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C Devaux

Publications and source records attributed to C Devaux.

At least 127 records · Page 7Linked to original sources

Shared idiotope on monoclonal anti-Ia.7 antibodies reactive with determinants in a structural domain of the I-E molecules.

In previous studies, heterologous anti-idiotypic (anti-Id) antisera against the C3H.SW 14-4-4S or the A.TH 41.A anti-Ia.7 monoclonal antibodies (mAb) were shown to identify an interstrain cross-reactive idiotypic specificity (IdX.Ia.7) expressed on monoclonal or conventional anti-Ia.7 alloantibodies. The objective of the present investigation was to characterize further this IdX at the idiotopic level. To this end, 11 hybridomas producing IgG1, IgG2a, or IgM anti-Id mAb were derived from a rat immunized with a mixture of 10 A.TH or A.BY anti-Ia.7 mAb. The specificity of the latter anti-Id mAb was determined by direct Id binding radioimmunoassay (RIA) with the use of a panel of 52 anti-Ia mAb derived from hybridomas produced in various inbred mouse strains. These rat anti-Id mAb recognized idiotopes expressed on i) all anti-Ia.7 mAb against determinants in the topographic domain I of the I-Ek molecule but not on 18 other anti-I-Ek mAb directed at epitopes in domains II or III; ii) three of 19 anti-I-Ak mAb; and iii) one A.TL-derived anti-I-As mAb. Competitive Id binding assays revealed that among the 14 IdX+ anti-Ia.7 mAb, one (81.B) was bound to a lesser extent by various rat anti-Id mAb, suggesting that heterogeneity probably exists in this antibody family. By contrast, two isologous (B10.S(7R)) anti-Id mAb to the IdX.Ia.7+ mAb 41.A displayed a specificity restricted to 41.A individual idiotopes (IdI). Rat anti-IdX.Ia.7 and mouse anti-41.A IdI mAb inhibited the binding of 125I-labeled mAb 41.A to CBA spleen cells. These two sets of mAb bound in a noncompetitive fashion to mAb 41.A-coated plates, indicating that their corresponding public or private idiotopes were spatially distinct. These data may have implications for in vivo manipulations of anti-Ia immune responses.

Animals↗

Structural studies of adenovirus type 2 by neutron and X-ray scattering.

Small-angle neutron and X-ray scattering have been used to investigate various aspects of the structural organization of adenovirus type 2. Neutron scattering allows the determination of the radial distribution of DNA and protein, which because of the highly icosahedral form of the virus allows it to be described in terms of three icosahedral shells. X-ray scattering shows that the distance between the major coat proteins (hexons) in the capsid is 100 +/- A. Evidence was also observed for an organization in the nucleoprotein core that gives rise to a maximum in the X-ray scattering at 1/29 A-1.

Adenoviruses, Human↗

Native molecular weight of adenovirus proteins: on the oligomeric structure of the fiber.

Fluorescamine-modification of amino groups was used to eliminate the influence of basic charge on the final migration position of protein's in alkaline pH polyacrylamide gradient gel electrophoresis. As applied to adenovirus structural components, this type of analysis suggested the fiber to be composed of three identical subunits. The trimeric nature of both penton base and fiber therefore displaces the problem of symmetry mismatching to penton base and surrounding hexons at each vertex of the adenovirus icosahedron.

Adenoviridae↗

Murine H-2Dd-reactive monoclonal antibodies recognize shared antigenic determinant(s) on human HLA-B7 or HLA-B27 molecules or both.

We have evaluated the serological relationships between the murine H-2Dd and human HLA molecules using four H-2Dd-reactive monoclonal antibodies (mAbs) produced in the A.BY (KbIbDb) anti-A.TL (KsIkDd) combination. In the mouse, these reagents exhibited three distinct reactivity patterns: Dd, Ks, and H-2u (mAb 81.L); Dd, H-2p, and H-2u (mAb 81.R); and Dd, Kd, H-2p, H-2u, and H-2v (mAbs 97.G and 97.H). Sequential immunoprecipitation and cross-competitive mAb binding experiments revealed that these mAbs recognized determinants in two spatially distinct polymorphic domains on the H-2Dd molecule of B10.A(5R) cells (defined by mAbs 81.L and 81.R, 97.H, and 97.G, respectively). MAbs 81.R, 97.G, and 97.H, but not 81.L, also defined an HLA-linked polymorphism in the human, the main characteristics of which can be summarized as follows: (i) on B lymphoblastoid cell lines, mAbs 81.R and 97.H bound to cells expressing the HLA-B7, HL-B27 or Bw40 cross-reacting specificities, (ii) on peripheral blood lymphocyte (PBL) panel mAb 81.R exerted C dependent cytotoxicity to 118 of 400 cells tested, including almost all HLA-B7 or HLA-B27 cells or both (r: 0.952), (iii) the expression of the 81.R cross-reacting determinant segregated in an informative family with the parental haplotype carrying the HLA-B7 allele, and (iv) mAbs 81.R, 97.G, and 97.H recognized topologically related determinants on the same class I molecule(s) of the human B lymphoblastoid cells JY (HLA-A2,2, -B7,7). These data support the view that some, but not all H-2Dd allotopes have been conserved throughout evolution and are associated in the human with the HLA-B7, -B27 cross-reacting specificities.

Animals↗

Analysis of the repertoire of anti-idiotypic B-cell responses to self-I-Ak- or -I-Ek-reactive monoclonal antibodies in A.TL mice.

Twenty anti-idiotypic antisera (anti-Ids) were produced in A.TL mice to self-I-Ak or -I-Ek-reactive monoclonal antibodies (mAbs), constructed in the A.TH anti-A.TL combination. The reactivity of these anti-Ids was examined in a panel of 31 anti-Iak A.TH mAbs, using direct idiotype binding, cross-competitive inhibition of idiotype binding, and isoelectrofocusing (IEF) assays. Among 13 anti-Ids produced against anti-I-Ak mAbs, one only recognized individual idiotypic specificities (IdIs) on its corresponding mAb, while the 12 others identified homologous IdIs and recurrent idiotypic specificities also expressed on heterologous anti-I-Ak and/or I-Ek mAbs. Two sets of major cross-reactive idiotypes (IdXs) were characterized on two groups of mAbs recognizing public Ia.1, I-Ak,f,u and r) or private (Ia.2, I-Ak) determinants clustered in two spatially distinct epitope regions of the I-Ak molecule, respectively. By contrast, most (5/7) of the anti-Ids raised against mAbs recognizing polymorphic or monomorphic (Ia.7-like) I-Ek determinants displayed specificity apparently restricted to their corresponding mAb IdIs. This finding contrasted with the previous characterization, using xenogeneic anti-idiotypic reagents, of an interstrain IdX expressed on all mAbs defining Ia.7-like determinants in the IEk epitope group I. These data indicate that A.TL mice can readily develop anti-idiotypic responses towards self Ia-reactive mAb minor idiotypes (IdIs) and that recognition of anti-Iak mAb IdXs in such mice is preferentially observed when anti-I-Ak mAbs are used as immunogens.

Animals↗

Sharing of Ia antigens between species. IV. Interspecies cross-reactivity of monoclonal antibodies directed against polymorphic mouse Ia determinants.

The specificity of interspecies Ia cross-reactions has been analyzed by testing a panel of monoclonal antibodies (mAb) to mouse I-E and I-A antigens for reactivity with pig Ia antigens. Our earlier studies showed that mouse anti-I-E alloantisera recognized common determinants on Ia antigens of other species, whereas anti-I-A alloantisera showed much more limited cross-reactivity. These results were confirmed using a panel of 17 anti-I-E mAb, 10 of which were cytotoxic to pig cells. 2D gel electrophoretic analyses of precipitates with these mAb of 35S-labeled, NP40 solubilized pig cells revealed a limited set of protein spots that appeared to be identical to the subset of pig Ia antigens precipitated by A.TH anti-A.TL alloantiserum. Because the cross-reactive mouse sera were produced in mouse strains that do not express an I-E molecule (H-2b and H-2s), it was anticipated that the cross-reacting antibodies would be reactive with the monomorphic determinant of the I-E molecule, Ia.7. However, comparison of the reactivity of these mAb with pig cells and mouse cells revealed that the cross-reactivity on pig cells correlated not with Ia.7 but rather with detection of epitope(s) of the I-E molecule associated with inter-strain polymorphism. Anti-I-A cross-reactions were also detected, but were weaker and more limited. These findings may have implications for the evolution of Ia antigens in mammalian species.

Animals↗

Molecular specificity of a monoclonal anti-Ik alloantibody identifying a highly conserved determinant on mouse I-A, I-E and human DR antigens.

We have investigated, using serological and biochemical assays, the specificity of an A.TH anti-A.TL-derived monoclonal antibody (mAb), designated 40.B, directed at a highly conserved antigenic determinant expressed on the majority of murine and human MHC class II antigens. In the mouse, mAb 40.B defines a new specificity expressed on the Ia products of the H-2 haplotypes K, d, b, v, r, p, u, j and w3. Analysis of its reactivity with H-2 recombinant strains and the results of the competitive binding inhibition of 125I-labeled mAb 40.B to B10.BR cells with I-Ak and I-Ek specific mAb suggested recognition of a shared Ia determinant expressed on both I-Ak and I-Ek molecules. This has been confirmed by sequential immunoprecipitation studies which demonstrated the specificity of mAb 40.B for the Ak beta Ak alpha, Ab beta Ab alpha, Ad beta Ad alpha, Ek beta Ek alpha, Es beta Ek beta and Ed beta Ed alpha dimers. In humans, this mAb bound to and immunoprecipitated HLA-D/DR molecules expressed on lymphoblastoid cell lines carrying the MT1 and MT2 supertypic specificities. The possible implications of these findings with regard to an evolutionary model of MHC class II antigens are discussed.

Animals↗

Biochemical and immunological characterization of ectopic tumoral renin.

Biochemical and immunological characteristics of renin secreted by two malignant renin-secreting tumors [pulmonary (PT) and paraovarian (POT)] were studied. They both contain inactive renin (IR), as renin activity of tumoral extracts was able to be increased after acid activation or trypsin treatment (10.1 to 20.8 Goldblatt units/g tissue for PT and 1.4 to 3.71 for POT). Renin activity after activation reached the value obtained by direct RIA of human renin (23 and 3.4, respectively), as both forms are recognized by renin antiserum. Both enzymatic activities could be completely inhibited by renin antiserum. Displacement curves for the two tumoral renins paralleled the MRC renin in the direct RIA. After chromatography on affigel blue, active renin was not bound to the gel, and inactive renin eluted only with 1 M NaCl. On pepstatin A Sepharose and CBL-pepstatin Sepharose (an N-modified-pepstatin), a separation of the two forms of pulmonary renin was obtained; inactive renin eluted with breakthrough proteins, whereas active renin was strongly bound to the gel. After this affinity chromatography, the molecular weights of inactive and active renin, determined on Ultrogel, were very close (46,000 and 42,500). We conclude that 1) ectopic renin in these cases in similar to the renal enzyme; 2) renin can be secreted in an inactive form, supporting the hypothesis of an inactive initial state of renin; and 3) molecular weight differences between the two forms are very slight.

Adenocarcinoma↗

Human chorionic cells in primary culture: a model for renin biosynthesis.

Amnion and chorion cells from human fetal membranes have been cultured. Chorionic cells secrete renin whereas amnionic cells do not. Renin is secreted by chorionic cells as an inactive form that can be activated by trypsin treatment or acid dialysis. The antigenic and enzymatic properties of activated chorionic renin and kidney renin are similar. Incorporation of [35S]methionine in the culture demonstrates that chorionic renin is secreted as a high molecular weight form, 54K. This 54K inactive renin could represent the proenzyme.

Amnion↗

In vitro biosynthesis of human renin: evidence for a high molecular weight form.

Primary cultures of human chorionic cells have been developed. They secrete an inactive form of renin which can be activated by trypsin treatment. In biosynthesis experiments forming labelled renin the inactive renin exhibited a molecular weight (54 KD) higher than active kidney renin (44 KD). The same high molecular weight renin was obtained during biosynthesis experiments performed on tissue slices of human infarcted kidney. Therefore it is postulated that 54 KD biosynthetized renin might be the precursor of active renin.

Cells, Cultured↗