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Biomedical subjects

P Tippett

Publications and source records attributed to P Tippett.

At least 19 recordsLinked to original sources

Molecular analysis of human glycophorin MiIX gene shows a silent segment transfer and untemplated mutation resulting from gene conversion via sequence repeats.

The human glycophorin (HGp) loci that define the red blood cell surface antigens of the MNSs blood group system exhibit considerable allelic variation. Previous studies have identified gene conversion events involving HGpA(alpha) and HGpB(delta) that produced delta-alpha-delta hybrid genes which differ in the location of breakpoints. This report presents the molecular analysis of HGpMilX, the first example of a reverse alpha-delta-alpha hybrid gene that specifies a newly described phenotype of the Miltenberger complex. A novel restriction fragment unique to the HGpMilX gene was detected by Southern blot hybridization. The structure of the genomic region encoding the entire extracellular domain of the MilX protein was determined. Nucleotide sequencing of amplified genomic DNA showed that a silent segment of the HGpB(delta) gene had been transposed to replace the internal part of exon III in the HGpA(alpha) gene, thereby resulting in the formation of the MilX allele with an alpha-delta-alpha configuration. The proximal alpha-delta breakpoint was found to be flanked by a direct repeat of the acceptor splice site, whereas the distal delta-alpha breakpoint was localized to a palindromic region. This DNA rearrangement, with a minimal transfer of 16 templated nucleotides and a single mutation of untemplated adenyl nucleotide, not only created two intraexon hybrid junctions but transactivated the expression of a new stretch of amino acid residues in the MilX protein. Such a segment replacement may have occurred through the directional transfer from one duplex to the other via the mechanism of gene conversion. The occurrence of HGpMilX as another hybrid derived from parts of parent genes underlines the role of the recombinational "hotspot" in the generation of allelic diversity in the glycophorin family.

Amino Acid Sequence

A study on Lu-null families in South Wales.

Red cells of 75614 blood donors in South Wales were screened with anti-Lu(b) revealing 54 Lu(b-) donors of which 15 were also Lu(a-) giving a frequency of 0.0002 for the Lu(a-b-) phenotype in South Wales. The families of 11 Lu-null propositi were investigated to determine which of the three known genetic backgrounds, dominant, recessive or X-linked recessive, was responsible for their Lu-null phenotype. In 10 of the 11 families the Lu-null phenotype was caused by the dominant suppressor gene In(Lu). The first reported family demonstrating independence of In(Lu) and LU, through the Au groups, is described together with the third family demonstrating suppression of P1 by In(Lu). The families showed that In(Lu) is not closely linked to HLA. The genetic background for the 11th propositus was not determined; homozygosity of the silent allele LU is a possible but unproved explanation.

Female

Miltenberger class IX of the MNS blood group system.

Mi.IX is a new phenotype in the Miltenberger series of the MNS blood group system with a frequency of 0.43% in Denmark. Mi.IX red cells are Mur+ but do not express any of the other established Miltenberger determinants. They react with a new antibody, anti-DANE, which defines a determinant present on Mi.IX cells but not on cells of other Miltenberger phenotypes. Four Mi.IX propositi have been found. Their families show that MiIX is inherited with a MS complex (lod score 3.69 at theta = 0.00) which produces a trypsin-resistant M antigen. DANE has been allotted the ISBT number 002032 (MNS32). Serological and immunochemical studies with human and monoclonal antibodies to various determinants on glycophorin A (GPA) suggest that Mi.IX is associated with an aberrant GPA molecule that lacks the trypsin cleavage site at amino-acid residue 39, retains the chymotrypsin cleavage site at residue 34 and has an apparent Mr of about 1,000 less than normal GPA. It is proposed that this Mi.IX molecule has an amino acid and possibly also a glycosylation change in the region of amino-acid residues 35-39.

Adult

The Na+/H+ antiporter: a "melt" polymorphism allows regional mapping to the short arm of chromosome 1.

The Na+/H+ antiporter is a ubiquitous membrane-associated protein that plays an important role in the regulation of intracellular pH. APNH, a gene encoding the antiporter, has been cloned and mapped to the short arm of chromosome 1 by in situ hybridization. Using the polymerase chain reaction, we have amplified a 376 base pair fragment corresponding to the 5' end of APNH. We have detected a polymorphism within this fragment by denaturing gradient gel electrophoresis. Using polymorphisms at other 1p loci (ALPL, the gene for alkaline phosphatase, RH and D1S57), we have been able to map APNH telomeric to D1S57 and close to RH and ALPL by genetic linkage. APNH is a plausible candidate gene for human essential hypertension; the APNH polymorphism combined with a knowledge of its genetic map location allow this candidate to be tested in hypertensive kindreds and sib-pairs.

Alleles

Linkage analysis of two cloned DNA sequences, DXS197 and DXS207, in hypophosphatemic rickets families.

The human X-linked hypophosphatemic rickets gene locus (HYP, formerly HPDR) has been previously localized by linkage analysis to Xp22.31-Xp21.3 and the locus order Xpter-DXS43-HYP-DXS41-Xcen established. Recombination between HYP and these flanking markers is frequently observed and additional markers have been sought. The polymorphic loci DXS197 and DXS207 have been localized to Xpter-Xp11 and Xp22-Xp21, respectively. We have further localized DXS197 to Xpter-Xp21.3 by using a panel of rodent-human hybrid cells and have established the map positions of DXS197 and DXS207 in relation to HYP by linkage studies of hypophosphatemic rickets families. Linkage between DXS197 and the loci DXS43, DXS85, and DXS207 was established with peak lod score values of 6.19, 0 = 0.032; 4.14, 0 = 0.000; and 3.01, 0 = 0.000, respectively. Multilocus linkage analysis mapped the DXS197 and DXS207 loci distal to HYP and demonstrated the locus order Xpter-DXS85-(DXS207, DXS43, DXS197)-HYP-DXS41-Xcen. These additional genetic markers DXS197 and DXS207 will be useful as alternative markers in the genetic counseling of some families.

Animals

Regulator genes affecting red cell antigens.

Several mechanisms may be involved to explain the action of genes that regulate the expression of red cell antigens. When carbohydrate antigens are involved, lack of an enzyme in the biochemical pathway prevents formation of the precursor for the next and following steps of that path, or, alternatively, addition of an extra sugar to the immuno-dominant sugar may produce a new structure in which the expression of the expected antigen is masked. Thinking of genetic rather than biochemical interference, a regulator gene may "switch-off" the action of a structural gene, and this mechanism could involve the upset of repressor and/or derepressor genes. The mechanisms for the regulator genes described in this article are unknown. The effect of XGR is limited to red cells: the expression of 12E7 antigen on other tissues and cells, other than red cells, is invariable. The reported effects of XOr and XQ are for red cells, but it is unlikely that other cells and tissues have been studied intensively; propositi with these regulator genes are much rarer than people informative for XGR and In(Lu). The effects of In(Lu) are not limited to red cells but have been shown to regulate the expression of p80 on some white cells. Most of the abnormalities in Rhnull cells appear to be associated with the lack of the Rh antigens and lack of Rh proteins. The hypothesis of a functional complex involving Rh, lack of which affects incorporation of apparently unrelated proteins into the red cell membrane, is an attractive idea. Studies of the similar phenotype, Rhmod, suggest that some Rh specificities can be present in cells that appear to be as abnormal, serologically and morphologically, as Rhnull cells. Perhaps some polypeptides are functionally more important than others and perhaps all polypeptides required for the functional efficiency of the Rh complex have not yet been identified. Lack of Lutheran antigens is not always accompanied by modification of other red cell antigens. As suggested by Telen and green, if In(Lu) acts via a single mechanism, then that mechanism differs from that of XS2. Certainly the mechanisms of In(Lu) and XS2 differ in their action on the expression of CD44 or p80 antigens. The red cell surface is well charted territory, familiar to serologists, immunologists, biochemists, and geneticists. It still provides an excellent model for study of cell surface antigens and for the regulator genes described above that modify expression of some red cell antigens.(ABSTRACT TRUNCATED AT 400 WORDS)

Antigens, Surface

Murine monoclonal antibodies against a unique determinant of erythrocytes, related to Rh and U antigens: expression on normal and malignant erythrocyte precursors and Rhnull red cells.

Three murine monoclonal antibodies (Mabs) MB-2D10, LA-18.18 and LA-23.40 were prepared. They reacted with red cells of all common and most rare blood-group phenotypes, with the exception of those of the RhnullU negative and RhmodU negative phenotypes. So far, only a single example of an alloantibody (Duclos or anti-Rh38) of a similar specificity has been found. Serological studies indicated that the Mabs were probably not directed against an antigenic determinant of Rh polypeptides, the LWab glycoprotein or glycophorin B, all structures absent from or aberrantly expressed on Rhnull red cells. The antigen was found to be erythrocyte-specific, and was also present on pro-erythroblasts, erythroblasts and malignant erythroblastoid cells but not on erythroid progenitors in the bone marrow. The Mabs were found to block each other in an immune rosette method and are thus probably directed against the same epitope or against neighbouring epitopes on the same structure. In immunochemical studies, MB-2D10 precipitated the 30-32 kDa Rh polypeptides from red cell membranes and a protein or proteins which formed diffuse and overlapping bands in SDS-polyacrylamide gel electrophoresis, with Mrs of 40-200 kDa (probably the Rh-related glycoproteins). Under certain experimental conditions glycophorin B appeared to be coprecipitated. The 2D10 structure, detected by the Mabs, seems to be part of a complex of proteins and/or glycoproteins, which includes Rh polypeptides, the LWab glycoprotein and glycoproteins recognized by various Mabs with Rh-related specificities. In the red cell membrane, the complex may be associated with glycophorin B.

Animals

Rh immunization by the partial D antigen of category DVa.

Reported here is the first example of a partial D antigen stimulating the production of anti-D: stimulation was of fetal origin. During her second pregnancy, anti-D developed in the serum of a D-negative mother who had received Rh immunoglobulin after the birth of her first D-positive child. Her second baby had moderate neonatal jaundice and was successfully treated by phototherapy. Subsequently the red cells of the father and of the first child were shown to carry a partial D antigen of category DVa type. Six available batches of Rh immunoglobulin reacted with DVa cells.

Adult

The red cell antigen JAL in the Swiss population: family studies showing that JAL is an Rh antigen (RH48).

The JAL antigen was found to have an overall frequency of 0.004% in the Swiss population and 0.06% in French-speaking Swiss. Family studies of 5 JAL+ individuals have shown that the JAL antigen is not part of the ABO, MNSs, Fy, Jk and Co blood group systems, or the Se system, nor is it X- or Y-linked. JAL is encoded by the RH locus or by a very closely linked locus. The number RH48 (4.48) has been assigned for JAL by the International Society of Blood Transfusion Working Party on Terminology for Red Cell Surface Antigens.

Female

Demonstration of seven epitopes on the Rh antigen D using human monoclonal anti-D antibodies and red cells from D categories.

The agglutination patterns have been established for the reaction between 29 monoclonal antibodies with specificity for the Rh antigen D and red cells of D categories IIIa, IIIc, IVa, IVb, Va, Vc, VI and VII, which are known to lack certain epitopes on the D polypeptide. Six different agglutination patterns were recognized and interpreted to indicate the recognition of seven different epitopes. These epitopes are termed epD1 through to epD7. The separate existence of epD6 and epD7 is deduced from previous observations in inhibition studies using purified 125I-labelled antibodies; they cannot yet be distinguished in agglutination tests. The number of epitopes lacking from cells of each category varied between two and five. As all the antibodies agglutinated cells of categories IIIa, IIIc and VII and cells of categories II, IIIb and Vb were not available, it is probable that there are epitopes other than the seven presently recognized. Eighteen out of the 29 antibodies which were examined recognized epitopes epD6/7 and it is suggested either that antibodies recognizing these epitopes predominate in polyclonal anti-D sera, or that the lymphocytes producing these antibodies are preferentially selected during establishment of cell lines.

Antibodies, Monoclonal

Anti-Au: the antithetical antibody to anti-Au.

Anti-Au, the first example of the antithetical antibody to anti-Au, was identified in the serum of a blood donor who had been transfused 16 years previously. Au has a gene frequency of 0.4326 in an American black population and 0.2994 in a southern English donor population. The expression of Au is suppressed by In(Lu). XS2 also suppresses Auberger antigen expression.

Black People