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Biomedical subjects

M S Khan

Publications and source records attributed to M S Khan.

At least 19 recordsLinked to original sources

Solid state multinuclear NMR study of sigma-acetylide complexes of platinum, trans-[ClPt(PnBu3)2-C=C-p-C6H4-C=C-Pt(PnBu3)2Cl] and trans-[-Pt(PnBu3)2-C=C-p-C6H4-C=C-]n.

Solid state 13C, 31P and 195Pt NMR has been employed to study the electronic and geometric structure of the dimeric and polymeric sigma-acetylide complexes of platinum, trans-[ClPt(PnBu3)2-C identical to C-p-C6H4-C identical to C-Pt(PnBu3)2Cl] and trans-[-Pt(PnBu3)2-C identical to C-p-C6H4-C identical to C-]n. The 195Pt shielding tensor has been measured and analysed to reveal details about the electronic properties of the Pt-ligand bonds.

Acetylene

Comparison of the carbohydrate composition of rat and human corticosteroid-binding globulin: species specific glycosylation.

We have examined the carbohydrate composition of corticosteroid-binding globulin (CBG) obtained from rat and human serum. Rat CBG contained a carbohydrate composition that was strikingly different from that of human CBG. Like other glycoproteins that circulate in human plasma, human CBG had a carbohydrate composition that was consistent with the presence of biantennary and triantennary oligosaccharide structures. In contrast, the carbohydrate composition of rat CBG indicated the presence of more than one sialic acid residue per antenna. It is not clear whether rat CBG contains a carbohydrate structure with sialic acids attached to both galactose and N-acetylglucosamine on the same antenna, or a terminal disialylated structure (sialic acid linked alpha 2-8 to sialic acid). These structural variations may play a role in the interaction of CBG with its receptor.

Animals

Sex hormone-binding globulin: anatomy and physiology of a new regulatory system.

Sex hormone-binding globulin (SHBG) is a plasma glycoprotein that binds a number of circulating steroid hormones (testosterone, dihydrotestosterone and estradiol) with high affinity, thus regulating their free concentration in plasma. In addition to binding steroids, SHBG itself binds to receptor sites on plasma membranes with somewhat unusual kinetics. Both the off and on rates are quite slow. The steroid-binding and membrane-binding functions are intertwined in what is clearly an allosteric relationship. Occupation of SHBG's steroid-binding site by a steroid inhibits its ability to bind to its membrane receptor-binding site. This inhibition is not related to a steroid's biological activity. Metabolites of steroids without biological activity, e.g. 2-methoxyestradiol, actively inhibit SHBG's interaction with its membrane receptor. However, if unliganded SHBG is allowed to bind to its receptor on intact cells, and an appropriate steroid hormone then is introduced, adenylate cyclase is activated and intracellular cAMP increases. This function is specific for steroids with biological activity, 2-methoxyestradiol has no activity in this arena. These observations demonstrate a potentially important role for SHBG as a regulator of cell function. They also demonstrate an additional mode of action of steroid hormones, one that does not require that the steroid interact with a steroid receptor.

Amino Acid Sequence

Delineation and synthesis of the membrane receptor-binding domain of sex hormone-binding globulin.

Sex hormone-binding globulin (SHBG) is a plasma glycoprotein which binds certain steroids. It, in turn, binds to a specific receptor on cell membranes. This work was undertaken to identify, isolate, sequence, and synthesize the region of SHBG that interacts with its membrane receptor. To accomplish this, highly purified human SHBG was digested with trypsin. The SHBG-derived tryptic peptides were separated by high performance liquid chromatography. They were evaluated for their ability to compete with 125I-SHBG for binding to the SHBG receptor solubilized from human prostatic membranes. Only a single peptide, corresponding to residues 48-57 of the known sequence of human SHBG, inhibited receptor binding. A synthetic decapeptide with this amino acid sequence also competitively inhibited SHBG binding.

Amino Acid Sequence

Histidine 235 of human sex hormone-binding globulin is the covalent site of attachment of the nucleophilic steroid derivative, 17 beta-bromoacetoxydihydrotestosterone.

This article deals with the elucidation of the steroid-binding site of human sex hormone-binding globulin (SHBG). 17 beta-Bromoacetoxydihydrotesterone (BA-DHT) reacted with highly purified SHBG in a time-dependent and irreversible fashion. The interaction could be totally inhibited by the simultaneous addition of an excess of dihydrotesterone. At the completion of the reaction, the molar ratio of BA-DHT to SHBG was approximately unity. SHBG was affinity labeled with [14C]BA-DHT and submitted to acid hydrolysis. The released amino acids were evaluated on high performance liquid chromatography, and virtually all of the 14C was identified as 3-[14C]carboxymethylhistidine. Furthermore, [14C]BA-DHT-labeled SHBG was digested with trypsin, followed by isolation of the released tryptic peptides by reverse-phase high performance liquid chromatography. The 14C was localized to a single tryptic peptide. It contained 2' histidyl residues, corresponding to residues 235 and 251 in the known amino acid sequence of SHBG. Although most of the 3-[14C]carboxymethylhistidine, or its phenylthiohydantoin derivative, was trapped on the filter of the amino acid sequenator, sufficient radioactivity emerged to identify histidyl residue 235 as the labeled amino acid.

Affinity Labels

The control of the interaction of sex hormone-binding globulin with its receptor by steroid hormones.

Sex hormone-binding globulins (SHBG) is a plasma glycoprotein that binds certain steroids. It, in turn, binds to a specific receptor on cell membranes. This work was undertaken to investigate the role of steroids in the interaction of SHBG with its receptor. Because the probe for the interaction of SHBG with its receptor is 125I-SHBG, we first showed that 125I-SHBG binds [3H]dihydrotestosterone (DHT) at 4 degrees C and 37 degrees C with KD values similar to those published previously for pure radioinert SHBG. 125I-SHBG could be prevented from binding to its receptor by a variety of steroids whose relative inhibitory activity (dihydrotestosterone much greater than 2-methoxyestradiol greater than testosterone greater than estradiol much greater than methyltrienolone greater than cortisol) was almost identical to their relative ability to bind to SHBG. Because significant binding of [3H]DHT to the SHBG receptor could not be demonstrated, steroid inhibition of SHBG binding must be noncompetitive. If steroids bound to SHBG prevent binding to the SHBG receptor, then liganded SHBG should have a higher apparent KD for its receptor than unliganded SHBG. This is the case. The KD was 0.86 +/- 0.25 nM for the high affinity receptor site using liganded SHBG and 0.19 +/- 0.024 nM for unliganded SHBG. Thus, only liganded SHBG assumes a conformation that prohibits interaction with the SHBG receptor. However, when unliganded SHBG was prebound to its receptor, it retained its ability to bind [3H] DHT. The model that emerges from these observations is as follows. Unliganded SHBG can bind either steroids or receptor in a reversible reaction; SHBG bound to a steroid cannot bind to the receptor, but unliganded SHBG that first binds to the receptor can subsequently bind steroids.

Binding Sites

Endogenous insulin secretion in newly diagnosed diabetic patients in Saudi Arabia.

Diabetes mellitus is a major health problem in Saudi Arabia. The evaluation of endogenous insulin secretion at diagnosis has not yet been studied in this population. We have therefore studied fasting and post-glucagon stimulation levels of glucose, insulin and C-peptide in 216 newly diagnosed untreated diabetic patients. The mean +/- SD fasting insulin and C-peptide levels were 14.0 +/- 1.8 microU/ml and 1.8 +/- 0.4 ng/ml, while post-glucagon stimulation levels were 21.1 +/- 3 microU/ml and 2.4 +/- 0.4 ng/ml. There were significant post-stimulatory increment levels for insulin, from 4.9 to 13.7 microU/ml, and C-peptide from 0.2 to 1.3 ng/ml (P less than 0.001). Such increments did not affect specified age distribution. We found a significant correlation between the fasting levels and post-stimulation levels of C-peptide and insulin. Obesity correlated with higher basal and post-stimulation levels of both hormones (r = 0.67, P less than 0.001). The mean +/- SD fasting insulin and C-peptide levels were 18.5 +/- 9.1 microU/ml and 2.4 +/- 0.8 ng/ml for obese patients and 11.5 +/- 5.1 microU/ml and 1.9 +/- 1.1 ng/ml for non-obese patients. The type of diabetes among the Saudi adult diabetic patients studied is characterized by high basal C-peptide and insulin levels which increase significantly with stimulation, suggesting diminished but present endogenous B-cell function.

Adolescent

The rat hepatic corticosteroid-binding globulin receptor: distinction from the asialoglycoprotein receptor.

This investigation was undertaken to ascertain whether rat liver cells contained a receptor for corticosteroid-binding globulin (CBG) that could be differentiated clearly from the asialoglycoprotein receptor. To do this, [125I]CBG, [125I] asialo-CBG, and [125I]asialofetuin were used as probes to differentiate the binding activities of the two receptors. On hepatic membranes, CBG bound to a single set of sites with a Kd of 0.74 microM, asialofetuin bound to a single set of sites with a Kd of 0.018 microM, asialo-CBG bound to two sets of sites with Kd values of 0.004 and 1.4 microM and in the presence of 1 microM asialofetium, asialo-CBG bound to a single set of sites with a Kd of 0.53 microM, not different (P greater than 0.2) from the Kd of CBG. Cross-competition studies using the three 125I-labeled ligands and allowing each to compete with the three radioinert ligands indicated the existence of two separate receptors. Desialylation of hepatic membranes differentially affected the binding of CBG and asialofetuin. Finally, whole cells bound CBG specifically, but internalized it to only a minimal extent (less than 10%). This observation does not support a role for the CBG-receptor system in the entry of steroids into cells.

Animals

Biologically active steroids activate receptor-bound human sex hormone-binding globulin to cause LNCaP cells to accumulate adenosine 3',5'-monophosphate.

The binding of human sex hormone-binding globulin (SHBG) to a human prostatic cancer cell line (LNCaP) and the results of that binding were examined. Membranes derived from LNCaP cells bound unliganded SHBG on two sets of sites whose affinities were: Ka1 = 3.1 +/- 1.6 x 10(10) M-1 and Ka2 = 8.7 +/- 4.3 x 10(6) M-1. Intact cells also bound SHBG, but even after 6 h, less than 10% of specifically bound SHBG was internalized. This observation speaks against a role for the membrane binding of SHBG in steroid transport across cell membranes. When LNCaP cells were prebound with SHBG, addition of dihydrotestosterone or estradiol resulted in a dose-dependent increase in intracellular cAMP. SHBG in the absence of steroids or dihydrotestosterone in the absence of SHBG was without effect. 2-Methoxyestradiol, a steroid metabolite without biological activity, but which binds to SHBG more tightly than does estradiol, was also without effect. These observations demonstrate a potentially important role for SHBG as a regulator of cell function. They also demonstrate an additional mode of action of steroid hormones, one that does not require that the steroid interact with a steroid receptor.

2-Methoxyestradiol

Health sciences libraries and information services in Bangladesh.

Basic problems relating to the status of health sciences libraries and information centers in Bangladesh are highlighted and discussed; strategies for improving the country's health sciences information services are suggested. A survey of libraries is reported, the country's national science and technology information policy is defined, and recommendations for action are proposed.

Bangladesh

Obesity and major metabolic indices in newly diagnosed Saudi diabetic patients.

Metabolic indices were assessed in 217 Saudi diabetic patients and 57 control subjects in relation to Body Mass Index (BMI). Patients with BMI values greater than or equal to 27 in male and greater than or equal to 25 in female were considered obese. Obesity was found more frequent in females (82.7%) than in males (40.9%) (p less than 0.01). Basal glucose and HbA1C levels were lower in obese males than in females. C-peptide levels were higher (p less than 0.01) in the obese subjects than in the non-obese. Within the obese group c-peptide levels were higher in males than in females. Triglycerides and total lipids were also higher in the obese group. Our result suggests that a varying degree of obesity influences the rate of both beta cell secretion, insulin resistance and impaired lipid metabolism.

Adult

Solubilization and partial characterization of the sex hormone-binding globulin receptor from human prostate.

The sex hormone-binding globulin (SHBG) receptor was solubilized from the membranes of human prostate glands with the zwitterionic detergent CHAPS (3-[(3-cholamidopropyl)dimethylammonio]-1-propane-sulfonic acid). The binding activity of the soluble receptor was measured by allowing it to bind to 125I-SHBG and precipitating the complex with polyethylene glycol-8000. The binding activity was stable for at least 4 months at -20 degrees C and had a half-life of 23 days at 4 degrees C. Like the membrane-bound receptor, Scatchard analysis revealed two sets of binding sites for the soluble one. At equilibrium (24 h), the high affinity site had an association constant (KA) of 6.8 x 10(8) M-1 and a binding capacity of 1.4 pmol/mg protein, whereas the low affinity site had a KA of 4.7 x 10(6) M-1 and a binding capacity of 43 pmol/mg protein. At 37 degrees C, the association rate constant (k1) was 8.37 x 10(5) M-1 min-1 and the dissociation rate constant (k2) was 3.43 x 10(-4) min-1. The soluble receptor was retarded on Sepharose CL-6B and had an apparent Mr = 167,000.

Cholic Acids