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M Lutz

Publications and source records attributed to M Lutz.

At least 73 records · Page 4Linked to original sources

Interaction between SecA and SecYEG in micellar solution and formation of the membrane-inserted state.

Preprotein translocation in Escherichia coli is mediated by the translocase with SecA as peripheral ATPase and SecY, SecE, and SecG as membrane domain. To facilitate large-scale purification of the SecYEG heterotrimer, SecY was fused at its amino terminus with a hexahistidine tag and co-overexpressed with SecE and SecG. The presence of the His tag allowed purification of homogeneously pure SecYEG complex by a single anion-exchange chromatographic step starting from octyl glucoside-solubilized inner membranes. Endogenous levels of SecD and SecF copurified with the SecYEG protein. Purified SecYEG complex retained a nativelike, alpha-helical conformation in octyl glucoside and in micellar solution binds SecA with high affinity. In the presence of the nonhydrolyzable nucleotide analogue adenosine 5'-(beta, gamma-imidotriphosphate), octyl glucoside-solubilized SecYEG is nearly as effective as the reconstituted enzyme in inducing the formation of a proteinase K-protected 30 kDa fragment of 125I-labeled SecA, while SecYEG is proteolyzed to fragments smaller than 6 kDa. These data demonstrate that the 30-kDa SecA fragment is not protected by the lipid phase nor by SecYEG but rather indicate that it represents a SecYEG- and nucleotide-induced stable conformational state of a SecA domain.

Adenosine Triphosphatases↗

[Acute compartment syndrome of the lower leg after ankle joint sprain. A case report].

In the field of traumatology, compartment syndromes of the lower extremity are often seen after fractures and direct injuries, or after ischaemia. Other causes include over-exertion and non-traumatic causes such as acute rhabdomyolysis, drug-induced myositis and eosinophilic myositis. This paper describes the clinical and MR course of a compartment syndrome following an ankle sprain.

Acute Disease↗

[Post-traumatic ischemia of the talus. Is talus necrosis unavoidable?].

50 patients following talar fractures type Marti 2, 3 and 4 during the years 1972-1993, could be analysed retrospectively. Evaluated factors effecting posttraumatic avascular necrosis of the body of the talus are: type of fracture, age of the patient, additional fracture of the medial malleolus and time of non weight bearing. The Hawkins sign is reliable to show vitality in the body of the talus. We could see vascular impairment in 51% of all Marti 3 fractures and in 100% of all Marti 4 fractures. Patients with a concomitant fracture of the inner malleolus showed positive influence on the blood supply of the talus. In this case the ligamentum deltoideum and the ramus deltoideus of the arteria tibialis posterior remained intact. In addition to this the prognosis was better in young patients. A long period of non weight bearing could not preserve vitality of the talus. Necrosis of the talus did only appear in 34% of the Marti 3 and in 51% of the Marti 4 fractures. This means that early anatomic reconstruction of the talus is necessary. Primary arthrodesis of the ankle joint and talectomie are not up to date.

Adolescent↗

Isolation of a bacterial strain with the ability to utilize the sulfonated azo compound 4-carboxy-4'-sulfoazobenzene as the sole source of carbon and energy.

A bacterial strain (strain S5) which grows aerobically with the sulfonated azo compound 4-carboxy-4'-sulfoazobenzene as the sole source of carbon and energy was isolated. This strain was obtained by continuous adaptation of "Hydrogenophaga palleronii" S1, which has the ability to grow aerobically with 4-aminobenzenesulfonate. Strain S5 probably cleaves 4-carboxy-4'-sulfoazobenzene reductively under aerobic conditions to 4-aminobenzoate and 4-aminobenzene-sulfonate, which are mineralized by previously established degradation pathways.

Azo Compounds↗

Effect of dietary oils, cholesterol and antioxidant vitamin supplementation on liver microsomal fluidity and xenobiotic-metabolizing enzymes in rats.

This study was undertaken to compare the effects of four oils: corn (C), olive (O), hazelnut (H) or fish (F), and the intake of two supplements: cholesterol, 1% (Ch) or dl-alpha-tocopherol acetate, 500 mg/kg, and beta-carotene, 30 mg/kg (V), on liver microsomal fluidity, cyt P450 content and aniline hydroxylase (AH), aminopyrine-N-dimethylase (AND) and UDP-glucuronyltransferase (UDP-GT) activities. Male Sprague-Dawley rats (n = 6/group) were fed semipurified diets containing 15% oil, without or with Ch or V, for 20 days. Dietary intake and feed efficiency were lower in rats fed F. Relative liver weight was higher in animals fed F, similar in O and H, and lower in the group fed C. The intake of V increased feed intake in C+V group and decreased the relative liver weight of F+V group, which also decreased with the intake of F+Ch. Ch intake increased the relative liver weight in all groups consuming vegetable oils. Cyt P450 content was higher in rats fed F. Decreased cyt P450 content was observed in C+Ch and F+Ch groups, while it augmented in H+Ch group. Mixture V increased cyt P450 in rats fed C+V, F+V and O+V. The highest membrane fluidity was observed in rats fed F. Fluidity was also higher in group H versus O or C. The intake of Ch decreased microsomal fluidity in all groups, while V induced an increase in microsomal fluidity in group O+V. Rats fed F exhibited higher enzyme activities. AND activity increased with V only in rats fed H+V, while AH activity increased with V intake in groups F+V and O+V. In the C+V group, fluidity was not affected by V, while the cyt P450 content and UDP-GT activity increased. The O+V group exhibited lower UDP-GT activity and higher fluidity and cyt P450 content. The activity of AH decreased in groups F+Ch and C+Ch. UDP-GT activity was higher in rats fed F. It diminished after the intake of Ch in H+Ch and F+Ch. These results indicate that although AH and AND act in the same microsomal metabolic pathway, their localization into the membrane may be determinant of their activity and the response to dietary lipids. It is shown that F intake exerts the most significant effects upon liver microsomal properties, e.g. higher fluidity, cyt P450 content and enzymatic activities, an effect that prevails over the intake of the supplements tested.

Animals↗

[Diet as a determinant of central nervous system development: role of essential fatty acids].

Nervous system is second to adipose tissue in containing the highest lipid concentration. Membrane phospholipids possess a high content of long chain polyunsaturated fatty acids (LCPUFA) of the n-3 and n-6 families, derived from the corresponding essential fatty acids. Docosahexaenoic acid (22:6n-3) is found in the highest concentrations in the gray matter and the photoreceptors of the retina. n-3 LCPUFA deficiency in infants, mainly if born preterm, modifies neural functions causing learning disabilities and visual function abnormalities. The adequate lipid nutrition of the mother before and during pregnancy and in breast feeding determine the lipid transfer of fatty acids to the fetus and infant, respectively. LCPUFA are conditionally essential in preterm infants, born with lower lipid depots. The formulation of infant formulas, mainly for preterm babies, should include adequate proportions of n-3 and n-6 LCPUFA.

Brain↗

Assembly of a [2Fe-2S]2+ cluster in a molecular variant of Clostridium pasteurianum rubredoxin.

The rubredoxin from Clostridium pasteurianum contains a single iron atom bound to the polypeptide chain by cysteines 6, 9, 39, and 42. The C42A variant of this protein has been prepared by site-directed mutagenesis and heterologous expression of the gene in Escherichia coli. The mutated protein was found to contain an unexpected chromophore that has been characterized by a variety of techniques. UV-visible absorption and resonance Raman spectra were strongly reminiscent of those of [2Fe-2S] proteins. Mössbauer spectra of the oxidized chromophore isolated in oxygen-free conditions indicated low-temperature diamagnetism resulting from antiferromagnetically coupled high-spin ferric ions. Analysis of X-ray absorption fine structure spectra yielded an Fe-Fe distance of 2.68 A. Colorimetric assays of iron and inorganic sulfide showed that the two elements are present in a 1:1 ratio. Electrospray-ionization mass spectra displayed a major component at M = 6190 Da, i.e. the molecular mass of the C42A apoprotein plus two atomic masses of iron and two atomic masses of sulfur. Taken together, these data show that a mere point mutation allows the stabilization of a binuclear [2Fe-2S] cluster in a protein that normally accommodates a mononuclear Fe(Scys)4 site. Assembly of a [2Fe-2S] cluster may occur because rubredoxin assumes a similar fold around its metal center as the [2Fe-2S] Rieske protein. Alternatively, a more extensive structural rearrangement of the polypeptide chain of the C42A rubredoxin variant may be considered as well.

Binding Sites↗

Temperature-dependent behavior of bacteriochlorophyll and bacteriopheophytin in the photosynthetic reaction center from Rhodobacter sphaeroides.

We have reexamined the temperature dependence of resonance Raman (RR) spectra of the bacteriochlorin cofactors bound to reaction centers from Rhodobacter sphaeroides. Three types of resonant excitations were performed, namely, Soret band, bacteriopheophytin Qx-band, and near-infrared, Qy-band (pre)resonances. Sample temperature was varied from 300 to 10 K. In both Soret-resonant and Qy-preresonant Raman spectra, the ca. 1610-cm(-1) band corresponding to a bacteriochlorophyll CaCm methine bridge stretching mode is observed to increase in frequency by 4-6 cm(-1) as temperature is decreased from 300 to 15 K. This upshift is interpreted as arising from a change in conformation of the bacteriochlorophyll macrocycles. It may be nonspecific to the protein-bound cofactors, since a similar 4-cm(-1) upshift was observed in the same temperature range for BChl a in solution. Qx-resonant Raman spectra of either of the two bacteriopheophytin (BPhe) cofactors were obtained selectively using excitations at 537 and 546 nm. No significant frequency shift was observed for the CaCm stretching mode of BPheL between 200 and 15 K. We conclude, at variance with a previous report, that the macrocycle of the BPheL primary electron acceptor does not undergo any significant conformational change in the 200-15 K temperature range. Qy-preresonant excitation of RCs at 1064 nm provided selective Raman information on the primary electron donor (P primary). The stretching frequencies of the two conjugated keto and acetyl carbonyl groups of the M-branch primary donor BChl cofactor (P(M)) did not significantly change between 300 and 10 K. In contrast the keto carbonyl stretching frequency of cofactor P(L) was observed to upshift by 5 cm(-1), while its acetyl carbonyl frequency downshifted by 2 cm(-1). The latter shift indicated that the strong H-bond between the acetyl group of P(L) and His L168 may have slightly strengthened at 10 K. Excitation at 1064 nm of chemically oxidized RCs selectively provided RR spectra of the primary donor in its radical P.+ state. These spectra can be interpreted as a decrease of the localization of the positive charge on P(L) from 78% to 63% when the temperature decreased from 300 to 10 K resulting in a more electronically symmetric dimer. Possible origins of the temperature dependence of the positive charge delocalization in P.+ are discussed.

Bacteriochlorophylls↗

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Cardiopulmonary Resuscitation↗

[Wound margin necroses after open calcaneal reconstruction. Anatomical considerations of surgical approach].

Skin and soft tissue necrosis of the heel are the main problems following open reposition and fixation of calcaneal fractures. In order to demonstrate how the classic approaches harm the supplying vessels, the classic medial, lateral, enlarged lateral and bilateral approaches have been simulated in ten lower limbs prepared by arterial latex injection. Bases on anatomic literature and on these findings, we have proposed two modified approaches that minimize damage to the vessels of the adjacent soft tissues yet allow exact reposition of the fractures.

Arteries↗

Negative protein 1, which is required for function of the chicken lysozyme gene silencer in conjunction with hormone receptors, is identical to the multivalent zinc finger repressor CTCF.

The transcriptional repressor negative protein 1 (NeP1) binds specifically to the F1 element of the chicken lysozyme gene silencer and mediates synergistic repression by v-ERBA, thyroid hormone receptor, or retinoic acid receptor. Another protein, CCCTC-binding factor (CTCF), specifically binds to 50-bp-long sequences that contain repetitive CCCTC elements in the vicinity of vertebrate c-myc genes. Previously cloned chicken, mouse, and human CTCF cDNAs encode a highly conserved 11-Zn-finger protein. Here, NeP1 was purified and DNA bases critical for NeP1-F1 interaction were determined. NeP1 is found to bind a 50-bp stretch of nucleotides without any obvious sequence similarity to known CTCF binding sequences. Despite this remarkable difference, these two proteins are identical. They have the same molecular weight, and NeP1 contains peptide sequences which are identical to sequences in CTCF. Moreover, NeP1 and CTCF specifically recognize each other's binding DNA sequence and induce identical conformational alterations in the F1 DNA. Therefore, we propose to replace the name NeP1 with CTCF. To analyze the puzzling sequence divergence in CTCF binding sites, we studied the DNA binding of 12 CTCF deletions with serially truncated Zn fingers. While fingers 4 to 11 are indispensable for CTCF binding to the human c-myc P2 promoter site A, a completely different combination of fingers, namely, 1 to 8 or 5 to 11, was sufficient to bind the lysozyme silencer site F1. Thus, CTCF is a true multivalent factor with multiple repressive functions and multiple sequence specificities.

Animals↗

Spectroscopic and voltammetric characterisation of the bacterioferritin-associated ferredoxin of Escherichia coli.

The bacterioferritin-associated ferredoxin (Bfd) of Escherichia coli is a 64-residue polypeptide encoded by the bfd gene located upstream of the gene (bfr) encoding the iron-storage haemoprotein, bacterioferritin. The Bfd sequence resembles those of the approximately 60-residue domains found in NifU proteins (required for metallocluster assembly), nitrite reductases, and Klebsiella pneumoniae nitrate reductase. These related-domains contain four well-conserved cysteine residues, which are thought to function as ligands to a [2Fe-2S] cluster. The Bfd protein was over-produced, purified, and characterised. Bfd was found to be a positively-charged monomer containing two iron atoms and two labile sulphides. Ultraviolet-visible, EPR, variable-temperature magnetic-circular dichroism and resonance Raman spectroscopies, together with cyclic voltogram measurements, revealed the presence of a [2Fe-2S]2+,+ centre (E1/2 = -254 mV) having remarkably similar properties to the Fe-S cluster of NifU. Bfd may thus be a 2Fe ferredoxin participating either in release/delivery of iron from/to bacterioferritin (or other iron complexes), or in iron-dependent regulation of bfr expression.

Amino Acid Sequence↗

[Perilunate dislocation and dislocation fractures--results of surgical management].

We report 22 patients who sustained a perilunate dislocation (PD) with or without a fracture of the scaphoid. The carpal ligaments were explored and reattached in all cases. The fractured scaphoid in perilunate fracture dislocations (PFD) was stabilised by a Herbert screw in 13 cases and in one case with a Matti-Russe bone graft. After an average of 5 years the clinical score of Green and O'Brien showed good results for both PD and PFD. Patients with PFD had less pain and better grip than the patients with PD. The sagittal range of motion (average between 70 degrees and 99 degrees) and the subjective limitation in sports and work were equal for PD and PFD. The only open injury (PD) had the worst clinical result. All patients with PD showed a carpal instability dissociative of the proximal row (CID) and an arthrosis of the radiocarpal joint. In the patients with PFD a CID could be seen in 78% and an arthrosis in 93%. A carpal collapse occurred in 75% of cases after PD and in 29% after PFD. In 57% of cases the PFD was accompanied by a disruption of the SL ligament. The anatomical reconstruction of the scaphoid is essential for good carpal alignment. The stable fixation of bony avulsions showed good results. A CID could not be avoided in any of our patients with PD.

Adolescent↗

[Functional treatment of the interphalangeal joints in palmar ligament rupture].

Palmar plate injuries of the interphalangeal joints are very common, yet they require careful treatment until full functional recovery is attained. This paper presents the results of follow-up examinations of 76 patients who underwent early functional treatment with a special dynamic splint. All had sustained an injury of the palmar plate of the PIP-joint (Type 1 or 2 according to Hintringer and Leixnering). After a velcro strip is released, the splint enables daily active exercise of the PIP joint with the joint being protected laterally and protected against hyperextension. This splint was worn for four weeks. After removal of the splint, 71% of all patients indicated that they did not have any problems, while 26% achieved the same mobility as the unaffected joint of the other hand after two more weeks of dynamic splinting. In only one case motion was inhibited for several further weeks.

Exercise Therapy↗

[Rupture or stress injury of the flexor tendon pulleys? Early diagnosis with MRI].

Eighteen extreme rock climbers underwent primary clinical and MRI examination because of recent closed injuries to the flexor tendon pulleys. Follow-ups were after approximately 36 months on the average. The recent injuries, which are difficult to diagnose clinically, could be ascertained by means of MRI: This type of injury seems to occur more frequently than is currently diagnosed. Eight patients with overuse syndrome and eight patients with a short pulley rupture were treated conservatively. In two patients with long pulley rupture, the pulleys were reconstructed by means of a tendon graft using Kleinert's technique. Clinically manifest bowstringing or flexion contracture after treatment could not be ascertained on any one of the patients. All except for one showed an almost normal range of motion. By means of control MRI it was, however, possible to ascertain minor bowstringing and scars in most patients. Clinically, this partial instability manifested by lasting swelling. What was most disturbing, however, was reduced strength and the subjective feeling of insecurity during climbing.

Adolescent↗

Characterization of a mutated rubredoxin with a cysteine ligand of the iron replaced by serine.

The active site of rubredoxins consists of a single iron tetrahedrally coordinated to four cysteinate sulfurs. One of the iron ligands, cysteine 42, has been mutated into serine in Clostridium pasteurianum rubredoxin. This mutation resulted in a shift to higher energy of the 320-800 nm region of the UV-visible absorption spectrum. Resonance Raman spectra showed that the nu 1 breathing mode of the iron chromophore was upshifted as a result of the C42S mutation. The spectral pattern, however, was not largely disturbed by the mutation. The EPR spectra of both the wild type and the C42S mutated protein displayed the characteristic features, at g = 4.3 and g = 9.5, of the "3/2" and "1/2" Kramers' doublets, respectively, of a S = 5/2 multiplet. These combined data afford strong evidence that in the C42S mutated rubredoxin serine has replaced cysteine 42 as a ligand of the iron, while maintaining the tetrahedral coordination of the metal. The most spectacular effect of the C42S mutation was a ca. 200 mV downshift of the redox potential of rubredoxin.

Base Sequence↗