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Biomedical subjects

M G Mattei

Publications and source records attributed to M G Mattei.

At least 325 records · Page 18Linked to original sources

[Diagnosis of minor chromosome modifications by molecular cytogenetics].

Chromosomal in situ hybridization with radioactive probes allows the detection of single copy DNA segments of very small size. In two phenotypically normal individuals, classical chromosomal analysis revealed a small partial deletion of chromosome 18 short arm. In situ hybridization of probe D18S3, located at 18p13, showed in both instances a balanced reciprocal translocation: 46,XY,t(5;18) (p153;p112) and 46,XX,t(18;22)(p111;p11), respectively.

Abortion, Habitual↗

Characterization of the HST-related FGF.6 gene, a new member of the fibroblast growth factor gene family.

By screening a mouse cosmid library with a human HST probe under reduced conditions of stringency, we isolated several positive clones. One of them was identified as a new member of the fibroblast growth factor gene family, and called FGF.6. The human FGF.6 gene was subsequently isolated and sequenced. The deduced amino-acid sequence exhibited 70% identity with the HST gene product over the C-terminal two-thirds of the putative protein. FGF.6 was mapped to chromosome 12 at band p13 by in situ hybridization. The cloned normal human gene was able to transform mouse NIH3T3 fibroblasts using both focus- and tumorigenicity-assays.

Amino Acid Sequence↗

Molecular aspects of sex determination in mice: an alternative model for the origin of the Sxr region.

Using a combination of in situ mapping and DNA analysis with recombinant DNA probes specific for the Sxr region of the mouse Y chromosome, we show that both the gene(s) controlling primary sex determination and the expression of the male-specific antigen H-Y (Tdy and Hya respectively) are located on the minute short arm of the mouse Y chromosome. We demonstrate that the H-Y- variant of Sxr (Sxr') arose by a partial deletion within the Sxr region and propose an alternative model for the generation of the original Sxr region.

Animals↗

Characterization of cDNA clones for human glycophorin A. Use for gene localization and for analysis of normal of glycophorin-A-deficient (Finnish type) genomic DNA.

Glycophorin A is the major membrane sialoglycoprotein of human erythrocytes and represents a typical example of a transmembrane glycoprotein. The functional role of this cell-surface component is not known but it represents a receptor for viruses, bacteria and parasites like Plasmodium falciparum. 1. Two cDNA clones encoding glycophorin A have been characterized from human fetal cDNA libraries. The longer cDNA extended from the coding region of glycophorin A (residues 4-131) to the 3' untranslated region which included two polyadenylation signals and a poly(A) tail. 2. The structural gene for glycophorin A is located on chromosome 4, q28-q31 as shown by in situ hybridization, thus confirming the previous localization by genetic linkage analysis. 3. Three distinct mRNA species (1.0 kb, 1.7 kb and 2.2 kb) have been identified in erythroid spleen. Northern blot analyses with a probe directed against the 3' untranslated region of the mRNAs indicated that all these species share a homologous 3' non-coding region and that the first polyadenylation signal downstream the stop codon is not used. 4. Preliminary studies by Southern blot analysis of the genomic DNA from normal En(a+) and rare En(a-) donors suggest that the glycophorin A gene has a complex organization and is largely deleted in donors of the En(a-) phenotype (Finnish type) who lack glycophorin A on their red cells.

Base Sequence↗

Dissociation between mental retardation and fragile site expression in a family with fragile X-linked mental retardation.

We report an extended family in which two brothers with a fragile X chromosome are mentally retarded while a third brother with the fragile site is both phenotypically and mentally normal. The study of six probes detecting restriction fragment length polymorphisms on either sides of the fragile site Xq27 confirmed that the fragile X regions inherited by these three brothers were identical from DXS102 to the telomere. These data highlight the heterogeneity of the fragile X syndrome, which is discussed in the framework of the different hypotheses previously proposed.

Child↗

Chromosome localization and polymorphism of an oestrogen-inducible gene specifically expressed in some breast cancers.

The BCEI gene codes for a small secreted protein and is expressed in the human mammary tumour cell line MCF7 under oestrogen control and in some breast cancers. We have mapped the gene to chromosome 21 using a panel of somatic hybrid lines, and in situ hybridization has allowed a precise assignment to band 21q223. Two restriction fragment length polymorphisms (RFLP) are described that should be of use in linkage or population studies to test a possible involvement of the BCEI gene in genetic predisposition to breast cancer. This gene should also be a useful marker for the genetic and physical mapping of chromosome 21, and for a better definition of the region involved in the clinical phenotype of Downs syndrome.

Breast Neoplasms↗

cDNA cloning, expression and mapping of human laminin B2 gene to chromosome 1q31.

A laminin B2 chain cDNA clone was isolated from a human lung cDNA library by screening with antibody against mouse laminin. The authenticity of the human cDNA clone was established by comparison of the nucleotide and deduced amino acid sequences of the cDNA insert with those of the previously reported mouse laminin cDNA clones. The human clone (LC7) contained an insert of 0.75 kb (kilobase pair) that corresponded to the last 232 amino acid residues in the carboxyl terminus of the B2 chain. Northern blot analyses with the LC7 probe detected two mRNA transcripts of 8.2 and 5.6 kb in both normal human skin fibroblasts and three human tumor cell lines. The cDNA probe was also used in Southern blot analysis of DNA from human rodent somatic cell hybrids to localize the gene to human chromosome 1. In situ hybridization of the cDNA with metaphase chromosome spreads confirmed the assignment and further mapped the human laminin B2 chain gene to the long arm of chromosome 1 in the band q31.

Amino Acid Sequence↗

Trisomy 21q223 and Down's phenotype correlation evidenced by in situ hybridization.

Two cases of trisomy 21q223 with the Down's phenotype were analysed by in situ hybridization with specific probes previously located in the sub-bands 21q221 (SOD-A) and 21q223 (BCEI and COL6A). These studies give evidence that the clinical picture of Down's syndrome is at least to a great extent correlated with trisomy for the 21q223 band.

Adolescent↗

The gene encoding the large human neurofilament subunit (NF-H) maps to the q121-q131 region on human chromosome 22.

Using a rat cDNA probe encoding for the C-terminal extension of the large neurofilament subunit (NF-H), we have assigned, by in situ hybridization, the human NF-H gene to the q121-q131 region of chromosome 22. This localization may have implications in neurological diseases such as meningioma where a recessive locus involved in oncogenesis is located within this region.

Animals↗

Hox-5.1 defines a homeobox-containing gene locus on mouse chromosome 2.

We have isolated a murine homeobox-containing gene, Hox-5.1, by virtue of its relatedness to the Hox-1.4 gene. In situ hybridization to metaphase spreads mapped Hox-5.1 to band D of mouse chromosome 2. Sequence comparisons indicate that Hox-5.1 is the murine homolog of the human C13 homeobox-containing gene. Hox-5.1 also bears significant similarity to the Xenopus Xhox-1A homeobox-containing gene and the Drosophila deformed homeotic gene at N-terminal and homeobox regions. Hox-5.1 transcripts were detected in mouse embryos, in adult mouse testis, kidney, heart, and intestine, and in mouse embryonal carcinoma cells treated with retinoic acid. In situ hybridization to sections from whole mouse embryos revealed Hox-5.1 expression in spinal cord and prevertebrae.

Amino Acid Sequence↗

Molecular and cytogenetic evidence for the location of Tdy and Hya on the mouse Y chromosome short arm.

Using a combination of in situ mapping and DNA analysis with recombinant DNA probes specific for the Sxr region of the mouse Y chromosome, we show that both the gene(s) controlling sex determination and the expression of the male-specific antigen H-Y (Tdy and Hya, respectively) are located on the minute short arm of the mouse Y chromosome. We demonstrate that the H-Y- variant of Sxr (Sxr') arose by a partial deletion within the Sxr region. Also, we show that intrachromosomal recombination between the Y short arm and Sxr' can sometimes occur during male meiosis, restoring the deleted DNA sequences and resulting in an H-Y+ mouse (male 719 in this paper). Based on these results, we propose a model for the generation of the original Sxr region and the Sxr' and Sxr719 variants.

Animals↗

The human amiloride-sensitive Na+/H+ antiporter: localization to chromosome 1 by in situ hybridization.

The Na+/H+ antiporter is a ubiquitous membrane-bound enzyme involved in pH regulation of vertebrate cells. We cloned the human gene capable of complementing antiporter-deficient mouse fibroblasts and isolated an exon-containing genomic DNA fragment. Using this genomic probe, we mapped the putative structural gene of the amiloride-sensitive Na+/H+ antiporter to the human chromosome region 1p35----p36.1 by in situ hybridization.

Carrier Proteins↗

Cloning and sequencing of the 52K cathepsin D complementary deoxyribonucleic acid of MCF7 breast cancer cells and mapping on chromosome 11.

Two lambda gt11 libraries containing complementary DNAs from human breast cancer MCF7 cells were screened by expression with monoclonal antibodies to the secreted 52K protein and with a 36-mer oligonucleotide derived from the N-terminal amino acid sequence of the secreted 52K protein. Four overlapping clones were sequenced, and found to be extensively homologous to the cathepsin D of normal human kidney, except for 5-point mutations resulting in one amino acid change (Ala to Val) in the profragment of cathepsin D. Northern blot analysis showed the 2.2 kilobase (kb) cathepsin D mRNA to be induced by estradiol in MCF7 cells and produced constitutively at high levels in the estrogen-receptor-negative BT20 cell line. A simple restriction pattern consistent with the restriction map of cathepsin D cDNA was obtained in Southern blot analysis of MCF7 cell DNA. In situ hybridization of the 52K-9 cDNA probe on normal lymphocytes assigned the 52K cathepsin D gene at the extremity of the short arm of chromosome 11, in the p15 band, close to the H-ras gene and in the region whose deletion increases the risk of invasive breast cancer. We conclude that the estrogen induced 52K protein has the same sequence as normal pro-cathepsin D and we propose that the 52K protein correspond to the only pro-cathepsin D expressed in MCF7 cells.

Breast Neoplasms↗