Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UNIPROT:O95477 (membrane-bound)
29,236 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Lymphocytes from 20 patients with chronic lymphocytic leukemia (CLL) were studied for membrane staining by direct immunofluorescence by employing anti-F(ab')2, anti-VHI, anti-VHII, anti-VHIII subgroup-specific antisera, as well as light chain-specific antisera. Some lymphocyte preparations were also studied in indirect immunofluorescence with an antiserum raised against a fragment (VH) corresponding to the variable region of the heavy chain of a human IgG3 myeloma protein (Kup). Lymphocytes from each CLL patient demonstrated a restriction of VH subgroups expressed on the cell membrane; six were restricted to the VHI subgroup, seven to VHII, and seven to the VHIII subgroup. This restriction gave further evidence for monoclonality of the membrane-bound Ig and the leukemic cell proliferation. Antiserum to the VH fragment stained closely similar percentages of CLL lymphocytes to that obtained with anti-F(ab')2 antiserum. Furthermore, double staining revealed that the same cells were stained with anti-VH antiserum as were stained with anti-F(ab')2 antiserum, i.e., only the B lymphocytes.
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PMID:A study of the variable heavy chain (VH) region of membrane-bound Ig on human chronic leukemic lymphocytes. 40 55

A procedure is described for the isolation of highly purified heavy-chain immunoglobulin mRNAs from a variety of mouse plasmacytomas (IgA, IgG, and IgM producers). The use of fresh tissue and the rapid isolation and direct extraction of membrane-bound polyribosomes were found to be essential in obtaining large quantities of undegraded heavy-chain mRNAs. The individual mRNAs were purified by two cycles of oligo(dT)-cellulose chromatography, sodium dodecyl sulfate--sucrose gradient centrifugation, and electrophoresis on 98% formamide containing polyacrylamide gels. When added to a cell-free protein-synthesizing system from wheat germ, the MPC-11 gamma2b and H2020 alpha heavy-chain mRNAs efficiently directed the synthesis of a predominant product of 55 000 molecular weight, while the synthesis of a 70 000 dalton protein in addition to other lower molecular weight polypeptides were observed with MOPC 3741 mu mRNA. All of these proteins were immunoprecipitable with class-specific heavy-chain antisera, and in the case of the gamma2b in vitro products good correspondence in a comparative trypsin--chymotrypsin fingerpring with in vivo labeled gamma2b heavy chain was observed. The gamma2b and a alpha heavy-chain mRNAs possessed a chain length of approximately 1800 nucleotides and the mu mRNA a size of approximately 2150 nucleotides when examined under stringent denaturation conditions. The purities of the alpha, gamma2b, and mu mRNAs were estimated to be 60--80%, 50--70%, and 50--83%, respectively, on the basis of their hybridization rates with cDNA probes in comparison to mRNA standards of known complexity. Heavy-chain mRNAs of the same class isolated from different mouse strains (Balb/C or NZB) display no detectable sequence differences in cross hybridization experiments, even though the cDNA--mRNA hybrids are submitted to stringent S1 nuclease digestion. These results indicate that allotypic determinants represent only a minor fraction of the heavy-chain constant region sequence in the mouse.
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PMID:Isolation, purification, and properties of mouse heavy-chain immunoglobulin mRNAs. 41 5

The mb-1 gene encodes a protein associated with membrane-bound immunoglobulins (mIg) and it has been suggested that it may play a role in signal transduction. Using a murine probe, we cloned a human complementary DNA homologous to the murine mb-1 sequence. Its complete sequence is in full agreement with a recently published human cDNA sequence but differs from a previously reported partial sequence. We studied mb-1 expression in human cells at various maturation stages. Large amounts of a single 1.4 kb transcript were detectable in B cell lines carrying mIg of the mu, gamma, alpha 1 or alpha 2 isotype. The mb-1 mRNA was also expressed in pre-B cells and in cells expressing truncated membrane mu chains devoid of associated light chains. Only trace amounts of mb-1 mRNA were found in tissue samples containing numerous plasma cells, while no mRNA was detected in several plasmacytoma cell lines, indicating that expression is shut down in plasma cells. No signal was found in T cells or in non-lymphoid tissues. Altogether, these results show that the human mb-1 gene is expressed in pre-B cells and B lymphocytes, regardless of the isotype of the mIg heavy chain and is no longer expressed in plasma cells.
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PMID:Structure and expression of the mb-1 transcript in human lymphoid cells. 139 95

The familial occurrence of chronic lymphocytic leukemia was studied using morphologic, immunophenotypic, cytogenetic, and immunoglobulin gene rearrangement analyses. Three of six siblings developed chronic lymphocytic leukemia. One (patient 1) died 9 years after the diagnosis of chronic lymphocytic leukemia at age 67 years. The other two patients, ages 64 and 68 years (patients 2 and 3, respectively), are alive after chronic lymphocytic leukemia was diagnosed 11 and 4 years ago, respectively. Using the Rye classification, patient 2 and patient 3 had Stage I and Stage O disease, respectively. In contrast, patient 1 had Stage IV disease. The bone marrow of patient 2 was 90% cellular, with sheets of mature lymphocytes, and that of patient 3 was 70% cellular, with a nodular pattern of similar cells. Both patients 2 and 3 had normal karyotypes. Immunophenotyping studies revealed that patient 3 had an expanded population of B cells with minimal to no detectable expression of surface immunoglobulins and membrane-bound light chains. In contrast, the B-cell population of patient 2 expressed immunoglobulins M, D, and Kappa light chains. Gene rearrangement studies performed on these two patients revealed different but distinct patterns of heavy chain rearrangement. This may represent an evolution of two different clones of chronic lymphocytic leukemia in this family.
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PMID:A clinicopathologic study of familial chronic lymphocytic leukemia. 154 86

The major histocompatibility complex (MHC) class I antigens contain a light chain, beta 2-microglobulin, non-covalently associated to the transmembrane heavy alpha-chain carrying the allotypic determinants. Since the C1q complement component is known to associate with beta 2-microglobulin, and we recently found that activated C1s complement was capable of cleaving beta 2-microglobulin, we decided to investigate the proteolytic activity of C1 complement towards the heavy chain of class I antigens. Our results demonstrate that human C1s complement cleaves the heavy chain of human class I antigens into at least two fragments, with apparent molecular weights of 22,000 and 24,000 g/mol on sodium dodecyl sulphate-polyacrylamide gel electrophoresis (SDS-PAGE), under both reducing and non-reducing conditions. The cleavage of the heavy chain is inhibited by the presence of C1 esterase inhibitor. The molecular weights of the fragments are in agreement with the cleavage located in the area between the disulphide loops of the alpha 2-and alpha 3-domains of the heavy chain. In addition human C1s complement is able to cleave H-2 antigens from mouse in a similar fashion but not rat MHC class I antigen or mouse MHC class II antigen (I-Ad). Mouse MHC class I antigen-specific determinants could also be detected in supernatant from mouse spleen cells incubated with C1r and C1s. These results indicate the presence in the body fluids of a non-membrane-bound soluble form of the alpha 1-and alpha 2-domains which represent the binding site for antigenic peptides.
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PMID:Proteolysis of the heavy chain of major histocompatibility complex class I antigens by complement component C1s. 168 90

To analyze in vivo the induction of B cell tolerance against a T cell surface antigen, we generated transgenic mice expressing an anti-CD8.2 mu heavy chain gene. We show that self-specific B cells are efficiently tolerized if they express the membrane-bound form of the transgenic mu chain on their surface but that they can escape tolerization if they express only the secreted form. In the latter, we find an enhanced expression of anti-CD8.2 antibodies after polyclonal B cell activation. As a result, transgenic anti-CD8.2 antibodies bind to the CD8+ T cells but they did not induce their elimination. Furthermore, we observed the preferential expression of a limited subset of endogenous light chains with the transgenic mu chain. This suggests a positive or negative selection for particular heavy and light chain combinations in B lymphocytes.
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PMID:B cell tolerance in mice transgenic for anti-CD8 immunoglobulin mu chain. 174 76

The serine proteinase alpha chymotrypsin from bovine pancreas (CT) is known to expose fibrinogen binding sites on the surface of human platelets in the absence of cell activation and granular secretion. This is accompanied by the appearance of membrane-bound chymotryptic fragments of both glycoprotein (GP) IIb and GPIIIa, the two subunits of the platelet fibrinogen receptor, the GPIIb-IIIa complex. However, no clear relationship between discrete proteolytic event(s) within GPIIb-IIIa and fibrinogen-binding-site expression has yet been established. We have now evaluated the proteolysis of GPIIb-IIIa by CT by Western blot analyses using a panel of polyclonal and monoclonal antibodies against GPIIb or GPIIIa. The different proteolytic events were then correlated with the kinetics of the expression of active fibrinogen binding sites on platelets, as measured through the binding of 125I-labelled purified fibrinogen and to the capacity of CT-treated platelets to aggregate. Treatment of platelets with CT at 22 degrees C resulted in the expression of fibrinogen binding sites prior to cleavage of GPIIIa (Mr approximately 90,000) into a previously described, major membrane-bound fragment with Mr 60,000. In contrast, fibrinogen receptor expression closely paralleled a proteolytic cleavage at the carboxy terminus of the GPIIb heavy chain (Mr approximately 120,000), which was converted into a faster migrating species with Mr approximately 115,000). This proteolysis resulted in the release of a soluble peptide with an expected molecular mass of less than 3.7 kDa. Quantitation of this peptide using a competitive immunoenzymatic assay, confirmed that its release from the platelet surface correlated with the expression of fibrinogen binding sites and aggregability. When platelets were exposed to CT at 37 degrees C, a prompt increase in fibrinogen binding sites and platelet aggregability was observed, whereas the GPIIb heavy chain was rapidly converted into the carboxy-terminal-cleaved form. However, incubation at 37 degrees C for longer than 10 min resulted in extensive and simultaneous degradation of both the GPIIb heavy and light chains and of GPIIIa, with the latter being converted into the 60-kDa fragment. These later events were associated with a sharp decline of platelet aggregability and a reduction in the number of fibrinogen binding sites. These data allow us to propose that an early and limited proteolytic processing of the GPIIb component of the platelet fibrinogen receptor is associated with a shift of this receptor complex into a state which expresses specific binding sites for fibrinogen. Further cleavage of GPIIIa to generate the 60-kDa fragment results in loss of receptor activity.
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PMID:Activation of the fibrinogen receptor on human platelets exposed to alpha chymotrypsin. Relationship with a major proteolytic cleavage at the carboxyterminus of the membrane glycoprotein IIb heavy chain. 188 10

The carboxyterminal region of the heavy chains, according to its hydrophilic or hydrophobic properties, determines whether the immunoglobulin will be secreted or membrane-bound. We have determined the nucleotide sequences of the human IGHG3, IGHA1, and IGHA2 membrane exons isolated from genomic DNA libraries. The IGHG3 M1 and M2 exons are separated by a long intron of 2.1 kilobases (kb) containing an highly repeated motif of 34 base pairs (bp). The IGHA1 and IGHA2 genes, like the mouse Igh-A gene, have a single exon encoding the extracellular, transmembrane, and cytoplasmic regions. For each class of immunoglobulins, the sequences of membrane exons are highly conserved between human and mouse, but no alignment is possible for the flanking regions. In contrast, for a same species, the sequences of the heavy chain membrane exons differ from one class to another. While the hydrophobic profile of the membrane core is well conserved, the cytoplasmic region differs in length and in composition. None of the intracellular domains presents the sequence implied in signal transduction, implying that membrane immunoglobulins need other proteins, which probably interact with the constant or membrane domain, to transmit signals leading to B-cell activation.
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PMID:Gene segments encoding membrane domains of the human immunoglobulin gamma 3 and alpha chains. 197 64

A membrane-bound cytochrome b, a heterodimer formed by a 91-kD glycoprotein (heavy chain) and a 22-kD polypeptide (light chain), is an essential component of the phagocyte NADPH-oxidase responsible for superoxide generation. Cytochrome b is absent in two subgroups of chronic granulomatous disease (CGD), an inherited disorder characterized by the lack of oxidase activity. Mutations in the cytochrome heavy chain gene, encoded by the CYBB locus in Xp21.1, result in the X-linked form of CGD. A rare subgroup of autosomal recessive CGD also lacks cytochrome b (A- CGD), but the genetic defect has not previously been identified. In order to search for possible mutations in the cytochrome light chain locus, CYBA, the structure of this gene was characterized. The CYBA locus was localized to 16q24, and the approximately 600-bp open reading frame determined to be encoded by six exons that span approximately 8.5 kb. Three unrelated patients with A- CGD were studied for evidence of mutations in the light chain gene. One patient, whose parents were first cousins, was homozygous for a large deletion that removed all but the extreme 5' coding sequence of the gene. The other two patients had a grossly normal light chain transcript on Northern blot of mononuclear cell RNA. The light chain transcript was amplified by the polymerase chain reaction and sequenced. One patient was a compound heterozygote for two alleles containing point mutations in the open reading frame that predict a frame shift and a nonconservative amino acid replacement, respectively. The second patient, whose parents were second cousins, was homozygous for a different single-base substitution resulting in another nonconservative amino acid change. These results indicate that A- CGD can results from defects in the gene encoding the 22-kD light chain of the phagocyte cytochrome b.
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PMID:Human neutrophil cytochrome b light chain (p22-phox). Gene structure, chromosomal location, and mutations in cytochrome-negative autosomal recessive chronic granulomatous disease. 224 41

Two classes of immunoglobulin, IgM and IgD, are present as antigen receptors on the surface of mature B lymphocytes. We show here that IgD molecules are noncovalently associated in the B cell membrane with a heterodimer consisting of two proteins of 35 kd (IgD-alpha) and 39 kd (Ig-beta), respectively. The two novel proteins are not found in the IgD-expressing myeloma J558L delta m, which fails to bring IgD antigen receptor onto the cell surface. In a surface IgD positive variant line of this myeloma, however, membrane-bound IgD molecules are associated with the heterodimer, suggesting that the formation of an antigen receptor complex is required for surface IgD expression. We further demonstrate that the IgD-associated heterodimer differs partly from that of the IgM antigen receptor and that its binding to the heavy chain only requires the presence of the last constant domain and the transmembrane part of the delta m chain.
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PMID:Molecular components of the B cell antigen receptor complex of class IgD differ partly from those of IgM. 230 36


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