PubMed Health⌕ Search

PubMed · 14593483

Mitochondrial DNA D-loop hypervariable regions: Czech population data.

Abstract

In order to identify polymorphic sites and to find out their frequencies and the frequency of haplotypes, the complete D-loop of mitochondrial DNA (mtDNA) from 93 unrelated Czech Caucasians was sequenced. Sequence comparison showed that 85 haplotypes were found and of these 78 were unique, 6 were observed twice and 1 was observed three times. Genetic diversity (GD) was estimated at 0.999 and the probability of two randomly selected sequences matching (random match probability, RMP) at 1.2%. Additionally these calculations were carried out for hypervariable regions 1, 2 (HV1, HV2), for the area between HV1 and HV2 and for the area of the hypervariable region HV3. The average number of nucleotide differences (ANND) was established to be 10.2 for the complete D-loop. The majority of sequence variations were substitutions, particularly transitions. Deletions were found only in the region where HV3 is situated and insertions in the same place and in poly-C tracts between positions 303 and 315 in HV2. A high degree of length heteroplasmy was found especially in the regions of poly-C tracts between positions 16184 and 16193 in HV1 and between positions 303 and 315 in HV2. Position heteroplasmies were found in two cases.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

T Vanecek, F Vorel, M Sip. 2003-10-31. Mitochondrial DNA D-loop hypervariable regions: Czech population data.. https://doi.org/10.1007/s00414-003-0407-2

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Natural polypeptide scaffolds: beta-sheets, beta-turns, and beta-hairpins.

This paper provides an introduction to fundamental conformational states of polypeptides in the beta-region of phi,psi space, in which the backbone is extended near to its maximal length, and to more complex architectures in which extended segments are linked by turns and loops. There are several variants on these conformations, and they comprise versatile scaffolds for presentation of side chains and backbone amides for molecular recognition and designed catalysts. In addition, the geometry of these fundamental folds can be readily mimicked in peptidomimetics.

Complementarity Determining Regions↗

Effective strategies for forensic analysis in the mitochondrial DNA coding region.

Recently, it has been recognized that accessing information in the mtDNA coding region can provide additional forensic discrimination with respect to the standard typing of the D-loop region, augmenting the sometimes rather limited forensic power of mtDNA testing. Here, we discuss considerations relating to maximally effective approaches for recovering additional discrimination in the coding region, bearing in mind that (1) DNA quality and quantity in typical mtDNA casework usually restrict the amount of additional sequence that can be obtained, and (2) the need for additional discrimination primarily arises when common HV1/HV2 types are encountered. Most investigators have sought additional discrimination by sequencing short segments of coding region that are thought to be particularly variable. Unfortunately, efforts in this regard have generally failed to appreciate that most variation in the coding region is redundant with information already present in HV1/HV2 and have therefore overvalued the potential of this approach for providing additional discrimination. An alternative single nucleotide polymorphism-based approach [Int J Legal Med 118:137-146, 2004] has been to identify specific bases that provide resolution in specific common HV1/HV2 types (and related sequences). We investigate several highly relevant data sets wherein the latter approach performs appreciably better than sequencing selected short portions of the coding region. This is true even when only synonymous variation is targeted to minimize the potential for problems arising from discovery of mutations that have reportedly been related to disease.

Complementarity Determining Regions↗

mtDNA HVI length heteroplasmic profile in different tissues of maternally related members.

Sequencing of the homopolymeric tract of cytosines (C-stretch) in human mitochondrial HVI region usually results in a blurred pattern beyond it when a T/C transition at nt 16189 occurs: it depends on a length heteroplasmy probably arising through a replication slippage. This study aims to investigate the distribution of heteroplasmic length variants within three related individuals along maternal lineage by cloning approach. Sequencing of multiple independent clones (12--14) is sufficient to yield heteroplasmic profiles. In addition, we illustrate a direct correlation between expansion of heteroplasmy modal length and reduction of the number of adenines preceding the homopolymeric tract; this association may be useful in pedigree analysis and in forensic field for tissues comparison, single hair sample included.

Complementarity Determining Regions↗