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Biomedical subjects

B Karlsson

Publications and source records attributed to B Karlsson.

At least 127 records · Page 7Linked to original sources

The structure of the paramagnetic oxygen intermediate in the cytochrome c oxidase reaction.

A paramagnetic intermediate with an unusual e.p.r. spectrum is formed when fully reduced cytochrome c oxidase is allowed to react with dioxygen at 173 K. The effect on the e.p.r. spectrum of using dioxygen enriched in 17O was investigated. These experiments show that an oxygen atom derived from dioxygen is bound to Cu2+ in the intermediate. The e.p.r. parameters can be explained in terms of a weak antiferromagnetic interaction (J approximately equal to 10 cm-1) between Cu2+B and cytochrome a3 in the low-spin ferryl ion state. It is suggested that an OH- ion bound to Cu2+B is hydrogen bonded to the oxygen atom of the ferryl ion in cytochrome a3.

Animals↗

Treatment of chronic obsessive compulsive states with stereotactic anterior capsulotomy or cingulotomy.

A neuropsychological model on how to evaluate patients subjected to stereotactic psychosurgery is presented. Four patients with chronic obsessive compulsive neurosis were randomly assigned to either stereotactic anterior capsulotomy or cingulotomy, and assessed pre-, peri-, and postoperatively according to this model. The best immediate and long-term follow-up results in reducing obsessional symptoms were obtained in the two capsulotomized patients. Psychosurgery should only be performed by a multidisciplinary team of specialists, with objective evaluation, adequate information on patients, and reliable test instruments.

Adult↗

The identity of a new copper(II) electron paramagnetic resonance signal in cytochrome c oxidase.

In reoxidation experiments with cytochrome c oxidase (EC 1.9.3.1) in the presence of both reducing substrate and molecular oxygen, a new EPR signal from Cu2+ has been observed. The new signal corresponds to 0.45 Cu per functional unit. It is concluded that the new EPR signal originates from CuB2+, the copper which is EPR-nondetectable in the resting enzyme. Optical absorption changes in the 500-700 nm region accompanies the decay of the new Cu2+ EPR signal. Based on the results in this investigation a catalytic cycle for cytochrome oxidase is proposed.

Animals↗

A comparative study of three approaches to the routine quantitative determination of spinal fluid total proteins.

The concentration of total protein in spinal fluid from 164 patients has been assayed by three methods based on different principles; a biuret, a dye-binding and a nephelometric procedure. Major proteins were quantified by immunochemical methods in order to get an estimate of the accuracy, and used for standard curves in the different methods in order to elucidate differences between total protein values. Based on the mean total protein values in relation to major protein values, total imprecision and practicability we conclude that the dye-binding technique is more accurate, precise and convenient than the other two methods for daily routine determination of total protein in spinal fluid.

Antigen-Antibody Reactions↗

A new copper(II) electron paramagnetic resonance signal in two laccases and in cytochrome c oxidase.

A new EPR signal from Cu2+ has been discovered in reductive experiments with type 2 copper-depleted laccase from Polyporus versicolor. A novel EPR signal has also been found in native laccase from Rhus vernicifera on oxidation of the reduced protein with H2O2. In reoxidation experiments with cytochrome c oxidase from beef heart, a new Cu2+ signal has been observed. With Rhus laccase, the new signal is shown to originate from one of the copper ions that are nondetectable in the resting enzyme, and evidence is presented for the signals in Polyporus laccase and cytochrome c oxidase also stemming from the metal pairs that are antiferromagnetically coupled in the oxidized enzymes. The new signals show strong rhombic character, and the EPR parameters place them in a category different from the signals of type 1 as well as of type 2 Cu2+ ions.

Basidiomycota↗

Characterization of the low-temperature intermediates of the reaction of fully reduced soluble cytochrome oxidase with oxygen by electron-paramagnetic-resonance and optical spectroscopy.

The reaction of fully reduced soluble bovine heart cytochrome oxidase with O2 at 173K was investigated by low-temperature optical and e.p.r. spectroscopy, and the kinetics of the reaction were analysed by non-linear optimization techniques. The only e.p.r. signals seen during the course of the reaction are those attributable to low-spin cytochrome a3+ and CuA2+. Quantitative analysis of e.p.r. signals shows that, at the end point of the reaction at 173K, nearly 100% of CuA is in the cupric state but only about 40% of cytochrome a is in the ferric low-spin state. The optical spectra recorded at this stage of the reaction show incomplete oxidation of haem and the absence of a 655 nm absorption band. The only reaction scheme that accounts for both the e.p.r. and optical data is a four-intermediate mechanism involving a branching pathway. The reaction is initiated when fully reduced cytochrome oxidase reacts with O2 to form intermediate I. This is then converted into either intermediate IIA or intermediate IIB. Of these, intermediate IIB is a stable end product at 173 K, but intermediate IIA is converted into intermediate III, which is the stable state at 173 K in this branch of the mechanism. The kinetic analysis of the e.p.r. data allows the unambiguous assignments of the valence states of cytochrome a and CuA in the intermediates. Intermediate I contains cytochrome a2+ and CuA+, intermediate IIA contains low-spin cytochroma a3+ and CuA+, intermediate IIB contains cytochrome a2+ and CuA2+, and intermediate III contains low-spin cytochrome a3+ and CuA2+. The electronic state of the O2-binding CuBa3 couple during the reoxidation of cytochrome oxidase is discussed in terms of an integrated structure containing CuB, cytochrome a3 and O2.

Chemical Phenomena↗

Characterization of the intermediates in the reaction of mixed-valence state soluble cytochrome oxidase with oxygen at low temperatures by optical and electron-paramagnetic-resonance spectroscopy.

The reaction of soluble mixed-valence-state (a3+CuA 2+.CuB + A32+) cytochrome oxidase with O2 at low temperature was studied by optical and e.p.r. spectroscopy. The existence of three intermediates [Clore & Chance (1978) Biochem. J. 173, 799-8101] was confirmed. From the e.p.r data it is clear that cytochrome a and CuA remain in the low-spin ferric and cupric states respectively throughout the reaction. No e.p.r. signals attributable to cytochrome a3 or CuB were seen in the intermediates. The difference spectra (intermediates minus unliganded mixed-valence-state cytochrome oxidase) and absolute spectra of the three intermediates were obtained. The chemcal nature of the three intermediates is discussed in terms of their spectroscopic properties. A catalytic cycle for cytochrome oxidase is proposed.

Chemical Phenomena↗

Increase in myelin basic protein in CSF after brain surgery.

Myelin basic protein in spinal fluid was measured with a radioimmunoassay method after surgery of brain tumors and posttraumatic brains in thirteen cases. Three cases were studied daily for up to three weeks. Immediately after the operation the values were high but then successively returned to normal. Repeated measurement of the myelin basic protein in spinal fluid seem to be useful for assessing the healing rate of brain tissue after surgery for brain tumors and after other brain damage.

Adult↗

Studies on maturity in newborn infants. VIII. Alpha-foetoprotein and albumin.

Cord blood of 125 newborn infants of various gestational ages has been analysed for the amounts of alpha-foetoprotein and albumin using an electroimmunoassay. The quotient alpha-foetoprotein/birth weight was recorded as well. All the three measureements correlate fairly well with the gestational age of newborn infants. Measuring alpha-foetoprotein is not of the same value, however, in estimating gestational age as is the simple scoring of external characteristics.

Apgar Score↗