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Biomedical subjects

U Schmitz

Publications and source records attributed to U Schmitz.

At least 19 recordsLinked to original sources

An extended nomenclature of the canine karyotype.

In contrast to many other animals, knowledge about the canine karyotype is quite sparse. This is due in part to the rather difficult canine karyotypic pattern. Except for the X and the Y chromosome, there are only acrocentric chromosomes, which appear to be quite small and difficult to identify unambiguously. In previous reports, schematic representations of the canine karyotype have been described. However, a nomenclature comparable to that of the human karyotype or the karyotypes of sheep, cattle, or goats does not yet exist for the dog. Based on high-resolution banding of metaphase chromosomes from canine fibroblasts, we propose an ideogram of the canine karyotype with 460 numbered bands and characteristic landmarks. In addition, the centromere positions of the canine chromosomes are determined by a combined GTG-banding/FISH approach, and the R- and G-banding patterns are compared.

Animals

[Orthostatic hypotension].

We report about a 67-year-old woman presenting with progressive orthostatic vertigo, urinary incontinence and clinical signs of Parkinson's disease. The Schellong test revealed deficient sympathetic orthostatic pressure response without an increase of plasma norepinephrine; therefore, a Shy-Drager syndrome was diagnosed. Because of inefficiency of the general measures (compressive pantyhose), the sympathomimetic agonists, and the centrally active alpha-2-antagonists, norepinephrine was administered via a miniature dosing pump. By this therapeutic regimen a marked improvement of orthostatic hypotension was achieved.

Aged

Probability assessment of conformational ensembles: sugar repuckering in a DNA duplex in solution.

Conformational flexibility of molecules in solution implies that different conformers contribute to the NMR signal. This may lead to internal inconsistencies in the 2D NOE-derived interproton distance restraints and to conflict with scalar coupling-based torsion angle restraints. Such inconsistencies have been revealed and analyzed for the DNA octamer GTATAATG.CATATTAC, containing the Pribnow box consensus sequence. A number of subsets of distance restraints were constructed and used in the restrained Monte Carlo refinement of different double-helical conformers. The probabilities of conformers were then calculated by a quadratic programming algorithm, minimizing a relaxation rate-base residual index. The calculated distribution of conformers agrees with the experimental NOE data as an ensemble better than any single structure. A comparison with the results of this procedure, which we term PARSE (Probability Assessment via Relaxation rates of a Structural Ensemble), to an alternative method to generate solution ensembles showed, however, that the detailed multi-conformational description of solution DNA structure remains ambiguous at this stage. Nevertheless, some ensemble properties can be deduced with confidence, the most prominent being a distribution of sugar puckers with minor populations in the N-region and major populations in the S-region. Importantly, such a distribution is in accord with the analysis of independent experimental data--deoxyribose proton-proton scalar coupling constants.

Algorithms

Reverse transcriptase-polymerase chain reaction (RT-PCR): a sensitive method to examine basic fibroblast growth factor-induced expression of the early growth response gene-1 (egr-1) in human umbilical arterial endothelial cells.

Immediate-early genes are expressed upon growth and differentiation in a large variety of cells and species. In the present study we investigated the effect of basic fibroblast growth factor (bFGF) on early growth response gene-1 (egr-1)-mRNA expression in human umbilical arterial endothelial cells (HUAEC). The detection of this gene in HUAEC was performed by Northern blotting and by reverse transcriptase-polymerase chain reaction (RT-PCR). For RT-PCR specific primers for egr-1 and glyceraldehyde-3-phosphate-dehydrogenase (GAPDH) were constructed and PCR conditions were optimized. bFGF induced a time- and concentration-dependent increase of egr-1 expression. Maximal expression occurred within 30 min of stimulation with bFGF at a concentration of 50-100 ng ml-1. RT-PCR gave highly reproducible and specific results. The comparison of both methods showed comparable results but a higher sensitivity for RT-PCR in detecting the egr-1 mRNA. RT-PCR is an excellent method for detecting the expression of egr-1 mRNA in HUAEC.

Base Sequence

Native low-density lipoprotein (LDL) induces the expression of the early growth response gene-1 in human umbilical arterial endothelial cells.

Low-density lipoprotein (LDL) is thought to be involved in the growth of various cell types including human endothelial cells. Nevertheless, little is known about the signal transduction mechanisms underlying the growth-promoting effects of LDL in endothelial cells. Furthermore, the question whether native LDL participates in the described effects remains unanswered. Here, we show that native LDL induces a dose-dependent elevation in free intracellular Ca(2+)-concentration ([Ca2+]i) as well as a rapid and prolonged increase in intracellular pH (pHi) in human umbilical arterial endothelial cells (HUAEC). Native LDL induces a dose-dependent increase of early growth response gene-1 (egr-1) mRNA expression. The effect is maximal 30 min after addition of LDL to the culture medium. Moreover, native LDL causes an increase in DNA-synthesis and cell proliferation. In addition, the effect of acidic fibroblast growth factor (aFGF) on HUAEC proliferation was enhanced by native LDL.

Calcium

Preproteins of chloroplast envelope inner membrane contain targeting information for receptor-dependent import into fungal mitochondria.

The amino-terminal transit sequences of two preproteins destined for the chloroplast inner envelope membrane show similarities to mitochondrial presequences in the prevalence of positive charges and the potential formation of an amphipathic alpha-helix. We studied if these preproteins could be imported into mitochondria and found a low, yet significant import into isolated plant mitochondria. The plant mitochondria were previously shown not to import precursors of chloroplast stromal or thylakoidal proteins. To analyze the specificity of import into mitochondria we used the established import systems of fungal mitochondria. The envelope preproteins were efficiently imported into Saccharomyces cerevisiae or Neurospora crassa mitochondria. Their import showed the characteristics of specific mitochondrial protein uptake, including a requirement for the main receptor MOM19 (mitochondrial outer membrane protein of 19 kDa) and a membrane potential across the inner membrane, and depended on the presence of the chloroplast transit sequence. We conclude that some chloroplast transit sequences contain sufficient information for specific interaction with mitochondrial import receptors (at least from fungal sources).

Ascomycota

[Headache].

This 46 year old man complained for the first time five years ago about stinging bilateral occipital headache while in prone or horizontal position and disappearing completely in the supine position after a few minutes. Two years ago hypertension with values up to 240/140 mmHg was discovered on a routine examination. For the past six months the patient complained about sudden attacks with headache, hammering pulse, nausea, pallor, sweating and blood pressure values of 200/100 mmHg. A pheochromocytoma measuring 7 x 8 cm was diagnosed on the left side and removed subsequently.

Adrenal Gland Neoplasms

[Thymus carcinoid in multiple endocrine neoplasms type I].

Thrombosis of the left subclavian vein occurred in a 44-year-old man. It was found to be caused by an atypical thymus carcinoid of the anterior mediastinum without carcinoid syndrome. Primary resection was not possible, but it was removed after three cycles of neoadjuvant chemotherapy with doxorubicin, cisplatin, vincristine and cyclophosphamide. Increased concentrations of alkaline phosphatase and parathormone were then noted. Subtotal parathyroidectomy revealed hyperplastic parathyroids. A gastrinoma was suspected from a history of peptic ulcer for many years which had persisted despite a Billroth II gastric resection 10 years ago. Serum gastrin, analysis of gastric secretion and a secretin-stimulating test confirmed the diagnosis. Recurrent episodes of weakness and syncope, in the presence of low blood sugar levels and a positive C-peptide suppression test, were interpreted as due to an insulinoma. There was no evidence of increased hypophyseal or adrenal function. Finally, in the absence of a family history, multiple endocrine neoplasia type 1 (MEN 1) was diagnosed with co-existing primary hyperparathyroidism, gastrinoma, insulinoma and thymus carcinoid. Somatostatin-receptor scintigraphy provided localization of the MEN 1 with enrichment in the thorax and abdomen.

Adult

Evidence for cardiovascular remodeling in a patient with Bartter's syndrome.

In a 56-year-old normotensive white male subject with a 12-year history of hypokalemic alkalosis, hyperreninemia, and aldosteronism, the diagnosis of Bartter's syndrome was established on the basis of an impaired maximal renal diluting capacity and decreased distal fractional chloride absorption [CH2O/(CH2O+CCl)]. Negative urine analysis for diuretics suggested that this renal tubular defect was not secondary to diuretic (ab)use. In this normotensive patient with hyperreninemia and secondary aldosteronism, significant cardiovascular remodeling could be observed. Thus, in spite of normal arterial blood pressure and normal left ventricular systolic function (ejection fraction > 70%), impaired left ventricular diastolic function was observed using pulsed-wave Doppler echocardiography. Moreover, duplex analysis of the common carotid artery revealed significant intima-media hypertrophy with an average intima-media diameter of 0.9 mm (normal < or = 0.6 mm). Also, forearm venous occlusion plethysmography revealed an abnormally high minimal forearm vascular resistance following a 10-min period of forearm ischemia handgrip exercise suggesting remodeling within the peripheral arterioles. Thus, in a patient with Bartter's syndrome and activated neurohormonal systems such as the renin-angiotensin system, cardiac and vascular remodeling can be observed in the absence of hypertension. In analogy to the results of experimental studies showing that angiotensin II and noradrenaline act as growth factors on cardiac and vascular cells, cardiovascular remodeling present in our patient with Bartter's syndrome may be explained by increased activity of angiotensin II and/or noradrenaline.

Arteries

Iron-deficiency anemia as the sole manifestation of celiac disease.

We report on a 40-year-old woman with a 2-year history of iron-deficiency anemia of unknown origin. Repeated endoscopic investigations in the past had revealed no abnormality of the gastrointestinal system on macroscopic examination. Oral iron supplementation was shown to have no effect on serum iron levels and had no influence on the anemia. Upper gastrointestinal endoscopy performed at our hospital confirmed normal macroscopic findings. However, jejunal biopsies revealed subtotal villous atrophy of the mucosa of the small intestine. A strict gluten-free diet led to an increase in serum iron, resolution of the anemia, and restitution of normal mucosal architecture. Thus iron-deficiency anemia may be the lone manifestation of celiac disease.

Adult

Molecular dynamics with weighted time-averaged restraints for a DNA octamer. Dynamic interpretation of nuclear magnetic resonance data.

For conformationally flexible molecules in solution, NMR-derived distance restraints are time-averaged. In contrast to deriving structures from NMR distance constraints via conventional restrained molecular dynamics (rMD), the range of conformational flexibility may be better represented by MD simulations using weighted time-averaged restrains (MD-tar). This approach has been utilized for dynamic structure refinement of the DNA octamer [d(GTATAATG].[d(CATATTAC)] which contains the Pribnow box consensus sequence. An improved set of distance restraints was calculated via complete relaxation matrix analysis utilizing the solution structure of the octamer which was determined previously by rMD as a starting model. MD-tar calculations were performed with the program AMBER4 under various conditions, some including explicit solvent. All trajectories generated via MD-tar exhibited reduced constraint energies and average deviations for the distances compared to standard rMD. Quantitative comparison with experimental data, i.e. two-dimensional NOE intensities and COSY-derived coupling constants yielded a significant improvement for MD-tar simulated structures relative to rMD-derived structures. The conformational envelope of the MD-tar structures is wider than that from rMD and even unrestrained MD. Explicit solvent force-fields tightened the conformational envelope, leading to even better agreement with experimental data. All MD-tar simulations exhibit sugar repuckering for basically all residues, yielding a minor population in the low N-region and one or more S-conformers. For most backbone torsion angles, one or more minor conformers were found, while the major conformations generally coincided with those obtained in standard rMD. Distributions of helical parameters for MD-tar trajectories are rather symmetric but slightly broader than those for rMD. Average values and associated standard deviations are discussed with respect to sequence-dependent variations. All trajectories obtained with an explicit solvent force field exhibited a narrower minor groove compared to in vacuo calculations.

Carbohydrate Conformation

Metropolis Monte Carlo calculations of DNA structure using internal coordinates and NMR distance restraints: an alternative method for generating a high-resolution solution structure.

A new method, a restrained Monte Carlo (rMC) calculation, is demonstrated for generating high-resolution structures of DNA oligonucleotides in solution from interproton distance restraints and bounds derived from complete relaxation matrix analysis of two-dimensional nuclear Overhauser effect (NOE) spectral peak intensities. As in the case of restrained molecular dynamics (rMD) refinement of structures, the experimental distance restraints and bounds are incorporated as a pseudo-energy term (or penalty function) into the mathematical expression for the molecular energy. However, the use of generalized helical parameters, rather than Cartesian coordinates, to define DNA conformation increases efficiency by decreasing by an order of magnitude the number of parameters needed to describe a conformation and by simplifying the potential energy profile. The Metropolis Monte Carlo method is employed to simulate an annealing process. The rMC method was applied to experimental 2D NOE data from the octamer duplex d(GTATAATG).d(CATTATAC). Using starting structures from different locations in conformational space (e.g. A-DNA and B-DNA), the rMC calculations readily converged, with a root-mean-square deviation (RMSD) of < 0.3 A between structures generated using different protocols and starting structures. Theoretical 2D NOE peak intensities were calculated for the rMC-generated structures using the complete relaxation matrix program CORMA, enabling a comparison with experimental intensities via residual indices. Simulation of the vicinal proton coupling constants was carried out for the structures generated, enabling a comparison with the experimental deoxyribose ring coupling constants, which were not utilized in the structure determination in the case of the rMC simulations. Agreement with experimental 2D NOE and scalar coupling data was good in all cases. The rMC structures are quite similar to that refined by a traditional restrained MD approach (RMSD < 0.5 A) despite the different force fields used and despite the fact that MD refinement was conducted with additional restraints imposed on the endocyclic torsion angles of deoxyriboses. The computational time required for the rMC and rMD calculations is about the same. A comparison of structural parameters is made and some limitations of both methods are discussed with regard to the average nature of the experimental restraints used in the refinement.

Base Composition

Solution structure of a DNA octamer containing the Pribnow box via restrained molecular dynamics simulation with distance and torsion angle constraints derived from two-dimensional nuclear magnetic resonance spectral fitting.

The DNA octamer [d(GTATAATG].[(CATATTAC)], containing the prokaryotic upstream consensus recognition sequence, has been examined via proton homonuclear two-dimensional nuclear Overhauser effect (2D NOE) and double-quantum-filtered correlation (2QF-COSY) spectra. All proton resonances, except those of H5' and H5" protons, were assigned. A temperature dependence study of one-dimensional nuclear magnetic resonance (NMR) spectra, rotating frame 2D NOE spectroscopy (ROESY), and T1 rho measurements revealed an exchange process that apparently is global in scope. Work at lower temperatures enabled a determination of structural constraints that could be employed in determination of a time-averaged structure. Simulations of the 2QF-COSY cross-peaks were compared with experimental data, establishing scalar coupling constant ranges of the individual sugar ring protons and hence pucker parameters for individual deoxyribose rings. The rings exhibit a dynamic equilibrium of N and S-type conformers with 80 to 100% populations of the latter. A program for iterative complete relaxation matrix analysis of 2D NOE spectral intensities, MARDIGRAS, was employed to give interproton distances for each mixing time. According to the accuracy of the distance determination, upper and lower distance bounds were chosen. The distance bounds define the size of a flat-well potential function term, incorporated into the AMBER force-field, which was employed for restrained molecular dynamics calculations. Torsion angle constraints in the form of a flat-well potential were also constructed from the analysis of the sugar pucker data. Several restrained molecular dynamics runs of 25 picoseconds were performed, utilizing 184 experimental distance constraints and 80 torsion angle constraints; three different starting structures were used: energy minimized A-DNA, B-DNA, and wrinkled D-DNA, another member of the B-DNA family. Convergence to similar structures obtained with root-mean-square deviations between resulting structures of 0.37 to 0.92 A for the central hexamer of the octamer. The average structure from the nine different molecular dynamics runs was subjected to final restrained energy minimization. The resulting final structure was in good agreement with the structures derived from different molecular dynamics runs and exhibited a substantial improvement in the 2D NOE sixth-root residual index in comparison with the starting structures. An approximation of the structure in the terminal base-pairs, which displayed experimental evidence of fraying, was made by maintaining the structure of the inner four base-pairs and performing molecular dynamics simulations with the experimental structural constraints observed for the termini.(ABSTRACT TRUNCATED AT 400 WORDS)

Base Sequence

Solution structure of [d(GTATATAC)]2 via restrained molecular dynamics simulations with nuclear magnetic resonance constraints derived from relaxation matrix analysis of two-dimensional nuclear Overhauser effect experiments.

Two-dimensional nuclear Overhauser effect (2D NOE) spectra have been used as the experimental basis for determining the solution structure of the duplex [d(GTATATAC)]2 employing restrained molecular dynamics (rMD) simulations. The MARDIGRAS algorithm has been employed to construct a set of 233 interproton distance constraints via iterative complete relaxation matrix analysis utilizing the peak intensities from the 2D NOE spectra obtained for different mixing times and model structures. The upper and lower bounds for each of the constraints, defining size of a flat-well potential function term used in the rMD simulations, were conservatively chosen as the largest or smallest value calculated by MARDIGRAS. Three different starting models were utilized in several rMD calculations: energy-minimized A-DNA, B-DNA, and a structure containing wrinkled D-DNA in the interior. Considerable effort was made to define the appropriate force constants to be employed with the NOE terms in the AMBER force field, using as criteria the average constraints deviation, the constraints violation energy and the total energy. Of the 233 constraints, one was generated indirectly, but proved to be crucial in defining the structure: the cross-strand A5-H2 A5-H2 distance. As those two protons resonate isochronously for the self-complementary duplex, the distance cannot be determined directly. However, the general pattern of 2D NOE peak intensities, spin-lattice relaxation time (T1) values, and 31P nuclear magnetic resonance spectra lead to use of the A3-H2 A7-H2 distance for A5-H2 A5-H2 as well. Five rMD runs, with different random number seeds, were made for each of the three starting structures with the full distance constraint set. The average structure from all 15 runs and the five-structure averages from each starting structure were all quite similar. Two rMD runs for each starting structure were made with the A5-H2 A5-H2 constraint missing. The average of these six rMD runs revealed differences in structure, compared to that with the full set of constraints, primarily for the middle two base-pairs involving the missing cross-strand constraint but global deviations also were found. Conformational analysis of the resulting structures revealed that the inner four to six base-pairs differed in structure from the termini. Furthermore, an alternating structure was suggested with features alternating for the A-T and T-A steps.

Algorithms

Deoxyribose conformation in [d(GTATATAC)]2: evaluation of sugar pucker by simulation of double-quantum-filtered COSY cross-peaks.

Exchangeable and nonexchangeable proton and phosphorus resonances (11.75 T) of [d(GTATATAC)]2 in aqueous solution were assigned by using proton two-dimensional nuclear Overhauser effect (2D NOE) spectra, homonuclear proton double-quantum-filtered COSY (2QF-COSY) spectra, proton spin-lattice relaxation time measurements, and 31P1H heteronuclear shift correlation spectra. Due to the large line widths, it was not possible to directly extract vicinal proton coupling constant values from any spectrum including ECOSY or 2QF-COSY. However, comparison of quantitative 2QF-COSY spectral simulations with experimental spectra enabled elucidation of coupling constants. The scope and limitations of this approach were explored by computation and by use of experimental data. It was found that proton line widths exhibit some variability from one residue to the next as well as from one proton to the next within a residue and the exact line width is critical to accurate evaluation of coupling constants. Experimental 2QF-COSY spectra were not consistent with a rigid deoxyribose conformation for any of the nucleotide residues. A classical two-state model, with rapid jumps between C2'-endo (pseudorotation angle P = 162 degrees) and C3'-endo (P = 9 degrees) conformations, was able to account for the spectral characteristics of terminal residue sugars: 60% C2'-endo and 40% C3'-endo. However, the 2QF-COSY cross-peaks from the -TATATA- core could be simulated only if the classical two-state model was altered such that the dominant conformer had a pseudorotation angle at 144 degrees instead of 162 degrees. In this case, the major conformer amounted to 80-85%. Alternatively, the spectral data were consistent with a three-state model in which C2'-endo and C3'-endo conformations had the largest and smallest populations, respectively, but a third conformer corresponding to C1'-exo (P = 126 degrees) was present, consistent with recent molecular dynamics calculations. This alternative yielded populations of 50% (P = 162 degrees), 35% (P = 126 degrees), and 15% (P = 9 degrees) for the -TATATA- sugars. The spectral results indicate little variation of sugar pucker between T and A. Small differences in cross-peak component intensities and characteristic spectral distortions, however, do suggest some unquantified variation. 31P1H heteronuclear chemical shift correlation spectra manifested alternating chemical shifts and coupling constants suggestive of phosphodiester backbone conformational differences between TA and AT junctions.

Base Sequence

The mitochondrial nad5 gene of sugar beet (Beta vulgaris) encoding a subunit of the respiratory NADH dehydrogenase.

We have isolated the nad5 gene from the N-cytoplasm of Beta vulgaris, by heterologous hybridization with a nad5 probe from Chlamydomonas reinhardtii, and have determined the DNA sequence. The gene has a length of 3082 bp and consists of three exons and two introns, 459, 1269, 270, 848 and 357 bp in length, respectively. It has a similarity of 95.1% at the DNA level to the nad5 gene of Oenothera and the two respective proteins show an overall level of amino acid identity of 88.7%. Compared to Oenothera the reading frame of the first exon is extended in the 5' direction and in the third exon there is a frameshift shortening the reading frame by 96 bp and changing the last 48 codons. The nad5 gene is a single copy gene in the N- and S-cytoplasm of Beta vulgaris and the organisation of the gene shows no apparent differences in the two cytoplasms. The gene is actively expressed; three major transcripts are detectable. The transcript patterns have been compared between the two cytoplasms and between different plant tissues.

Amino Acid Sequence