a sensitive bone cell bioassay. A single band of peptide was detected on silver-stained polyacrylamide gels, which migrated as a 20-21-kDa macromolecule. PTH-RP isolated from either human or bovine milk had similar electrophoretic mobilities on sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The partially purified bovine PTH-RP stimulated cAMP production in UMR106-01 and OK cell lines and elicited a concentration-dependent inhibition of sodium-dependent phosphate transport in OK cells. Incubation of milk extracts with an anti-PTH antiserum did not affect their bioactivity, whereas an antihuman PTH-RP 1-34 antiserum markedly reduced the cAMP response of UMR106-01 cells to the immunoabsorbed milk extracts. A PTH antagonist, norleu PTH 3-34, blocked the stimulation of cAMP production in UMR106-01 cells treated with milk extracts. PTH-RP immunoreactivity and bioactivity occurred in milk extracts of diverse animals from both eutherian and metatherian (marsupial) species. Porcine colostrum also had immunoreactive PTH-RP, although the levels were lower than the immunoreactive PTH-RP concentrations observed in milk samples collected at 7 and 14 days of lactation. Thus, a 20-21-KDa PTH-RP is secreted into milk where it could play a role in the development of suckling, newborn animals.

Adenylyl Cyclases↗

Activation of a Cl-dependent K flux by cAMP in pig red cells.

Activation of a Cl-dependent K flux by adenosine 3',5'-cyclic monophosphate (cAMP) was characterized in pig red cells, a cell type that lacks both the Ca-activated K channel and the Na-K-Cl cotransport pathway. As in other red cells, both Cl-dependent K efflux and K influx are stimulated on cell swelling. Although pig red cells fail to respond to beta-adrenergic stimuli, it is possible to raise the intracellular cAMP content by preincubating cells in the presence of 1 mM cAMP. The Cl-dependent K flux was compared in cells having a basal cAMP content of approximately 0.29 nmol/g hemoglobin vs. cAMP-loaded cells having approximately 8.4 nmol cAMP/g hemoglobin. Loading with cAMP stimulated both Cl-dependent K efflux and influx of hypotonically swollen cells. In maximally swollen cells whose volume was increased by approximately 17%, the Cl-dependent Rb influx occurs with a maximum velocity (Vmax) of 17.9 +/- 3.2 mumol.g hemoglobin (Hb)-1.h-1 and Km for Rb of 22.9 +/- 4.1 mM. In cAMP-loaded cells, both Vmax and Km were increased to 59.8 +/- 8.5 mumol.g Hb-1.h-1 and 63.1 +/- 8.8 mM, respectively. The Cl-dependent Rb influx is much larger in young cells than in old cells. However, both cell types respond to cAMP activation. Whereas cAMP and its analogues, 8-bromoadenosine 3',5'-cyclic monophosphate and dibutyryl adenosine 3',5'-cyclic monophosphate are stimulatory, AMP and guanosine 3',5'-cyclic monophosphate (cGMP) are not. These findings suggest that, like other ion transport systems, the Cl-dependent K flux of pig red cells is endowed with the capacity to respond to cAMP.

4,4'-Diisothiocyanostilbene-2,2'-Disulfonic Acid↗

Metabolic development in erythropoietin-dependent maturation of erythroid cells.

1. Metabolic development was investigated in splenic erythroblasts isolated from Friend virus infected mice and maintained in culture with erythropoietin. 2. We found that immature erythroid cells not only possess a highly oxidative metabolism, but also glycolytic activity, both of which decrease drastically in the course of maturation. 3. Most purine and pyrimidine compounds which are found in immature erythroid cells are still present in mature erythrocytes. 4. While total adenine nucleotide levels fall, the 2,3-DPG pool increases during erythroid development.

Animals↗

Isolation and characterization of insulin receptors from rat kidney glomeruli and tubules.

In order to directly compare the structural characteristics of renal glomerular and tubular insulin receptors, the purified isolated nephron subunits were extracted with 1% Triton X-102, fractionated by DEAE-Sephacel ion exchange column chromatography and the fractions containing insulin binding proteins were identified by the precipitation of 125I-insulin-protein complexes with polyethylene glycol (PEG). The fractions containing insulin binding proteins were pooled, incubated with 125I-insulin and covalently cross-linked with disuccinimidyl suberate, followed by chromatography of the cross-linked samples on Sepharose CL-6B. From both glomeruli and tubules, three 125I-insulin-binding complexes with molecular weights of 560 KDa, 220 KDa and 95 KDa were found. SDS-PAGE of these complexes from glomeruli and tubules under both reducing and nonreducing conditions gave similar patterns of 125I-insulin-crosslinked components, with the exception of the polypeptide pattern from the 560 KDa peak fraction which was markedly different between glomeruli and tubules with the former giving major labeled components at 170 and 68 KDa while the latter showed labeled components of 125 KDa and greater than 250 KDa. Glomerular and tubular insulin receptors, therefore, display similar subunit composition under reducing conditions, but differ in the non-reduced state, suggesting that these complexes may differ in the extent and/or nature of disulfide bonding.

Animals↗

Lipolysis-induced degradation of apolipoproteins B and E of human very low density lipoproteins.

We have found that in vitro lipolysis of human very low density lipoproteins (VLDL) by purified bovine milk lipoprotein lipase (LpL) promotes degradation of the apolipoprotein (apo) B moiety of VLDL. Analysis by sodium dodecyl sulfate-polyacrylamide gradient gel electrophoresis showed that lipolysis of VLDL by purified LpL for 1 h at 37 degrees C induced the selective degradation of the high Mr apo-B (apo-B-100) from most hypertriglyceridemic VLDL and from a few normolipidemic VLDL into several small fragments with molecular weights ranging from 90,000-490,000. No detectable degradation of apo-B occurred in control VLDL when incubated without LpL. The apo-E moiety of VLDL from certain individuals was also degraded following lipolysis of VLDL, and the extent of degradation of apo-B and -E in VLDL was varied among the individual VLDL. The major degradation products of apo-E, identified from the gel, were 31,000- and/or 28,000-Da species. In contrast to the apo-E moiety of VLDL, purified apo-E was not degraded when incubated with LpL. Incubation of low density lipoproteins (LDL) with LpL showed only a minimal effect on the apoproteins of LDL. When high density lipoprotein (HDL) was included in the lipolysis mixture as an acceptor of lipolytic surface remnants, the apoproteins of HDL remained unaltered, while the apo-B moiety of VLDL remnants in the mixture was degraded. Inclusion of protease inhibitors in the lipolysis mixture prevented the degradation of apo-B, but the hydrolysis of VLDL-triglyceride was minimally affected. A selective degradation of apo-B in VLDL also occurred during lipolysis of VLDL when VLDL was perfused through rat hearts. These results suggest that conformational changes in apo-B and apo-E caused by VLDL lipolysis may increase the susceptibility of apo-B and apo-E to degradation by the proteases co-isolated with VLDL. The consequences of the lipolysis-induced degradation of apo-B and apo-E on changes in metabolic properties of VLDL remnants remain to be determined.

Animals↗

Energy dependent insulin binding, internalization and degradation in isolated cardiac myocytes from normal and diabetic rats.

Insulin binding to isolated cardiac myocytes from normal and streptozotocin-induced diabetic rats was investigated. We found that at high affinity sites, the maximum numbers of insulin binding sites per cell are 33 000 and 22 000 for normal and diabetic myocytes, respectively with no discernible difference in receptor affinity. However, since the yield of myocytes from the diabetic heart was only 1/3 of the normal heart, it is suspected that the insulin function in the diabetic heart may be significantly lower than that in the normal heart. Chloroquine was found to markedly decrease insulin degradation with concomitant increase in net insulin uptake by isolated myocytes. This suggests that insulin degradation may take place within lysosomes after insulin is internalized. To determine whether internalization of insulin in myocytes is an energy dependent process, insulin binding and subsequent degradation were assessed in cells depleted of ATP by treatment with various metabolic inhibitors (2,4-dinitrophenol, NaF and iodoacetic acid). Depletion of the cellular ATP level resulted in a decrease in both insulin uptake and degradation. In diabetic myocytes, the general relationship between cellular ATP level and insulin uptake and degradation was similar to that found in normal myocytes. However, in diabetic myocytes, the cellular ATP level and insulin uptake were lower, but insulin degradation was greater than in normal myocytes. Insulin uptake by normal and ATP depleted cells at 4 degrees C (16 h) was lower than at 37 degrees C (1 h), while the ATP level was almost the same at both temperatures. This suggests that the internalization of insulin is a temperature as well as an ATP dependent process.

Adenosine Triphosphate↗

Comparison of insulin receptors from bovine retinal blood vessels and nonvascular retinal tissue.

The isolation and characterization of insulin receptors from retinal microvessels and nonvascular retinal tissue was carried out. Proteins were solubilized with Triton X-102 from retinal microvessels and nonvascular retinal tissue. The solubilized proteins were fractionated by DEAE-Sephacel ion exchange chromatography and complexed with 125I-insulin. The 125I-insulin-protein complexes were covalently cross-linked with disuccinimidyl suberate and chromatographed on a Sepharose CL-6B column. Three 125I-insulin-protein complexes with molecular weights of 560,000, 220,000 and 95,000 were obtained from both retinal microvessels and nonvascular tissue samples. The relative amount of the three complexes in retinal microvessels was about six times greater than in nonvascular retinal tissue. When aliquots of the complexes were subjected to SDS-polyacrylamide gel electrophoresis (SDS-PAGE) under non-reducing conditions, the 560,000-Da complex, which displayed the greatest specific binding of [125I]insulin, stayed at the origin; the 220,000-Da complex was dissociated into 180,000-190,000-Da and 80,000-86,000-Da components; and the 95,000-Da complex was dissociated into an 80,000-Da component. In contrast, when the cross-linked 125I-insulin-protein complexes were first reduced with dithiothreitol (DTT) and then subjected to SDS-PAGE, the 560,000-Da complex from retinal microvessels was dissociated into a 125,000-Da subunit, which is identical in size to the alpha-subunit of the insulin receptor reported in other tissues, while the 560,000-Da complex from nonvascular retinal tissue was dissociated into a 116,000-Da subunit. Upon SDS-PAGE under reducing conditions, both the 220,000-Da complex and the 95,000-Da complex from both types of retinal tissue were dissociated into 65,000-Da subunits. These results confirm that the insulin receptors of nonvascular retinal tissue exhibit structural differences from those in retinal microvessels and from insulin receptors in other tissues.

Animals↗

Distribution of insulin receptors in human erythrocyte membranes. Insulin binding to sealed right-side-out and inside-out human erythrocyte vesicles.

Analyses of insulin binding to human erythrocytes and to resealed right-side-out and inside-out erythrocyte membrane vesicles have revealed that high affinity insulin binding receptors are present on both sides of the erythrocyte membranes. Insulin binding to human erythrocytes was examined with the use of a binding assay designed to minimize the potential errors arising from the low binding capacity of this cell type and from non-specific binding in the assay. Scatchard analysis of equilibrium binding to the cells revealed a class of high affinity sites with a dissociation constant (Kd) of (1.5 +/- 0.5) X 10(-8) M and a maximum binding capacity of 50 +/- 5 sites per cell. Interestingly, both resealed right-side-out and inside-out membrane vesicles exhibited nearly identical specific sites for insulin binding. At the high affinity binding sites, for both right-side-out and inside-out vesicles, the dissociation constant (Kd) was (1.5 +/- 0.5) X 10(-8) M, and the maximum binding capacity was 17 +/- 3 sites per cell equivalent. These findings suggest that insulin receptors are present on both sides of the plasma membrane and are consistent with the participation of the erythrocyte insulin receptors in an endocytic/recycling pathway which mediates receptor-ligand internalization/externalization.

Binding Sites↗

Developmental changes in insulin receptors of pig red blood cells.

Scatchard analysis of the insulin binding to pig reticulocytes, fetal red cells, and adult erythrocytes showed the maximum number of high-affinity binding sites per cell to be 274, 147, and 29, respectively. All three cell types displayed a practically identical dissociation constant of approximately 1.22 X 10(-8) M at the high-affinity region. A long-term in vitro incubation of the fetal red cells and reticulocytes under tissue culture conditions was accompanied by a significant loss of insulin-binding capacity without any appreciable alteration of the dissociation constant. The isolation and characterization of insulin-receptor complexes from these cell types were carried out to establish whether the difference in insulin-binding capacity was due to the difference in the amount of the same species or due to different species of insulin receptors. Membrane proteins were extracted with Triton X-102 and fractionated by DEAE-Sephacel ion-exchange column chromatography. Each peak sample was complexed with 125I-insulin, and the complexes were covalently crosslinked and then applied to a Sepharose CL-6B column. A 95,000-Da complex was obtained from adult pig erythrocyte membranes; 220,000- and and 95,000-Da complex was obtained from adult pig erythrocyte membranes; 220,000- and 95,000-Da complexes from pig reticulocyte membranes; and greater than 600,000-, 220,000-, and 95,000-Da complexes from pig fetal cell membranes. Upon sodium dodecyl sulfate-polyacrylamide gel electrophoresis under a nonreducing condition, the 95,000-Da complex was dissociated into a 53,000-Da component; the greater than 600,000-Da complex into greater than 320,000-, 130,000-, and 53,000-Da components; and the 220,000-Da complex was dissociated into 220,000-, 130,000-, and 53,000-Da components. These findings strongly suggest that the decrease in insulin binding during the developmental changes of red blood cells is due to a disappearance of high-molecular-weight insulin receptors rather than a decrease in the amount of the smaller receptor molecules.

Aging↗

Isolation and characterization of beta 1-adrenergic receptors from adult, rat cardiac myocytes.

The beta-receptors were isolated from rat cardiac myocytes and characterized. Isolated myocytes were prepared from adult rat hearts and characterized for viability. Membrane proteins were solubilized from myocytes with 1% Triton X-102. The solubilized membrane proteins were fractionated by DEAE-Sephacel ion exchange column chromatography. Two major protein peaks were obtained. The second protein peak sample was found to contain beta-receptors to which 125I-15-(4'-azido-3'-iodobenzyl)-carazolol (125I-ABC) was specifically bound. This sample was labeled covalently with 125I-ABC by UV irradiation. The radiolabeled sample was applied to a Sepharose CL-6B gel column. Two radiolabeled protein peaks, one with a molecular weight of approximately 570,000 and the other with a molecular weight of approximately 95,000 were found. When the 570,000-dalton complex was subjected to sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE) under reducing conditions, it was dissociated into a component with a molecular weight of 66,000. The 95,000-dalton complex was dissociated into a 58,000-dalton component upon SDS-PAGE under reducing conditions. An excess amount of isoproterenol and propranolol decreased photolabeling of the beta-receptors with 125I-ABC by 60% and 40%, respectively.

Adrenergic beta-Antagonists↗

Isolation and characterization of human erythrocyte insulin receptors.

The noncovalently associated 125I-insulin-receptor complex was isolated from human erythrocyte membranes after allowing 125I-insulin to interact with the membranes followed by extraction of the 125I-insulin-receptor complex with Triton X-102 or, alternatively, by complete solubilization of the membranes with sodium dodecyl sulfate (SDS), removal of SDS, and then treatment of the solubilized sample with 125I-insulin. Sepharose CL-6B column chromatography of the 125I-insulin-receptor complex obtained by both of the above procedures yielded a highly radioactive 140,000-Da complex which was dissociated into small peptides when subjected to SDS-polyacrylamide gel electrophoresis. In contrast, when the 125I-insulin-treated membrane sample was extracted with Triton X-102, purified by DEAE-Sephacel ion exchange chromatography, covalently cross-linked with disuccinimidyl suberate, and then subjected to SDS-polyacrylamide gel electrophoresis, a highly radioactive component with Mr = 53,000 was obtained. On the other hand, when the Triton X-102-solubilized membrane receptor sample was fractionated by DEAE-Sephacel ion exchange chromatography, complexed with 125I-insulin, covalently crosslinked, and then applied to a Sepharose CL-6B column, a 95,000-Da complex with high specific radioactivity was obtained. Upon SDS-polyacrylamide gel electrophoresis, the 95,000-Da complex was dissociated into a 53,000-Da component which appeared identical with that obtained from the receptor complex described above which was obtained by direct interaction of the membranes with 125I-insulin.

Chromatography, Gel↗

Partial characterization of insulin receptors from rat myocytes.

Isolated myocytes were prepared from the adult rat heart and characterized for viability. The myocytes were exposed to 125I-insulin, and the 125I-insulin-receptor complex was extracted with 1% Triton X-102 and then applied to a DEAE-Sephacel column. When the chromatography were applied to a Sepharose CL-6B column, a 140,000-dalton complex with high specific radioactivity was found. Alternatively, when myocyte insulin receptors were first extracted with 1% Triton X-102 without prior exposure to 125I-insulin and then applied to a DEAE-Sephacel column, three peak protein fractions were obtained. They were treated separately with 125I-insulin and the 125I-insulin-protein complexes were covalently cross-linked with disuccinimidyl suberate. The cross-linked samples were applied to a Sepharose CL-6B column and the radioactive protein fractions were subjected to sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The first and second peak samples from the ion exchange chromatography yielded complexes of low specific radioactivity, which appear to be formed by nonspecific random binding of 125I-insulin to the solubilized membrane proteins. In contrast, Sepharose CL-6B gel filtration of the cross-linked sample from the third peak fractions gave a major highly radioactive 125I-insulin-receptor complex with a molecular weight of 370,000 and a minor complex of low radioactivity with a molecular weight of 140,000. Upon sodium dodecyl sulfate-gel electrophoresis, the 370,000-dalton complex was dissociated to 130,000- and 82,000-dalton components and the 140,000-dalton complex was dissociated to a 47,000-dalton component.

Animals↗

Inhibition of S37 ascites cell amino acid transport systems by alpha-chloromethylketone analogs.

Alanine chloromethylketone and leucine chloromethylketone were synthesized and their effects on amino acid transport in sarcoma 37 mirone ascites tumor (S37) cells were studied. Alanine chloromethylketone preincubation weakly inhibited system A. Leucine chloromethylketone preincubation strongly inhibited both amino acid transport systems L and A. Leucine chloromethylketone was also a competitive inhibitor of leucine transport. Labeled leucine chloromethylketone was concentrated by S37 cells. Leucine chloromethylketone preincubation inhibition was concentration dependent and partial protection of transport was afforded by leucine. Steady-state retention of amino acids was decreased more than the initial velocity of transport by leucine chloromethylketone preincubation. Glutathione was also depleted. Labeled leucine chloromethylketone was incorporated in a plasma membrane protein fraction comigrating on a DEAE-cellulose column (DE52) with gamma-glutamyltranspeptidase activity. There was a modest increase in vital staining after treatment of S37 cells with leucine chloromethylketone, and glucose uptake was also inhibited. Whilst several effects occur during treatment of S37 cells with leucine chloromethylketone, it is suggested than one prominent effect is alkylation of amino acid transport system components.

Alanine↗