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Yasuo Fukumori

Publications and source records attributed to Yasuo Fukumori.

4 recordsLinked to original sources

DNA polymorphisms and haplotypes in the 5'-upstream region of the ABO blood group gene.

We investigated the polymorphisms in the 5'-upstream region between nucleotide position (nt) -9600 and nt-4105 of the ABO blood group gene using PCR and direct sequencing methods. We found 16 single nucleotide polymorphisms, two insertion-deletion polymorphisms and two sequence polymorphisms. One of the insertion-deletion polymorphisms was found at nts from -9605 to -9204, and the alleles of that locus were named ABORR*L (non-deletion) and ABORR*S (52-base-deletion). There were two haplotypes constructed from 14 polymorphisms in the region between nt-9600 and nt-7565; they were tentatively named ABORR*L-associated and ABORR*S-associated haplotypes. The ABORR*L-associated haplotype may link with ABO*O(A) (also known as ABO*O201), and the ABORR*S-associated haplotype links with the other common alleles. This indicates the existence of two major lineages of the Japanese ABO alleles in the 5'-upstream region from nt-7565. In contrast to these findings, we observed six haplotypes in the region between nt-6371 and nt-4105, and we assume that the sequence in that region is variable as compared with those in the other 5'-upstream regions. We examined the generation of two sequence polymorphisms found in the present study. In the both cases, the formation of a hairpin loop caused by palindrome in a single-stranded DNA molecule may play an important role in generating the polymorphism.

5' Flanking Region↗

Mycobacterium bovis BCG cell wall-specific differentially expressed genes identified by differential display and cDNA subtraction in human macrophages.

We have analyzed the gene expression profile of monocytes in response to a highly purified cell wall fraction of Mycobacterium bovis BCG, a clinically approved adjuvant known as BCG cell wall skeleton (BCG-CWS). It is composed of mycolic acid, arabinogalactan, and peptidoglycan and confers Toll-like receptor 2 (TLR2)- and TLR4-dependent signaling that induces monocytes to differentiate into antigen-presenting cells (APCs). Here we report differential gene expression analysis with BCG-CWS-stimulated versus nonstimulated monocytes. BCG-CWS exerted massive induction of genes regulated by TLR signaling. Marked gene regulatory characteristics in BCG-CWS-stimulated cells compared to lipopolysaccharide (LPS)-stimulated cells follow. (i) Spliced mRNAs encoding soluble forms of TREM-1 and TREM-2 (recently discovered inflammatory-signal-amplifying receptors) were regulated by BCG-CWS, resulting in their differential expression. (ii) The genes for zinc-iron transporter protein (ZIP)-like family proteins HKE-1 and LIV-1 were induced exclusively by BCG-CWS. (iii) Interleukin-23 (IL-23), rather than IL-12p70, was induced by BCG-CWS, while interferon-inducible genes were induced only by LPS. By Northern and reverse transcription-PCR analyses, we confirmed the differential expression of more than 30 BCG-CWS regulatory genes, and their expression was compared with that of LPS and other known TLR ligands. A battery of genes responded rapidly and for a short time to LPS but for a long time to BCG-CWS. Structural analysis of the identified novel or hypothetical proteins revealed that some are potential candidates as signaling mediators or transcriptional regulators. Hence, BCG-CWS may profoundly modulate APC responses in a way distinct from that of LPS, leading to possible advantages for its adjuvant-active therapeutic potential.

Adjuvants, Immunologic↗

Single nucleotide polymorphisms in the human complement C6 and C7 genes.

We analyzed the single nucleotide polymorphisms (SNPs) in the sixth (C6) and the seventh (C7) component genes of the complement system in a sample of the Japanese population, using polymerase chain reaction (PCR)-based methods and PCR direct sequencing. SNPs in the C6 gene studied here are as follows: A413C in exon 3, T1674C in exon 10, T7145A in exon 13, G[357+32]A in intron 2, and G[503-78]A in intron 3. We confirmed that nt413A and nt413C were associated with C6A and C6B, respectively. The result of the nt2145 typing showed that two subtypes exist in the C6B allotype. The SNP of G[357+32]A in intron 2 could be analyzed by using the PCR-RFLP method with HinfI. Allele frequencies in the Japanese population were found to be *G=0.920 and *A=0.080. SNPs in the C7 gene are as follows: T382C in exon 4, G1166C and A1258C in exon 9, and G[+10]A in intron 13. Nt382C and nt1258C would be responsible for C7-5 (=C7-3) and C7-4 allotypes, respectively.

Complement C6↗

A-elute alleles of the ABO blood group system in Japanese.

The ABO blood group system is important in forensic genetics, as well as transfusion medicine. Since the elucidation of the molecular basis of ABO gene regulation, nucleotides of variant alleles or suballeles have been analyzed by polymerase chain reaction (PCR)-based methods and sequencing. Ael (A-elute) is one of the subgroups of A in the ABO system. By analyzing the suballeles responsible for Ael phenotype by PCR-RFLP and PCR direct sequencing, we found seven types of Ael allele. The allele frequency of ABO*Ael in a Japanese population was calculated to be 0.0049.

ABO Blood-Group System↗