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K S Schmitz

Publications and source records attributed to K S Schmitz.

At least 19 recordsLinked to original sources

Direct observation of the distribution of fluorescent probes in phosphatidylcholine/cholesterol vesicles using flow microfluorometry.

The technique of flow microfluorometry has been extended to the study of small lipid complexes to assess either the lipid (hydrophobic) or aqueous (hydrophilic) compartments of selected natural or model membrane systems. sn-1-Palmitoyl-sn-2-oleoyl-phosphatidylcholine/cholesterol unilamellar vesicles, averaging 268 nm in diameter and containing varying concentrations of the synthetic lipophile probe, sn-1-palmitoyl-sn-2-12-[N-4-nitrobenzo-2-oxa-1,3- diazole]-aminocaproyl-phosphatidylcholine (NBD-PC), were analyzed using an Ortho Series 50-H Cytofluorograf and an Ortho 2150 computer system. NBD-labeled vesicles were analyzed for green fluorescence and the intensity of scattered light, the later being analyzed both at low angle (2-5 degrees) and at 90 degrees to the incident beam. At the high amplification required for vesicle detection, background signals from the sheath buffer, nonspecific laser light, and electronic noise were observed. However, this background noise signal was removed by appropriately setting a discriminator window. Profiles of signals falling within this region were then constructed. For the settings selected, more than 98% of data recorded could be attributed to observations on vesicles. Size information from the intensity of scattered light was obtained by comparison of the sample with fluorescent microspheres after correcting for the particle-scattering function difference between hollow and solid spheres and for refractive index differences. Additionally, cytograms and profiles were constructed for vesicles containing 5 mM 6-carboxyfluorescein, 3',6'-dihydroxy-3-oxospiro(isobenzofuran-1(3H),9'-(9H)xan then)-6-carboxylic acid, trapped in the aqueous core. Thus, the utility of flow microfluorometry has been extended to much smaller particle populations than studied previously by this technique.(ABSTRACT TRUNCATED AT 250 WORDS)

Cholesterol

Effect of titration charge on the diffusion of bovine serum albumin.

Quasi-elastic light scattering studies were performed on purified bovine serum albumin sample under conditions of high and low ionic strength and pH. Two relaxation modes were observed in all cases. The apparent diffusion coefficient obtained in the asymptotic time window (T) limit T leads to 0-i.e., Dapp(T leads to 0)-was found to be approximately equal to 6.1 X 10(-7) cm2/sec under conditions that minimized electrical forces (100 mM KCl at pH 4.5). As the ionic strength was lowered to 0.1 mM KCl (pH 4.5) or the pH was raised to 10 (100 mM KCl), Dapp(T leads to 0) increased to 7.2-7.5 X 10(-7) cm2/sec. These observations for Dapp(T leads to 0) are interpretable in terms of small-ion-polyion coupled modes in accordance with the theory of Lin et al. regarding dynamic Donnan effects [Lin, S.-C., Lee, W. I. & Schurr, J. M. (1978) Biopolymers 17, 1041-1064] without having to invoke direct polyion-polyion interactions. These direct interactions may be important at extreme ionic strength and pH conditions (0.1 mM KCl at pH 10). Concomitant with an increase in Dapp(T leads to 0), under appropriate changes in solvent conditions, is an increase in the relative amplitude and relaxation time of the slow decay mode.

Animals

Hydrodynamic evidence in support of spacer regions in chromatin.

Quasi-elastic light scattering and sedimentation velocity methods were used to study the hydrodynamic properties of purified dimer subunits obtained from partial digestion of chicken erythrocyte chromatin with staphylococcal nuclease. The experimental value of 1.87 +/- 0.08 X 10(-7) gram per second for the friction factor of these dimer subunits in low ionic strength buffer cannot be reasonably interpreted in terms of a contiguous sphere model. Analysis by means of an equivalent dimer method suggests that the spacer region accounts for a maximum of 19 percent of the friction properties of the dimer.

Animals