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Biomedical subjects

B L Newman

Publications and source records attributed to B L Newman.

8 recordsLinked to original sources

The somatostatin receptors SSTR1 and SSTR2 are coupled to inhibition of adenylyl cyclase in Chinese hamster ovary cells via pertussis toxin-sensitive pathways.

Somatostatin exerts multiple effects throughout the body by binding to specific somatostatin receptors. Two classes of somatostatin receptors, SRIF1 and SRIF2, have been distinguished biochemically and pharmacologically. Two cDNAs have been recently isolated that encode somatostatin receptors 1 and 2 (SSTR1 and SSTR2, respectively). The pharmacological characteristics of receptors expressing these cDNAs resemble those of the SRIF2 and SRIF1 classes of somatostatin receptors, respectively. We stably expressed the rat homologs of both receptors in Chinese hamster ovary (CHO) cells (type K1). These transfected cell lines recognized the endogenous ligands SS14 and SS28 with high affinity, whereas the synthetic analog MK678 identified only SSTR2. In preparations of CHO-SSTR1 or CHO-SSTR2 cells, SS14 and SS28 inhibited forskolin-stimulated adenylyl cyclase activity by approximately 35%, with ED50 values in the nanomolar range. The adenylyl cyclase inhibition was dependent upon the guanine nucleotide GTP and could be ablated with pertussis toxin preincubation. The present data indicate that SSTR1 and SSTR2 are coupled to inhibition of adenylyl cyclase via pertussis toxin- sensitive G-proteins.

Adenylate Cyclase Toxin↗

Increased glycosylation of human lens epithelial basement membrane in diabetes mellitus.

We studied the nonenzymatic glycosylation of lens epithelial basement membranes (LEBM) of senile cataractous lenses of both diabetic and nondiabetic patients. The human LEBMs were isolated from surgically removed senile cataracts and purified by osmotic lysis and detergent treatments. Glycosylation assay of LEBMs was done using the colorimetric method of Flückiger and Winterhalter. The glycosylation value ranged from 16.39 to 92.56 n mol/mg protein overall, with a mean of 63.54 +/- 24.56 n mol/mg protein for the diabetic specimens and a mean of 29.97 +/- 14.48 n mol/mg protein for the nondiabetic controls (P = 0.009). The study confirms our previous observation of in vivo glycosylation of the LEBM and further establishes that diabetic patients have a twofold increase in the amount of LEBM glycosylation when compared to their nondiabetic counterparts.

Aged↗

The effect of a diuretic (hydrochlorothiazide) on tear production in humans.

The effect of an orally administered diuretic, hydrochlorothiazide, on tear production in 11 normal young human subjects (five men and six women, 18 to 35 years old) was measured in a single-masked study. Schirmer tests with topical anesthetic showed a significant (P = .02) decrease in basal aqueous tear production on days when these subjects were taking the diuretic. The average decrease was 2.1 mm of wetting in five minutes.

Adolescent↗

Glycosylation in vivo of human lens capsule (basement membrane) and diabetes mellitus.

Glycosylation represents a nonenzymatic posttranslational modification of some proteins in vivo. We have investigated possible glycosylation, in vivo, of human lens capsule (basement membrane of lens epithelium) using a colorimetric method. Our study reveals, for the first time, in vivo glycosylation of human lens capsule. Furthermore, the glycosylation of the lens capsule in the diabetics (57.30 +/- 11.26 n moles/mg. protein) is found to be significantly greater than that in their nondiabetic counterparts (29.11 +/- 4.90 n moles/mg. protein) (p less than 0.0005). The present observation represents the first example of increased glycosylation of a basement membrane in the diabetic patients as compared to the nondiabetic controls.

Basement Membrane↗

Enhanced NE uptake by isolated hypothalamic storage vesicles of hypertensive rats.

The in vitro uptake of 3H-NE by storage vesicles from the hypothalamus of age-matched spontaneously hypertensive rats (SHR) and Wistar-Kyoto (WKY) rats has been studied using a new reliable procedure for the isolation of biochemically active storage vesicles. In each of 13 paired studies, done in triplicate, storage vesicles of SHR took up more 3H-NE than those of WKY. (The mean difference was 37% more uptake by SHR.) Electron-microscopic examination of normotensive samples showed a concentration of intact synaptic vesicles; whereas SHR subfractions were composed of fragmented membranes that resembled swollen, distorted vesicles. These findings in the brain tissues of SHR parallel our previous results found in SHR peripheral tissues. Taken together, we interpret the results to indicate that the membranes of synaptic vesicles of SHR are altered structurally and biochemically.

Animals↗