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Biomedical subjects

B Morgenstern

Publications and source records attributed to B Morgenstern.

At least 19 recordsLinked to original sources

Treatment of SARS with human interferons.

Effective antiviral agents are needed to treat severe acute respiratory syndrome-associated coronavirus (SARS-CoV) infection. We assessed the antiviral potential of recombinant interferons against two clinical isolates of SARS-CoV--FFM-1, from Frankfurt patients, and Hong Kong--replicated in Vero and Caco2 cells. Interferon beta was five to ten times more effective in Caco2 cells. Interferon alpha effectively inhibited SARS-CoV replication, but with a selectivity index 50-90 times lower than that for interferon beta. Interferon gamma was slightly better than interferon alpha in Vero cell cultures, but was completely ineffective in Caco2 cell cultures. Interferon beta could be useful alone or in combination with other antiviral drugs for the treatment of SARS.

Antiviral Agents↗

Glycyrrhizin, an active component of liquorice roots, and replication of SARS-associated coronavirus.

The outbreak of SARS warrants the search for antiviral compounds to treat the disease. At present, no specific treatment has been identified for SARS-associated coronavirus infection. We assessed the antiviral potential of ribavirin, 6-azauridine, pyrazofurin, mycophenolic acid, and glycyrrhizin against two clinical isolates of coronavirus (FFM-1 and FFM-2) from patients with SARS admitted to the clinical centre of Frankfurt University, Germany. Of all the compounds, glycyrrhizin was the most active in inhibiting replication of the SARS-associated virus. Our findings suggest that glycyrrhizin should be assessed for treatment of SARS.

Animals↗

MIPS: a database for genomes and protein sequences.

The Munich Information Center for Protein Sequences (MIPS-GSF, Neuherberg, Germany) continues to provide genome-related information in a systematic way. MIPS supports both national and European sequencing and functional analysis projects, develops and maintains automatically generated and manually annotated genome-specific databases, develops systematic classification schemes for the functional annotation of protein sequences, and provides tools for the comprehensive analysis of protein sequences. This report updates the information on the yeast genome (CYGD), the Neurospora crassa genome (MNCDB), the databases for the comprehensive set of genomes (PEDANT genomes), the database of annotated human EST clusters (HIB), the database of complete cDNAs from the DHGP (German Human Genome Project), as well as the project specific databases for the GABI (Genome Analysis in Plants) and HNB (Helmholtz-Netzwerk Bioinformatik) networks. The Arabidospsis thaliana database (MATDB), the database of mitochondrial proteins (MITOP) and our contribution to the PIR International Protein Sequence Database have been described elsewhere [Schoof et al. (2002) Nucleic Acids Res., 30, 91-93; Scharfe et al. (2000) Nucleic Acids Res., 28, 155-158; Barker et al. (2001) Nucleic Acids Res., 29, 29-32]. All databases described, the protein analysis tools provided and the detailed descriptions of our projects can be accessed through the MIPS World Wide Web server (http://mips.gsf.de).

Amino Acid Sequence↗

The HIB database of annotated UniGene clusters.

SUMMARY: The HumanInfoBase (HIB) is a database of putative human gene transcripts. UniGene clusters are assembled, and the resulting consensus sequences are submitted to the PEDANT software system (Frishman,D., Albermann,K., Hani,J., Heumann,K., Metanomski,A., Zollner,A. and Mewes,H.-W., 2001, Bioinformatics, 17, 44--57) for fully automatic sequence analysis and annotation. Predicted transcripts are classified using a variety of functional and structural categories, and hyperlinks to various databases are provided for additional information. A WWW-based graphical user interface represents the assembly process as well as functionally important sites in the putative transcripts.

Data Collection↗

Impact of total body water errors on Kt/V estimates in children on peritoneal dialysis.

Determining Kt/V in peritoneal dialysis (PD) requires estimation of total body water (TBW). The Dialysis Outcomes Quality Initiative (DOQI) guidelines recommend use of the Mellits and Cheek (MC) formulas for the estimation of TBW in children. However, the MC formulas were developed from healthy children and may not apply to children on PD. Re-evaluating the MC data with additional, recent data from healthy infants has led to the development of new formulas. In addition, and as part of a prospective study of children initiating PD, the Pediatric Peritoneal Dialysis Study Consortium (PPDSC) has directly measured TBW using H2[18O]. To assess the impact of various TBW estimates, KPDt/V values prospectively collected in 24 children were calculated using H2[18O]-measured TBW (O18), MC-derived TBW (MCD), and new-formula TBW (NEW). The mean weekly KPDt/V by O18 was 2.2; by MCD, it was 2.0; and by NEW, it was 2.0. The results derived using the O18 method varied from both the MCD and the NEW results (p < 0.001). The mean deviation from the measured KPDt/V using O18 was 9.5% (maximum: 16%) using the MCD estimate and 7.8% (maximum: 18%) using the NEW formulas. Determinations of KPDt/V are significantly affected by the method of estimating TBW. The PPDSC formulas for children on PD based on the use of H2[18O] offer the most accurate means of calculating TBW and should replace formulas derived from healthy children. The use of Kt/V itself as a marker of adequacy in children will be validated only in prospective studies.

Adolescent↗

A space-efficient algorithm for aligning large genomic sequences.

SUMMARY: In the segment-by-segment approach to sequence alignment, pairwise and multiple alignments are generated by comparing gap-free segments of the sequences under study. This method is particularly efficient in detecting local homologies, and it has been used to identify functional regions in large genomic sequences. Herein, an algorithm is outlined that calculates optimal pairwise segment-by-segment alignments in essentially linear space. AVAILABILTIY: The program is available at the Bielefeld Bioinformatics Server (BiBiServ) at http://bibiserv.techfak. uni-bielefeld.de/dialign/

Algorithms↗

Renal function following combination chemotherapy with ifosfamide and cisplatin in patients with osteogenic sarcoma.

BACKGROUND: Ifosfamide and cisplatin are active agents that are currently used in the treatment of osteosarcoma. Nephrotoxicity has been reported following their use in combination and alone. This study evaluates renal function in children and adolescents (median age 16 years) at least 3 months following completion of a chemotherapy regimen which included 54 g/m2 ifosfamide, 360 mg/m2 cisplatin, doxorubicin, and high-dose methotrexate. PROCEDURE: Mean glomerular filtration rate (GFR) was determined by inulin or iothalamate clearance; proximal tubular function was evaluated by measuring fractional excretion of glucose (FEglu), tubular maximum phosphate reabsorption per GFR (TMP/GFR), FE of urate, and 24-hour amino acid excretion. Distal tubular function was evaluated by 24-hour urinary calcium, FE of magnesium, and urinary osmolality after water deprivation. Twenty-four-hour urinary protein excretion was measured. RESULTS: The mean GFR was 97 ml/min/1.73 m2. Although 10 of 24 patients had GFRs lower than normal, the lowest value was only 22% below the lower limit of normal and would not account for any clinical compromise. Proximal tubular function evaluation revealed normal FEglu, normal mean TMP/GFR values, and high FE of urate (1 5.7%). Two of twenty-four patients were shown to have mild generalized aminoaciduria. Distal tubular function evaluation showed normal 24-hour urinary calcium levels (mean 3.4 mg/kg) and FE of magnesium as well as normal urinary osmolality. Twenty-four-hour urinary protein excretion was normal in all patients. CONCLUSIONS: The lack of clinically significant renal abnormalities observed in patients who received combination chemotherapy with ifosfamide and cisplatin for osteosarcoma is encouraging for future osteosarcoma protocol development.

Adolescent↗

An exact solution for the segment-to-segment multiple sequence alignment problem.

MOTIVATION: In molecular biology, sequence alignment is a crucial tool in studying the structure and function of molecules, as well as the evolution of species. In the segment-to-segment variation of the multiple alignment problem, the input can be seen as a set of non-gapped segment pairs (diagonals). Given a weight function that assigns a weight score to every possible diagonal, the goal is to choose a consistent set of diagonals of maximum weight. We show that the segment-to-segment multiple alignment problem is equivalent to a novel formulation of the Maximum Trace problem: the Generalized Maximum Trace (GMT) problem. Solving this problem to optimality, therefore, may improve upon the previous greedy strategies that are used for solving the segment-to-segment multiple sequence alignment problem. We show that the GMT can be stated in terms of an integer linear program and then solve the integer linear program using methods from polyhedral combinatorics. This leads to a branch-and-cut algorithm for segment-to-segment multiple sequence alignment. RESULTS: We report on our first computational experiences with this novel method and show that the program is able to find optimal solutions for real-world test examples.

Algorithms↗

DIALIGN 2: improvement of the segment-to-segment approach to multiple sequence alignment.

MOTIVATION: The performance and time complexity of an improved version of the segment-to-segment approach to multiple sequence alignment is discussed. In this approach, alignments are composed from gap-free segment pairs, and the score of an alignment is defined as the sum of so-called weights of these segment pairs. RESULTS: A modification of the weight function used in the original version of the alignment program DIALIGN has two important advantages: it can be applied to both globally and locally related sequence sets, and the running time of the program is considerably improved. The time complexity of the algorithm is discussed theoretically, and the program running time is reported for various test examples. AVAILABILITY: The program is available on-line at the Bielefeld University Bioinformatics Server (BiBiServ) http://bibiserv.TechFak.Uni-Bielefeld.DE/dial ign/

Algorithms↗

Evolution of bHLH transcription factors: modular evolution by domain shuffling?

Multidomain proteins usually contain several conserved and apparently independently evolved domains. As a result, classifications based on only a single small domain may obscure the true evolutionary relationships of the proteins. The current classification of basic helix-loop-helix (bHLH) domain-containing proteins is based on the conserved bHLH domain alone. Herein, we explore whether sequence homology and, therefore, evolutionary relationships can be detected among the flanking or non-bHLH components of the amino acid sequences of 122 bHLH proteins. These 122 proteins were the same proteins previously used to construct the existing classification of the bHLH-domain-containing proteins. Several possible scenarios are examined in order to explain the observed patterns of sequence divergence, including (1) monophyly, (2) convergent evolution, (3) addition of functional components to the bHLH domain, and (4) modular evolution with domain shuffling. Drawing on several lines of evidence, we suggest that modular evolution by domain shuffling may have played an important role in the evolution of this large group of transcriptional regulators.

DNA-Binding Proteins↗

Report of the American Society of Nephrology meetings.

PURPOSE: We summarize presentations on topics of interest to the pediatric urologist from the annual meeting of the American Society of Nephrology, November 1996. MATERIALS AND METHODS: We reviewed all abstracts submitted for presentation and subsequently published in abstract form. Only those abstracts containing information pertinent to the field of pediatric urology were summarized for this report. RESULTS: A total of 24 abstracts addressing a variety of topics were summarized. Obstructive uropathy was represented by the greatest number of papers and reflects the multiple investigative efforts currently evaluating the cellular aspects of this disorder. The genetic basis of hypercalciuria and the impact of water metabolism on nephroliathisis were also discussed. CONCLUSIONS: Clinical and basic research activities that are of mutual interest to pediatric urologists and nephrologists are being conducted. The topic of obstructive uropathy has received the greatest attention during the last year. However, additional research, potentially collaborative in nature, on topics such as nephroliathisis and reflux nephropathy should be encouraged.

Child↗

DIALIGN: finding local similarities by multiple sequence alignment.

MOTIVATION: DIALIGN is a new method for pairwise as well as multiple alignment of nucleic acid and protein sequences. While standard alignment programs rely on comparing single residues and imposing gap penalties, DIALIGN constructs alignments by comparing whole segments of the sequences. No gap penalty is employed. This point of view is especially adequate if sequences are not globally related, but share only local similarities, as is the case in genomic DNA sequences and in many protein families. RESULTS: Using four different data sets, we show that DIALIGN is able correctly to align conserved motifs in protein sequences. Alignments produced by DIALIGN are compared systematically to the results of five other alignment programs. AVAILABILITY: DIALIGN is available to the scientific community free of charge for non-commercial use. Executables for various UNIX platforms including LINUX can be downloaded at http://www.gsf.de/biodv/dialign.html CONTACT: werner, morgenstern@gsf.de

Algorithms↗

Segment-based scores for pairwise and multiple sequence alignments.

In this paper, we discuss a novel scoring scheme for sequence alignments. The score of an alignment is defined as the sum of so-called weights of aligned segment pairs. A simple modification of the weight function used by the original version of the DIALIGN alignment program turns out to have a crucial advantage: it can be applied to both, global and local alignment problems without the need to specify a threshold parameter.

Amino Acid Sequence↗

Report of the American Society of Nephrology meeting.

PURPOSE: We summarize presentations on topics of interest to the pediatric urologist from the annual meeting of the American Society of Nephrology in November 1995. MATERIALS AND METHODS: We reviewed all abstracts submitted for presentation and subsequently published in abstract form in the Journal of the American Society of Nephrology, September 1995. Only abstracts containing information pertinent to the field of pediatric urology were summarized for this report. RESULTS: A total of 22 abstracts addressing the subjects of nephrolithiasis, obstructive uropathy, renal transplantation, vesicoureteral reflux and genetics/development was summarized. CONCLUSIONS: Research activities in various subject areas are applicable to the pediatric nephrology and urology communities. Sharing the results of these investigative efforts in forums such as this report is mutually beneficial and should be encouraged.

Child↗

Multiple DNA and protein sequence alignment based on segment-to-segment comparison.

In this paper, a new way to think about, and to construct, pairwise as well as multiple alignments of DNA and protein sequences is proposed. Rather than forcing alignments to either align single residues or to introduce gaps by defining an alignment as a path running right from the source up to the sink in the associated dot-matrix diagram, we propose to consider alignments as consistent equivalence relations defined on the set of all positions occurring in all sequences under consideration. We also propose constructing alignments from whole segments exhibiting highly significant overall similarity rather than by aligning individual residues. Consequently, we present an alignment algorithm that (i) is based on segment-to-segment comparison instead of the commonly used residue-to-residue comparison and which (ii) avoids the well-known difficulties concerning the choice of appropriate gap penalties: gaps are not treated explicity, but remain as those parts of the sequences that do not belong to any of the aligned segments. Finally, we discuss the application of our algorithm to two test examples and compare it with commonly used alignment methods. As a first example, we aligned a set of 11 DNA sequences coding for functional helix-loop-helix proteins. Though the sequences show only low overall similarity, our program correctly aligned all of the 11 functional sites, which was a unique result among the methods tested. As a by-product, the reading frames of the sequences were identified. Next, we aligned a set of ribonuclease H proteins and compared our results with alignments produced by other programs as reported by McClure et al. [McClure, M. A., Vasi, T. K. & Fitch, W. M. (1994) Mol. Biol. Evol. 11, 571-592]. Our program was one of the best scoring programs. However, in contrast to other methods, our protein alignments are independent of user-defined parameters.

Algorithms↗

First temporal and spatial quantification of single-shot electrohydraulic lithotripsy in vitro.

Single electrohydraulic lithotripsy (EHL) discharges from a human ureter were analyzed with a mechanical high-speed motion analysis camera. We found a cavitation bubble, at 650 mJ, 4-11 mm in size, with a lifetime of 400-500 microseconds. Varying sizes and lifetimes were found using single-shot analysis, as well as in different shot-sequences. This supports similar observations by recent investigations of cavitation bubble size with high-shutter-speed videofilm, which have depicted events at shutter speeds of 4000/s, i.e., an approximate exposure time of 250 microseconds. Due to the occurrence of high-voltage interference from the EHL high-voltage generator, no other technical electronic event timing equipment has so far been available capable of mechanical high-speed film motion analysis, while at the same time avoiding high-voltage interference.

Lithotripsy↗

Renal function in children and adolescents following 72 g/m2 of ifosfamide.

A detailed analysis of the renal function of 18 children and adolescents aged 7-20 years (median, 16 years) was performed at least 3 months following the completion of a non-platinum-containing chemotherapy regimen with a total dose of 72 g/m2 of ifosfamide. Ifosfamide had been given as a 1-h infusion of 1.8 g/m2 daily for 5 days at 5- to 6-week intervals along with mesna uroprotection. The mean glomerular filtration rate (GFR) as determined by inulin clearance was 100 ml/min/1.73 m2. Although 6 of 18 patients had GFRs below normal, the lowest was only 18% less than the lower limit of normal and would not account for any clinical compromise. The renal plasma flow and filtration fraction were normal. Proximal tubular function evaluation revealed normal fractional excretion (FE) of glucose; normal mean tubular maximum phosphate reabsorption per GFR (TMP)/GFR values; high FE of urate (17%); and mild, generalized aminoaciduria in 6 of the 18 patients. Distal tubular function evaluation showed normal 24-h urinary calcium levels and FE of magnesium as well as normal urinary osmolality after water deprivation. Two patients had mild proteinuria. The findings in this study are encouraging in terms of the lack of clinically significant renal abnormalities observed in patients who had received a cumulative dose of 72 g/m2 of ifosfamide.

Adolescent↗