[HLA-DQB2 genotypes analyzed by PCR/SSCP method].

Nihon Hoigaku Zasshi

Department of Forensic Medicine, Teikyo University School of Medicine.

Published: October 1995

When the PCR products amplified by the primers prepared at the 11th HLA Workshop (DQBAMP-A, DQBAMP-B) were analyzed directly by the SSCP method, one or two pairs of characteristic bands were detected other than those attributed to DQB1, and a total of three kind of paired bands were detected. To confirm that these bands were allelic genes of DQB2, the corresponding bands were isolated by cloning, and their base sequences were determined. The base sequence of one of them was in agreement with that of DX beta, which has already been described, and the characteristic 3-base defect was noted by comparison with the base sequence of DQB1. The same 3-base defect was noted also in the other two kinds. One-base substitution was present in each of the three kinds of base sequence, and they were confirmed to be allelic genes of DQB2. In DQB1 typing by the PCR/SSCP method of Carrington et al., treatment with the restriction enzyme Alu 1 is needed to eliminate DQB2. However, the use of this enzyme was theoretically demonstrated to be inappropriate, because it degraded the DQB1*0401 gene.

Download full-text PDF

Source

Publication Analysis

Top Keywords

base sequence
12
bands detected
8
allelic genes
8
genes dqb2
8
3-base defect
8
[hla-dqb2 genotypes
4
genotypes analyzed
4
analyzed pcr/sscp
4
pcr/sscp method]
4
method] pcr
4

Similar Publications

Optimized circular RNA vaccines for superior cancer immunotherapy.

Theranostics

January 2025

Department of Integrative Oncology, Fudan University Shanghai Cancer Center, and Shanghai Key Laboratory of Medical Epigenetics, Institutes of Biomedical Sciences, Fudan University, Shanghai, 200032, China.

Circular RNA (circRNA) has gained attention as a promising platform for mRNA vaccines due to its stability, sustained protein expression, and intrinsic immunostimulatory properties. This study aimed to design and optimize a circRNA cancer vaccine platform by screening for efficient internal ribosome entry sites (IRES) and enhancing circRNA translation efficiency for improved cancer immunotherapy. We screened 29 IRES elements to identify the most efficient one for immune cell translation, ultimately discovering the A (EV-A) IRES.

View Article and Find Full Text PDF

A rare haplotype of the GJD3 gene segregating in familial Meniere's disease interferes with connexin assembly.

Genome Med

January 2025

Otology & Neurotology Group CTS495, Instituto de Investigación Biosanitario, Ibs.GRANADA, Universidad de Granada, 18071, Granada, Spain.

Background: Familial Meniere's disease (FMD) is a rare polygenic disorder of the inner ear. Mutations in the connexin gene family, which encodes gap junction proteins, can also cause hearing loss, but their role in FMD is largely unknown.

Methods: We retrieved exome sequencing data from 94 individuals in 70 Meniere's disease (MD) families.

View Article and Find Full Text PDF

Background: Aspergillus niger is an important industrial filamentous fungus used to produce organic acids and enzymes. A wide dynamic range of promoters, particularly strong promoters, are required for fine-tuning the regulation of gene expression to balance metabolic flux and achieve the high yields of desired products. However, the limited understanding of promoter architectures and activities restricts the efficient transcription regulation of targets in strain engineering in A.

View Article and Find Full Text PDF

Background: DNA methylation plays a crucial role in mammalian development. While methylome changes acquired in the parental genomes are believed to be erased by epigenetic reprogramming, accumulating evidence suggests that methylome changes in sperm caused by environmental factors are involved in the disease phenotypes of the offspring. These findings imply that acquired sperm methylome changes are transferred to the embryo after epigenetic reprogramming.

View Article and Find Full Text PDF

Background: Pacific Biosciences (PacBio) circular consensus sequencing (CCS), also known as high fidelity (HiFi) technology, has revolutionized modern genomics by producing long (10 + kb) and highly accurate reads. This is achieved by sequencing circularized DNA molecules multiple times and combining them into a consensus sequence. Currently, the accuracy and quality value estimation provided by HiFi technology are more than sufficient for applications such as genome assembly and germline variant calling.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!