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Biomedical subjects

A Weiss

Publications and source records attributed to A Weiss.

At least 469 records · Page 26Linked to original sources

Noninvasive external pacing in the newborn.

Complete atrioventricular block in the newborn occasionally requires emergency intervention when the heart rate is too low to provide adequate cardiac output. While medications are frequently ineffective, emergent implantation of a pacemaker is not always feasible and carries a significant morbidity. We report two cases of complete atrioventricular block in newborns treated immediately after birth with an external noninvasive pacemaker system.

Cardiac Pacing, Artificial↗

Reconstitution of an active surface T3/T-cell antigen receptor by DNA transfer.

We have introduced a full-length complementary DNA of the T-cell antigen receptor beta-chain into a mutant human T-cell line that lacked a complete beta-chain messenger RNA, had a diminished level of alpha-chain transcript and did not express surface T3- or antigen receptor. Expression of the transfected beta-chain led to a normal level of alpha-chain transcript and a structurally and functionally active T3 T-cell antigen receptor complex on the cell surface.

Cell Line↗

Presence of Ti (WT31) negative T lymphocytes in normal blood and thymus.

The antigen receptor expressed on most T lymphocytes is a disulphide-linked heterodimer (Ti) that is composed of alpha-chain and beta-chain subunits. On the surface of human T lymphocytes, Ti is non-covalently associated with three invariant proteins, designated CD3-gamma, -delta, and -epsilon. It has been suggested that Ti is obligatory for CD3 expression. But a T leukaemia cell line, IL-2 (interleukin 2) dependent T-cell clones established from fetal blood and IL-2 dependent cell lines established from immunodeficiency patients with bare lymphocyte syndrome and ectodermal dysplasia syndrome have recently been shown to express CD3, but not Ti (detected due to monoclonal antibody WT31). These lymphocytes may express the product of the T-cell antigen receptor gamma (TCR-gamma) gene, rather than the alpha/beta heterodimer, in association with CD3. Preliminary studies suggested that T cells expressing CD3 but lacking Ti are present in low frequency in normal lymphoid tissues. Here we show that in normal blood and thymus CD3+, WT31-T cells express neither CD4 nor CD8. The low frequency (less than 0.2-0.9% of total thymocytes) of CD3+, WT31- cells in the thymus suggests that this population does not represent a major stage of thymic development and may be a distinct lineage of T cells.

Cell Differentiation↗

Specific antigen-Ia activation of transfected human T cells expressing murine Ti alpha beta-human T3 receptor complexes.

The genes encoding the alpha and beta chains of the T-cell receptor (Ti) of an antigen-specific, Ia-restricted murine T-cell hybridoma were introduced into T3-positive or T3-negative human T cells. The resultant transfectants express either mouse-human or mouse-mouse Ti alpha beta molecules functionally associated with the human T3 complex. Only the complete murine Ti alpha beta dimer mediates specific functional corecognition of the appropriate antigen-Ia pair.

Animals↗

Characterization of an expressed CD3-associated Ti gamma-chain reveals C gamma domain polymorphism.

The majority of human T cells express an antigen receptor consisting of a disulphide-linked heterodimer (Ti) of relative molecular mass 80,000-90,000 (Mr 80-90K) which is noncovalently associated with a set of at least three proteins of Mr 20-28K termed CD3 (Leu4, T3). Whereas both chains of Ti, an acidic alpha-chain of Mr 48-54K and a more basic beta-chain of Mr 40-44K, contain variable and constant region domains, the component peptides of CD3 are invariant. Several laboratories have more recently reported the expression of CD3 in association with a novel protein. On the surface of long-term T-cell lines and one thymocyte clone this novel structure consists of a 40K protein noncovalently linked to a 55 or 62K protein identified as the protein product of the Ti gamma-chain gene, a T-cell specific gene which like the Ti alpha- and Ti beta-chain genes undergoes rearrangement of variable (V) and joining (J) region gene segments. On the human T-cell leukaemic line PEER we have detected only a single 55K glycoprotein associated with CD3. We here demonstrate that an anti-Ti gamma-peptide antiserum reacts with the 55K CD3-associated protein on PEER. Most previously described human Ti gamma-chain complementary DNA clones encode the products of non-functional rearrangements. One of the Ti gamma cDNAs isolated from PEER, however, represents a functional rearrangement reported for the first time in a cell which expresses a Ti gamma-chain protein product on the cell surface. Interestingly, a 48-base-pair (bp) sequence in the constant (C) region domain of this functional Ti gamma-chain cDNA is triplicated in PEER and duplicated in other cDNAs isolated from PEER and other cell lines.

Antigens, Differentiation, T-Lymphocyte↗

Thy-1-mediated T-cell activation requires co-expression of CD3/Ti complex.

In addition to monoclonal antibodies against the CD3 (T3)-T-cell antigen receptor (CD3/Ti) complex, several other monoclonals directed towards distinct cell surface structures on human (CD2 (T11) and Tp44) and murine (Thy-1, TAP, and Ly-6) T lymphocytes are capable of activating T cells. It has been proposed that such structures may function as alternative pathways of stimulation. To examine directly whether any relationship exists between Thy-1-dependent activation phenomena and T-cell activation mediated through the CD3/Ti complex, we have transfected several CD3/Ti- variants of the human T-cell line Jurkat with the murine Thy-1.2 gene. Our data indicate that in CD3/Ti-, Thy-1.2+ transfectants, monoclonal antibodies against Thy-1.2 can induce a rise in cytoplasmic free calcium ([Ca2+]i), but fail to stimulate interleukin-2 (IL-2) production. The only defect in these variant cell lines responsible for the inability to produce IL-2 in response to Thy-1 stimulation was in the expression of the CD3/Ti complex, because replacement of defective Ti alpha- or beta-chain genes reconstributed both surface expression of CD3/Ti and responsiveness to Thy-1 in the IL-2 production assay.

Antigen-Antibody Complex↗

Expression and function of the CD3-antigen receptor on murine CD4+8+ thymocytes.

Mature T cells arise from progenitor cells by a complex and poorly understood process of differentiation in the thymus. Thymocytes can be divided into four major compartments on the basis of surface expression of the murine equivalents of CD8 (Lyt-2) and CD4 (L3T4) (refs 1,2). Functionally mature thymocytes express only CD4 or CD8. The CD4-8- subset contains progenitor cells capable of giving rise to all the phenotypic and functional classes of T cells on adoptive transfer. The function of the major population, the CD4+8+ cells, which carry both the CD4 and CD8 antigens, in thymic differentiation is controversial. It has been variously proposed that they represent terminally differentiated cells which die in the thymus or that they represent an intermediate stage and can differentiate into functionally and phenotypically mature single positive T cells. The CD3-antigen receptor complex is probably important in thymic differentiation. The receptor has two functions: recognition and transmembrane signalling. To help clarify the function of CD4+8+ thymocytes in thymic differentiation, the expression and function of the antigen receptor complex on these cells should be determined. We show here that most CD4+8+ thymocytes express CD3 which functions in transmembrane signalling. The consequences of this signalling differ from those in mature T cells, however, in that the CD4+8+ cells do not secrete IL-2, express IL-2 receptor, or proliferate.

Animals↗

Identification and sequence of a fourth human T cell antigen receptor chain.

Thymus-derived lymphocytes (T cells) use clonally distributed antigen receptors to recognize peptide fragments associated with products of the major histocompatibility complex (MHC) (refs 1-4). On most murine and human T cells the T cell receptor (TCR) is composed of disulphide-linked alpha and beta chains (TCR alpha/beta), each of which contains constant and variable domains, and which are associated with the invariant chains of the CD3 complex. It has been demonstrated, however, that a distinct CD3-associated TCR is expressed on a small subset of T cells or immature thymocytes which fail to express either CD4 or CD8 (refs 7-14), the molecules associated with class II or class I MHC antigen recognition. Instead of TCR alpha/beta, these cells express heterodimers of gamma and delta chains (TRC gamma/delta). The genes encoding alpha, beta, and gamma have been isolated and characterized. A new murine T cell receptor (Cx) gene which undergoes rearrangement and expression early during T cell ontogeny has recently been identified 5' of the murine J alpha C alpha gene locus. Here we isolate and sequence the homologous transcript from PEER, a human cell line that expresses a TCR gamma/delta, and show that it encodes a protein with characteristic V, D, J, and C segments. Using probes derived from this transcript, we have shown that both PEER and MOLT-13, another TCR gamma/delta-expressing cell line, rearrange this locus and express two sizes of transcripts differing in the 3' untranslated region. Using a synthetic peptide derived from the deduced C region sequence, we have prepared antisera that precipitates the delta chain of the TCR from both PEER and MOLT-13, thus demonstrating that Cx and its human homologue code for the delta chain of the TCR.

Amino Acid Sequence↗

Delta is the Cx-gene product in the gamma/delta antigen receptor of dendritic epidermal cells.

Most T cells bear an antigen receptor that is a protein of a disulphide-linked heterodimer composed of an alpha chain and a beta chain associated with the non-polymorphic CD3 (T3) complex. A small subpopulation of thymic and peripheral T cells, as well as Thy-1+dendritic epidermal cells (dEC), express an alternative CD3-associated dimeric receptor composed of the product of the T-cell antigen receptor (TCR) gamma gene and a fourth chain, designated delta. Recently a new murine TCR constant-region gene, designated Cx, has been cloned and proposed as a candidate for the C delta gene. We have previously demonstrated that murine Thy-1+ dEC cell lines express a CD3-associated disulphide-linked heterodimer composed of a relative molecular mass Mr 41,000 (41K) gamma chain and a 50K delta chain. We have further analysed the receptor of one of these cloned dEC lines, 7-17.1, by endoglycosidase treatment of the isolated gamma and delta chains. The gamma chain was found to contain two N-linked oligosaccharide residues, consistent with the expression of a chain encoded by the V gamma 3 and C gamma 1 gene segments. The delta chain contains at least three N-linked oligosaccharides and has a core size of 38K. Northern blot analysis indicated the presence of abundant Cx messenger RNA in 7-17.1 cells. Immunoprecipitation with two antisera to peptides comprising distinct regions of the Cx sequence indicates that the delta chain is encoded by the Cx gene.

Amino Acid Sequence↗

[Vascular injuries in acetabular implantation and acetabular replacement surgery--case report, literature review and anatomical study].

Severe intraoperative bleeding during revision hip arthroplasty in one of our patients was the motive of the work reported here. A review of the literature and an anatomical cadaver study were carried out. The distance between the acetabular fossa and the intrapelvic blood vessels was measured in 15 specimens. The risk for the obturator artery is particularly high. The distance between this vessel and the acetabulum is 2 mm (1-5 mm) only. An account of previous complications and the vascular anatomy as pointed out in our report may help to prevent severe bleeding complications in hip surgery.

Acetabulum↗