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Biomedical subjects

Holger Wittig

Publications and source records attributed to Holger Wittig.

6 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↗

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↗

Mitochondrial diversity of a northeast German population sample.

Mitochondrial DNA sequences of the hypervariable regions HV I and HV II were analyzed in 300 unrelated individuals born and living in the northeast corner of Germany (Western Pomerania) to generate a database for forensic identification purposes in this region. Sequence polymorphism were detected using PCR and direct sequencing analysis. A total of 242 different haplotypes were found as determined by 147 variable positions. The most frequent haplotype (263G, 315.1C) was found in 10 individuals and is also the most common sequence in Europe. Three other haplotypes were shared by 5 individuals, 2 sequences by 4, 8 haplotypes by 3, 15 sequences by 2 persons, and 213 sequences were unique. The genetic diversity was estimated to be 0.99 and the probability of two random individuals showing identical mitochondrial DNA (mtDNA) haplotypes is 0.6%. A comparison with other studies from Germany showed only little differences in the distribution of haplogroups. Nevertheless, one frequent haplotype in northeast Germany (five unrelated individuals) could only rarely be found in other German and European regions. Our results may indicate that despite a high admixture proportion in the German population some regions could demonstrate certain characteristic features.

DNA Fingerprinting↗

The impact of mtDNA analysis between positions nt8306 and nt9021 for forensic casework.

Identification in forensic casework by mtDNA sequencing is predominantly done by sequencing the non-coding control region (HVI and HVII). In an attempt to further increase the discriminatory power of mtDNA analysis, we sequenced a coding region between nt8306 and nt9021 to identify additional polymorphisms in a group of 61 unrelated German individuals who had mtDNA profiles that occurred more than two times each, as well as a control group of 119 unrelated Germans whose profiles occurred one or two times each. Within these 180 individuals, 38 different polymorphisms in this region were observed; 64.4% of these individuals displayed the Cambridge reference sequence profile plus A8860G. For 28 individuals with the two most common profiles, A263G-315.1insC (N = 18) and A263G-309.1insC-315.1insC (N = 10), additional polymorphisms in this coding region permitted further discrimination of 56 and 40% of the individuals, respectively.

Journal Article↗

Variability of mitochondrial DNA in a population sample from Iceland.

Over the past decade investigations of human mitochondrial DNA (mtDNA) have considerably contributed to our knowledge about human evolution and migration. The genome of the Icelandic population is of special interest since Iceland has been genetically isolated for centuries. The sequence of the hypervariable regions HVS-I and HVS-II of the mtDNA control region was generated for 100 Icelandic individuals. A total of 75 different mtDNA sequences were observed, of which 19 sequences were shared by more than one individual, 16 sequences were shared by two individuals and two sequences were shared by three individuals; the most frequent haplotype (16129 A, 16239 T, 00263 G and 00315.1 C) was found six times. Both the genetic diversity (0.9925+/-0.0031) and the average number of pairwise nucleotide differences (7.371) were comparable with most of the other European populations. However, we found a smaller number of distinct mitochondrial lineages, suggesting that founder effects and genetic drift may have exerted a visible influence on the Icelandic genetic diversity. We compared these data with 1400 other European sequences from the D-Loop-BASE database. The paper discusses the evolutionary relationship between Icelandic and Central European mtDNA under due consideration of the historical context. Finally, our study has been aimed at increasing the number of mtDNA sequences available throughout the world and contributing to human genome investigations.

DNA Fingerprinting↗