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Reinhard Szibor

Publications and source records attributed to Reinhard Szibor.

17 recordsLinked to original sources

Mitochondrial D-loop (CA)n repeat length heteroplasmy: frequency in a German population sample and inheritance studies in two pedigrees.

Sequence analysis of the human mitochondrial genome (mtDNA) has proven to be a valuable tool in forensic identity testing and the analysis of crime scene stains. In contrast to the very expensive sequencing technique, typing of different length variants can greatly facilitate screening of a large number of traces for their relevance during casework. Within the mitochondrial control region, a dinucleotide (CA)( n ) repeat locus is present. To assess the discrimination power of this marker, we have determined (CA)( n ) allele distribution and the frequency of heteroplasmy in a population sample of 2,458 Germans. The inclination to develop heteroplasmic mixtures (CA)( n )/(CA)( n-1) was positively correlated with the number of CA repeats in the mtDNA. In addition, we have studied the inheritance patterns of (CA)( n ) repeat sequence heteroplasmy in two pedigrees. In one pedigree, we also found a length heteroplasmy in the homopolymeric C-tract (nt 303-309). Our data show stable inheritance of heteroplasmy within the homopolymeric C-stretch, but rather unstable inheritance regarding the (CA)( n ) repeat locus.

DNA, Mitochondrial↗

Forensic mass screening using mtDNA.

At the forensic autopsy of a sexual murder victim, some trace hairs, possibly belonging to the perpetrator, were saved. Initially, the analysis of a pubic hair shaft only revealed the presence of the mitochondrial (mt) DNA haplotype profile consisting of the (CA)(6) allele and the complete hypervariable region 1 (HV1) and 2 (HV2) sequence. Later, typing of some further telogene trace hairs, which had been stored for several years, yielded a nuclear short tandem repeat (STR) profile. We used both the mtDNA haplotype and the STR profile to start a DNA mass screening project involving 2,335 male citizens of the relevant communities. MtDNA screening was carried out by using the CA repeat amplification in combination with an SNP typing procedure based on the restriction site analysis of amplified d-loop sequences. The aim of our paper is to put mass screening with mtDNA up for discussion.

Alleles↗

DXS10079, DXS10074 and DXS10075 are STRs located within a 280-kb region of Xq12 and provide stable haplotypes useful for complex kinship cases.

The evaluation of the short tandem repeat (STR) markers DXS10079, DXS10074 and DXS10075 was amended to establish a STR cluster spanning a genetic distance<1 cM. These three STRs are located within a 280-kb region at Xq12 and provide stable haplotypes useful for solving complex kinship cases. Theoretically, this cluster could give rise to 2,548 different haplotypes in the German population and the genotyping of 781 men revealed the presence of 172 haplotypes. Since the three STRs were shown to be in strong linkage disequilibrium (LD), haplotype frequencies cannot be computed on the basis of a single locus allele frequency alone but have to be estimated directly. Here, we present data on linkage, haplotype frequencies and LD in a German population. Further clusters from other regions of the X chromosome will be published in the future to cover the chromosome with a well-structured network of highly informative sites.

Chromosomes, Human, X↗

DXS6797 contains two STRs which can be easily haplotyped in both sexes.

DXS6797 is a complex X-chromosomal locus which contains two variable short tandem repeats (STRs) (motif ATCT) separated by 128 non-polymorphic nucleotides. The two STRs can be cleaved apart by Taq I digestion. Conventionally, DXS6797 is typed by measuring the overall amplicon length, providing only eight alleles [polymorphism information content (PIC) 0.733, mean exclusion chance (MEC) 0.712]. Separate amplification would increase the discrimination but obscure the haplotype constellation in females. Therefore, we proceed by amplifying the whole sequence containing both repeats (DXS6797 I and DXS6797 II) using a Fam-labelled forward primer and a Tamra-labelled reverse primer. We then measure the length of the entire double-labelled amplicon and a Taq-I-digested aliquot to infer, for both males and females, compound haplotypes consisting of DXS6797 I and DXS6797 II repeat length. This procedure has the potential to provide 42 DXS6797 haplotypes. If the crossover rate between both STRs is assumed to be <1.5x10(-6), DXS6797 haplotypes could be used for kinship testing like STR alleles. In our German sample (780 X chromosomes), we determined 27 haplotypes (PIC 0.842, MEC 0,834) and in 220 meioses, we found no new mutations.

Adolescent↗

A new Web site compiling forensic chromosome X research is now online.

We would like to announce the opening of a new Web site ( http://www.chrx-str.org ), which contains a database surveying current research on chromosome X markers used for forensic purposes, evolutionary anthropology and other genetic research. Currently, we summarise short tandem repeat data with regard to the physical and genetic localisation, repeat structure, allele nomenclature, mutation rates and population genetics. In the future, we may include diallelic markers. The results contained in this database come from published journal articles. The authors of published articles are invited to complement their own papers by submitting data obtained from follow-up studies here. Furthermore, population data which are not able to find space in journals may be published at this Web site. The growing field of ChrX haplotyping is producing an extensive amount of data, which requires a place that can complement journal publications.

Chromosomes, Human, X↗

Haplotyping of STR cluster DXS6801-DXS6809-DXS6789 on Xq21 provides a powerful tool for kinship testing.

Short tandem repeat (STR) markers DXS6801 (GATA41B11), DXS6809 (GATA69B129) and DXS6789 (GATA31F01) are located in a 3-Mb region on human chromosome Xq21, spanning approximately 3-6 cM. Theoretically, this cluster could give rise to 1,144 different haplotypes in the German population. In fact, genotyping of 806 males revealed the presence of 207 different haplotypes. Since the three STRs have been shown to be in strong linkage disequilibrium (LD), haplotype frequencies cannot be computed on the basis of single locus allele frequencies alone, but have to be estimated directly instead. In this work, we present data on linkage, haplotype frequencies and LD in the German population. To highlight the potential of the STR cluster for forensic analysis, we also report two examples of its successful application in pedigree-based kinship testing.

Chromosomes, Human, X↗

Significant genetic differentiation between Poland and Germany follows present-day political borders, as revealed by Y-chromosome analysis.

To test for human population substructure and to investigate human population history we have analysed Y-chromosome diversity using seven microsatellites (Y-STRs) and ten binary markers (Y-SNPs) in samples from eight regionally distributed populations from Poland (n = 913) and 11 from Germany (n = 1,215). Based on data from both Y-chromosome marker systems, which we found to be highly correlated (r = 0.96), and using spatial analysis of the molecular variance (SAMOVA), we revealed statistically significant support for two groups of populations: (1) all Polish populations and (2) all German populations. By means of analysis of the molecular variance (AMOVA) we observed a large and statistically significant proportion of 14% (for Y-SNPs) and 15% (for Y-STRs) of the respective total genetic variation being explained between both countries. The same population differentiation was detected using Monmonier's algorithm, with a resulting genetic border between Poland and Germany that closely resembles the course of the political border between both countries. The observed genetic differentiation was mainly, but not exclusively, due to the frequency distribution of two Y-SNP haplogroups and their associated Y-STR haplotypes: R1a1*, most frequent in Poland, and R1*(xR1a1), most frequent in Germany. We suggest here that the pronounced population differentiation between the two geographically neighbouring countries, Poland and Germany, is the consequence of very recent events in human population history, namely the forced human resettlement of many millions of Germans and Poles during and, especially, shortly after World War II. In addition, our findings have consequences for the forensic application of Y-chromosome markers, strongly supporting the implementation of population substructure into forensic Y chromosome databases, and also for genetic association studies.

Chromosomes, Human, Y↗

Validation of the X-linked STR DXS6801.

This paper presents sequence and population genetic data of the X-linked microsatellite marker DXS6801 (GDB:G00-365-276) which is a tetranucleotide repeat polymorphism representing eight alleles 109-141 bp in length. Data were obtained from a sample of 1146 unrelated German individuals. DXS6801 is located 99.7 cM from Xptel, nearby DXS6809 [Int. J. Legal Med. 117 (2003) 241] and DXS6789 [Forensic Sci. Int. 119 (2001) 42] in Xq21. The new marker could be added to the panel of ChrX STRs, especially usable as a part of the Xq21 linkage group.

Chromosomes, Human, X↗

DXS10011: studies on structure, allele distribution in three populations and genetic linkage to further q-telomeric chromosome X markers.

The hypervariable tetranucleotide STR polymorphism DXS10011 is a powerful marker for forensic purposes. Investigation of this STR led to an allele nomenclature which is in consensus with the ISFG recommendations. DXS10011 is located at Xq28 and genetically closely linked to DXS7423 and DXS8377 but is unlinked to HPRTB and more distant X-chromosomal STRs. DXS10011 is a very complex marker exhibiting some structural variants within alleles of identical length. Two types of repeat structure (regular and inter-alleles) are known and described as types A and B. Two SNPs which are in strong linkage disequilibrium to the different sequence types were found in the repeat flanking region. The type A sequence consists of a long stretch of uninterrupted homogenous repeats which is highly susceptible to slippage mutation during male meiosis.

Adolescent↗

Different methods to determine length heteroplasmy within the mitochondrial control region.

The first and second hypervariable regions of the human mitochondrial DNA control region contain two homopolymeric stretches of cytosine (nt 16184-16193 and nt303-315, respectively). According to the Cambridge reference sequence these homopolymeric stretches are interrupted by thymine (T), at positions 16189 and 310, respectively. Monotonous runs of the same base have been suggested to be hot spots for mutations, probably caused by replication slippage, resulting in length heteroplasmy. This paper describes a rapid method based on restriction cleavage of labelled PCR products encompassing the homopolymeric tract in HVII to quantify the relative proportions of different length variants present in an individual. To compare the accuracy of this method, cloned PCR products from several heteroplasmic individuals have been additionally sequenced.

Artifacts↗

Cell line DNA typing in forensic genetics--the necessity of reliable standards.

The incorporation of reference DNA is crucial to the validation of any DNA typing protocol. This paper aims to provide a panel of reference DNAs for actual forensic profiling strategies, i.e. autosomal and gonosomal STR typing as well as mtDNA sequencing. We have characterised three human lymphoid cell lines, GM9947, GM9948 and GM3657, and considered 58 autosomal and gonosomal microsatellites as well as the mitochondrial control region sequence. Well-established markers and STRs recently developed for forensic use were involved. K562 DNA samples which we purchased from two different suppliers were also analysed. They revealed conflicting results with regard to the ChrX STR marker genotype. Hence, we suggest that K562 is no longer used for the calibration of profiling techniques. Our investigation establishes a panel of one female and two male DNA samples as an STR allelic ladder calibration tool and offers information on six alleles of each autosome (AS) marker, three alleles of each X chromosome (ChrX) marker and two alleles of each ChrY marker. In addition, sequences of the mitochondrial control region of the three DNAs are communicated in order to provide sequencing quality control.

Cell Line, Tumor↗

The X-linked STRs DXS7130 and DXS6803.

This paper presents sequence and population genetic data of two new X-linked microsatellite markers, suitable for forensic purposes. Data were obtained from a sample of unrelated German individuals (male and female). Two highly informative markers could be added to the panel of ChrX STRs [J. Edelmann, S. Hering, M. Michael, R. Lessig, D. Deichsel, G. Meier-Sundhausen, L. Roewer, I. Plate, R. Szibor, 16 X-chromosome STR loci frequency data from a German population, For. Sci. Int. 124 (2001) 215-218; J. Edelmann, D. Deichsel, S. Hering, I. Plate, R. Szibor, Sequence variation and allele nomenclature for the X-linked STRs DXS9895, DXS8378, DXS7132, DXS6800, DXS7133, GATA172D05, DXS7423 and DXS8377, For. Sci. Int. 129 (2002) 99-103].

Alleles↗

Sequence variation and allele nomenclature for the X-linked STRs DXS9895, DXS8378, DXS7132, DXS6800, DXS7133, GATA172D05, DXS7423 and DXS8377.

X-linked DNA markers are increasingly used in forensic kinship testing. This paper presents sequencing data of the short tandem repeats (STRs) DXS9895, DXS8378, DXS7132, DXS6800, DXS7133, GATA172D05, DXS7423, DXS8377 and proposes an allele nomenclature. Alleles were assigned according to the recommendations of the International Society of Forensic Genetics (ISFG) Commission.

Alleles↗

Validation of the STR DXS7424 and the linkage situation on the X-chromosome.

X-linked microsatellite markers have proven to be powerful tools for parentage testing, mainly in deficiency paternity cases when the disputed child is female. However, only a small number of X-linked short tandem repeats (STRs) have been comprehensively described for forensic applications to date. We present sequence and population genetic data of the DXS7424 STR (GDB-G00-577-633) which is a trinucleotide repeat polymorphism representing 12 alleles of 147-180 bp in length. DXS7424 is located at Xq22 and closely linked to DXS101, corresponding to a genetic localisation of 104.9-121 cM from Xp-tel.PCR fragment length measurements and sequencing were carried out using the automatic gene analyser ABI 310 (Applied Biosystems). The population of 764 unrelated Germans checked for this STR exhibited the following features: polymorphism information content (PIC) = 0.780; heterozygosity (Het) = 0.843; mean exclusion chance (MEC = 0.766. Kinship tests revealed a typical X-linked inheritance. In 300 meioses under investigation, mutations were not found. Significant deviations from the Hardy-Weinberg equilibrium (HWE) were not established. Linkage studies confirmed closely linkage to DXS101. Additional we found linkage disequilibrium between DXS7424 and DXS101. This requires to use the established haplotype frequencies in kinship testing.

Alleles↗

Homozygous proline at codon 72 of p53 as a potential risk factor favoring the development of undifferentiated thyroid carcinoma.

The p53 tumor suppressor gene is altered in human cancer. A common polymorphism occurs at codon 72 of exon 4, with two alleles encoding either arginine (CGC) or proline (CCC). No data exist about the association of a distinct codon 72 variant with the histological subtypes of thyroid carcinoma. We developed a new one-step real-time PCR assay on the LightCycler to detect codon 72 polymorphism in the p53 gene. We studied 21 papillary, 18 follicular and 22 anaplastic thyroid carcinomas and compared them with 15 adenomas and 36 normal thyroid tissues (controls); moreover, we compared the cases for histological, clinical and demographic variables and genotype prevalence. In controls, the frequency of the three genotypes Arg/Arg, Arg/Pro, and Pro/Pro was 41.7, 50.0 and 8.3%, respectively. The homozygous proline was not found in benign thyroid adenomas and differentiated thyroid carcinomas. In contrast, all undifferentiated thyroid carcinomas (100%) had the homozygous proline phenotype. The frequency of the two other genotypes Arg/Arg and Arg/Pro was 66.7% and 33.3% in adenomas, 81.0% and 19.0% in papillary thyroid carcinomas, and 83.3% and 16.7% in follicular thyroid carcinomas, respectively. Comparing the genotypes with tumor stage, no correlation was found. However, lymph node and distant metastases status showed a statistically significant prevalence for the homozygous phenotypes Arg/Arg and Pro/Pro. There was no association between a special genotype and age and sex. We conclude that homozygous proline is a potential risk factor favoring the development of an undifferentiated thyroid carcinoma, and that the homozygous phenotypes at codon 72 of p53 are associated with a poorer prognosis of thyroid carcinoma.

Adult↗

Selective loss of codon 72 proline p53 and frequent mutational inactivation of the retained arginine allele in colorectal cancer.

According to recent reports, some cancer types exhibit nonrandom allele loss at codon 72 in exon 4 of the p53 gene [coding for proline (72Pro) or arginine (72Arg)]. To clarify this phenomenon for colorectal cancer and to find out if this preferential loss might have any functional significance, p53 loss of heterozygosity (LOH) and p53 mutations were investigated in a group of 61 colorectal cancers and 28 liver metastases, and were correlated with clinicopathologic factors. A comparison of a patient's blood codon 72 status with a healthy control group did not reveal an enhanced risk of developing colorectal tumors for one of the two isoforms. p53-LOH and p53 mutations were found in 62.2% and 39.4% of primary tumors, respectively, and in 57.9% and 25% of hepatic metastases, respectively. In 14 heterozygous cases showing exon 4-LOH, only the 72Pro allele was lost and the retained 72Arg was preferentially mutated. In general, p53 mutations were significantly associated with the 72Arg tumor status (P < .001). Distal tumors showed allelic losses of the p53 gene more commonly than proximal tumors (P = .054). The prevalence of 72Arg increased in frequency with higher Dukes stage (P = .056). We suggest that either the preferential loss of 72Pro or the mutation of the 72Arg in colorectal cancer and hepatic metastases is associated with malignant potential and might reflect carcinogenic exposure, particularly in the distal part of the large intestines.

Adult↗