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Biomedical subjects

A L Notkins

Publications and source records attributed to A L Notkins.

At least 19 recordsLinked to original sources

A novel human insulinoma-associated cDNA, IA-1, encodes a protein with "zinc-finger" DNA-binding motifs.

A subtraction library was constructed from human insulinoma (beta cell tumor) and glucagonoma (alpha cell tumor) cDNA phagemid libraries. Differential screening of 153 clones with end-labeled mRNAs from insulinoma, glucagonoma, and HeLa cells resulted in the isolation of a novel cDNA clone designated IA-1. This cDNA clone has a 2838-base pair sequence consisting of an open reading frame of 1530 nucleotides, which translates into a protein of 510 amino acids with a pI value of 9.1 and a molecular mass of 52,923 daltons. At the 3'-untranslated region there are seven ATTTA sequences between two polyadenylation signals (AATAAA). The IA-1 protein can be divided into two domains based upon the features of its amino acid sequence. The NH2-terminal domain of the deduced protein sequence (amino acids 1-250) has four classical pro-hormone dibasic conversion sites and an amidation signal sequence, Pro-Gly-Lys-Arg. The COOH-terminal domain (amino acids 251-510) contains five putative "zinc-finger" DNA-binding motifs of the form X3-Cys-X2-4-Cys-X12-His-X3-4-His-X4 which has been described as a consensus sequence for members of the Cys2-His2 DNA-binding protein class. Northern blot analysis revealed IA-1 mRNA in five of five human insulinoma and three of three murine insulinoma cell lines. Expression of this gene was undetectable in normal tissues. Additional tissue studies revealed that the message is expressed in several tumor cell lines of neuroendocrine origin including pheochromocytoma, medullary thyroid carcinoma, insulinoma, pituitary tumor, and small cell lung carcinoma. The restricted tissue distribution and unique sequence motifs suggest that this novel cDNA clone may encode a protein associated with the transformation of neuroendocrine cells.

Amino Acid Sequence

Progressive glomerulosclerosis and enhanced renal accumulation of basement membrane components in mice transgenic for human immunodeficiency virus type 1 genes.

Patients infected with human immunodeficiency virus type 1 (HIV-1) develop a renal syndrome characterized by proteinuria, renal failure, and focal segmental glomerulosclerosis. By using a noninfectious HIV-1 DNA construct lacking the gag and pol genes, three transgenic mouse lines have been generated that develop a syndrome remarkably similar to the human disease. In the present study, we have characterized in detail one of these lines, Tg26. In Tg26 mice, proteinuria was detectable at approximately 24 days of age, followed by severe nephrotic syndrome and rapid progression to end-stage renal failure. Renal histology showed focal segmental glomerulosclerosis and microcystic tubular dilatation. Indirect immunofluorescence studies demonstrated increased accumulation of the basement membrane components laminin, collagen type IV, and heparan sulfate proteoglycan. The viral protein Rev was present in sclerotic glomeruli. Northern blot analysis of total renal RNA showed expression of viral genes prior to the appearance of histologic renal disease, with greatly diminished viral gene expression late in the disease course. Kidneys from transgenic mice expressed increased steady-state levels of collagen alpha 1(IV) mRNA when glomerulosclerosis was present. We conclude that the presence of HIV-1 genes is associated with progressive renal dysfunction and glomerulosclerosis in transgenic mice.

Animals

UV light-induced reactivation of herpes simplex virus type 2 and prevention by acyclovir.

UV B light is a potent stimulus for inducing reactivation of latent herpes simplex virus (HSV) infections. Patients were enrolled in a double-blind placebo-controlled crossover trial to determine whether acyclovir can prevent UV light-induced HSV-2 recurrences. Twenty-four patients with a history of recurrent infection of perigenital sites (e.g., buttock, thigh) were exposed one to four times with 4 minimum erythema doses of UV light. Patients were given acyclovir 200 mg orally five times daily or matched placebo beginning 1 day before each exposure and continuing for 5 days after exposure. There were 13 UV-induced recurrences among 36 placebo treatments and 3 after 38 acyclovir treatments (P = .004). The mean time to recurrence (+/- SE) was 4.8 +/- 0.3 days. HSV-2 lesions developed primarily at the site of UV exposure. The cutaneous distribution and timing of UV-induced recurrences was consistent with a neural localization (dorsal root ganglia) of latent viral infection. This UV light model permits direct examination of events leading to HSV-2 recurrences in humans and can be used to evaluate approaches to prevention.

Acyclovir

A recombinant human Fab expressed in Escherichia coli neutralizes rabies virus.

A recombinant human anti-rabies monoclonal antibody (MAb-57) Fab was prepared by cloning the heavy (Fd)- and light-chain domains into the same bacterial expression vector. To construct the recombinant Fab, mRNA was extracted from MAb-57-producing hybridoma cells, reverse transcribed, and then amplified by polymerase chain reaction (PCR) by using oligonucleotides specific for immunoglobulin heavy- and light-chain DNA sequences. PCR-amplified Fd-chain cDNA was fused, in frame, between a bacterial leader peptide (PelB) at the amino terminus and a 10-amino-acid peptide tag at the carboxy terminus. The PCR-amplified lambda-chain cDNA was also fused to the PelB leader peptide. The immunoglobulin Fab was then expressed as a dicistronic message in bacteria by using the isopropyl-beta-D-thiogalactopyranoside-inducible lactose promotor (lacZ). DNA sequencing was used to define the gamma-chain isotype (immunoglobulin G1) and VH (VHI) chain and VL (V lambda II) chain gene usage. The recombinant Fab (rFab57) specifically bound the rabies virus coat glycoprotein, while the Fd and lambda chains, when expressed individually, did not. The binding specificity of rFab57 was indistinguishable from that of the intact MAb in direct enzyme-linked immunosorbent assays; however, the dissociation constant of rFab57 for rabies virus protein G was approximately 1 log10 U lower than that of complete MAb-57 in competition enzyme-linked immunosorbent assays. A fluorescent-focus inhibition assay showed that bacterially expressed rFab was capable of neutralizing rabies virus strain CVS-11. We conclude that a human Fab expressed in bacteria maintains its specificity and biologic activity.

Amino Acid Sequence

Transgenic mice carrying intact HIV provirus: biological effects and organization of a transgene.

Twelve transgenic founder animals retaining intact copies of the infectious molecular clone of human immunodeficiency virus (HIV)-1 were obtained. All the founders appeared healthy during a 9- to 12-month observation period. However, transgenic offspring of one of the founders (female #13), died within the 1st month of life while manifesting several symptoms characteristic of human AIDS. To discover why only one transgenic lineage was affected and why the founder animal in the affected lineage remained healthy while all of her transgenic offspring were diseased, we compared the organization of the transgene in the transgenic lineages. Restriction enzyme analysis showed that the founder no. 13 was a mosaic carrying in each transgenic cell four tandemly arranged copies of the infectious molecular clone. All the units of the tandem repeat appeared to be correctly preserved with the exception of the 3'-most copy, which terminated near the start of human sequences that flank the 3' long terminal repeat (LTR). The unaffected founders and their transgenic litter usually carried a high number of copies of the provirus. The 5' terminus of the transgene in the unaffected animals appeared to be deleted or rearranged. None of the 12 transgenic founders carried a single copy of integrated provirus. We conclude that infectious molecular clone of HIV-1 can be expressed in transgenic mice, and that the mode of proviral integration similar to that seen during the retroviral infectious cycle (i.e., a single-copy provirus) may be incompatible with the postnatal survival.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Prevention of ultraviolet-light-induced herpes labialis by sunscreen.

Sunlight exposure is reported by some patients to precede onset of recurrent herpes labialis. Ultraviolet (UV) B light is known to be a stimulus for the reactivation of herpes simplex virus (HSV) infections. We assessed the effect of a sunblocking agent on UV-light-induced reactivation of recurrent herpes labialis in a double-blind, placebo-controlled crossover trial. 38 patients were exposed on two separate occasions to four minimum erythema doses of UV light at an area of previous labial herpes recurrence. A solution containing sunscreen was applied to the lips before one exposure and a matched placebo before the other. After placebo and UV exposure, herpes labialis developed in 27 (71%) of the 38 patients, with a mean time to recurrence of 2.9 (SEM 0.2) days. In contrast, when sunscreen was applied before UV exposure, no lesions developed, but 1 of the 35 patients shed virus at the exposure site. We conclude that UV light is a potent stimulus for inducing reactivation of herpes labialis, and that application of sunscreen may be effective in the prevention of sunlight-induced recurrent infection.

Adolescent

Model for studying virus attachment. II. Binding of biotinylated human T cell leukemia virus type I to human blood mononuclear cells potential targets for human T cell leukemia virus type I infection.

Purified human T cell leukemia virus type I (HTLV-I) was biotinylated and used to study its attachment to human PBMC. The use of biotinylated HTLV-I (biot-HTLV-I) in conjunction with mouse mAb specific for selected cell-surface molecules and flow cytometric analysis allowed us to positively identify virus-binding cells among a heterogeneous blood mononuclear cell population. Biot-HTLV-I efficiently bound not only to T cells, but also to B cells and monocytes. Preincubation of monocytes with excess of unlabeled HTLV-I significantly reduced the attachment of biot-HTLV-I. HTLV-I not only bound to, but also infected, B cells, as suggested by: i) in situ hybridization of a 35S-labeled full length HTLV-I DNA probe with EBV-transformed B cells, previously cocultured with HTLV-I-producing (G11MJ) T cells, and ii) hybridization of the same nick-translated 32P-labeled DNA probe with blotted DNA from similar HTLV-I-infected EBV-transformed B cells. HTLV-I infection did not affect the ability of B cells to secrete IgG. These findings suggest that HTLV-I cannot only infect cells of the T lineage, but can also infect B cells.

Antibody Formation

HIV-associated nephropathy in transgenic mice expressing HIV-1 genes.

Transgenic mice were produced that bore copies of a defective HIV provirus. The transgenic offspring from three independently derived mouse lines manifested renal disease associated with proteinuria, a high mortality rate, and HIV-specific gene expression in the kidney. An early histopathological lesion in the kidney was focal glomerulosclerosis. Moribund animals had diffuse glomerulosclerosis with prominent microcystic tubular dilatation, tubular epithelial degeneration, and interstitial nephritis. Electron microscopy revealed ultrastructural features consistent with the glomerulosclerosis: effacement of the foot processes of visceral epithelium and an increase in mesangial cell matrix. Transgenic mice variably expressed 6-, 4.3-, and 2-kb HIV-specific RNAs and HIV-related polypeptides in several tissues including kidney. Immunocytostaining revealed the presence of HIV-related protein in the glomeruli of affected animals. Glomerulopathy in these transgenic mice and HIV-associated nephropathy in man have similar features.

Animals

Detection of proviral sequences in saliva of patients infected with human immunodeficiency virus type 1.

Single samples of saliva collected from 20 human immunodeficiency virus type I (HIV-1) seropositive patients were tested by the polymerase chain reaction for HIV-1 proviral sequences using primers from the long terminal repeat (LTR), gag, and env regions of the virus. Proviral sequences were detected in the saliva of 50% of the patients. Sequential samples of saliva, collected at four different times, from each of six additional patients led to the detection of proviral sequences in 100% of the patients. Since, however, the detection of HIV-1 required not only the highly sensitive polymerase chain reaction, but also multiple samples, it appears that under ordinary circumstances infected cells are present in saliva in low numbers. Although this may explain the lack of transmission of HIV-1 by casual contact through the salivary route to household members and health-care workers, the presence of infected cells in the saliva of a high percentage of patients argues for avoidance of sexually intimate situations involving prolonged and repeated contact with saliva.

Adult

Complete sequence of the genes encoding the VH and VL regions of low- and high-affinity monoclonal IgM and IgA1 rheumatoid factors produced by CD5+ B cells from a rheumatoid arthritis patient.

We have characterized the VH and VL genes of three low-affinity polyreactive and two high-affinity monoreactive IgM and IgA1 rheumatoid factor (RF) mAb generated using circulating CD5+ B cells from a single rheumatoid arthritis patient. We found that four and one RF mAb utilized genes of the VHIV and VHIII families, respectively. The VHIV gene usage by these RF mAb differs from the preferential VHIII, VHI, and, to a lesser extent, VHII gene usage by the IgM with RF activity found in patients with mixed cryoglobulinemia, Waldenstrom's macroglobulinemia, and other monoclonal gammopathies. In addition, in contrast to the preponderant kappa L chain usage by the RF in these patients, a lambda L chain was utilized by all RF mAb from our rheumatoid arthritis patient. Two RF mAbs utilized V lambda I, two V lambda IV, and one V lambda III L chains. The VH genes of the two low-affinity polyreactive IgM RF mAb were in germline configuration. When compared with the deduced amino acid sequence of the putatively corresponding genomic segment, the VH gene of the high-affinity monoreactive IgM RF mAb displayed five amino acid differences, all of which are in the complementarity determining regions (CDR), possibly the result of a process of somatic point mutation and clonal selection driven by Ag. The unavailability of the corresponding genomic VH segment sequences made it impossible to infer whether the VH genes utilized by the two IgA1 RF were in a germline or somatically mutated configuration. Sequencing of the genes encoding the H chain CDR3 (D segments) revealed that all three low-affinity polyreactive RF mAb displayed a much longer D segment (36-45 bases) than their high-affinity monoreactive counterparts (15-24 bases), raising the possibility that a long D segment may be one of the factors involved in antibody polyreactivity.

Amino Acid Sequence

Transplantation of syngeneic transfected cells to probe the in vivo immune response to viral proteins.

BALB/3T3 cells were transfected with the glycoprotein D (gD) gene of herpes simplex virus (HSV) and a cell line expressing gD on the cell surface was isolated. In vitro, 51Cr release tests showed that the transfected cells were destroyed by anti-HSV antibody in the presence of complement. To investigate in vivo immune response, the gD-transfected cells were transplanted into the footpads of syngeneic HSV-immunized or unimmunized BALB/c mice. In unimmunized mice, transfected cells remained intact for 7 days or longer, and the site of injection showed only slight lymphocyte infiltration. In contrast, in immunized mice, transfected cells elicited massive lymphocyte infiltration and were mostly destroyed by day 4. Analysis of infiltrating cells revealed that they were mainly Thy1+ and CD8+ lymphocytes along with small numbers of CD5+, CD4+, and B lymphocytes. These studies show that transfected murine cells expressing gD can be used to study the in vivo immune response to single viral proteins and they argue that the immune response contributes to the pathogenesis of HSV infection.

Animals

Polyreactivity and antigen specificity of human xenoreactive monoclonal and serum natural antibodies.

Naturally occurring antibodies that react with xenogeneic antigens are a clinically important subset of antibodies because they initiate hyperacute rejection of organs transplanted between disparate species. This currently precludes the use of nonprimate organs for human transplantation. Most antibodies that arise after immunization are monoreactive, i.e., bind only to the immunogen. Similarly, some "natural" antibodies, e.g., isohemagglutinins, bind in a monoreactive manner. In contrast, other natural antibodies, e.g., those that bind to actin, are polyreactive (i.e., bind to multiple ligands). Such polyreactive antibodies may be derived predominantly from CD5+ B cells. In this study, we demonstrate that the majority of xenoreactive natural antibodies in human serum are polyreactive, as indicated by the ability of ssDNA and thyroglobulin (ligands commonly used as targets of polyreactive antibodies) to block the binding of the antibodies to xenogeneic antigens, whereas these ligands could not block the binding of antitetanus antibodies to tetanus toxoid. Furthermore, we compared the ability of 8 polyreactive and 7 monoreactive human mAb to bind to porcine antigens. All of the polyreactive mAb reacted with porcine antigens at mAb concentrations less than 3 micrograms/ml, while none of the monoreactive mAb reacted at concentrations less than 3 micrograms/ml. Each polyreactive mAb reacted with partially overlapping, but distinct sets of porcine cell surface moieties. These results indicate that human polyreactive mAb can bind to multiple xenogeneic antigens in a selective manner and that xenoreactive natural antibodies in human serum are largely polyreactive.

Animals

Transgenic mouse lines that are immunologically tolerant and nontolerant to herpes simplex virus glycoprotein D.

A construct containing the gene for glycoprotein D of herpes simplex virus (HSV-gD), under the control of the simian virus 40 early promoter, was microinjected into single-cell embryos, and four transgenic mouse lines were established. Three were homozygous (lines 75, 111, and 113) and one was hemizygous (line 108) for the HSV-gD gene. Examination of sera revealed that only one of the lines (line 75) spontaneously produced antibody to HSV-gD. Immunization of the other three lines with vaccinia virus-HSV-gD showed that one of them (line 113) responded by making antibody to HSV-gD, whereas the other two (lines 108 and 111) appeared to be immunologically tolerant. Evidence that tolerance was not absolute was obtained by immunization with infectious HSV, which resulted in an antibody response to HSV-gD in some of the animals from line 111. Examination of organs for HSV-gD mRNA revealed transcripts in the tolerant line (line 108) and in the partially tolerant line (line 111), but not in the nontolerant line (line 113), suggesting that the development of immunological tolerance requires active expression of the HSV-gD gene.

Animals

Flow cytometry to identify cell types to which enzymes bind. Effect of lactic dehydrogenase virus on enzyme binding.

Flow cytometry was used to measure the binding of enzymes (i.e. lactate dehydrogenases 1 and 5, malate dehydrogenase, and asparaginase) to cells. Of the four enzymes studied, asparaginase showed the greatest binding. Single color analysis revealed that asparaginase bound best to preparations enriched in macrophages, and dual color analysis showed that the binding was to macrophages. Studies on continuous cell lines revealed that asparaginase bound to one mouse macrophage line, but not to another or to murine fibroblasts. Inoculation of mice with lactic dehydrogenase virus, a virus that infects macrophages, decreased the in vivo clearance of asparaginase from the circulation and the in vitro binding of asparaginase to peritoneal macrophages. It is concluded that flow cytometry can be used to study the binding of enzymes to cells, to identify the cell type to which the enzyme binds, and to measure changes in the capacity of cells to bind enzymes.

Animals

Frequency of B cells committed to the production of antibodies to insulin in newly diagnosed patients with insulin-dependent diabetes mellitus and generation of high affinity human monoclonal IgG to insulin.

Circulating autoantibodies to insulin can be detected in patients with insulin-dependent (type I) diabetes mellitus (IDDM) at the onset of the clinical disease. To characterize the autoantibody response in IDDM patients, we determined the frequency of circulating B cells committed to the production of IgM, IgG, and IgA to insulin in 12 newly diagnosed IDDM patients and, for comparison, in 9 healthy subjects and 17 insulin-treated IDDM patients. We found that B cells committed to the production of anti-insulin IgG, but not IgM, autoantibodies are present at much higher frequency in the circulation of newly diagnosed IDDM patients before insulin treatment (0.209 +/- 0.142%, mean value +/- SD of total IgG-producing cell precursors) as compared with age-matched healthy controls (0.032 +/- 0.030% of total IgG-producing cell precursors). In IDDM patients who had been treated with insulin, cells producing IgG antibody to insulin were 0.177 +/- 0.139% of total IgG-producing cell precursors. Generation of IgG mAb from B cells of IDDM patients revealed that they were monoreactive, i.e., they bound to insulin, but to none of the other Ag tested, and displayed a high affinity for insulin (Kd approximately 10(-7) moles/liter). In contrast, the IgG mAb derived from healthy subjects were polyreactive, i.e., they bound to all Ag tested, and displayed a low to moderate affinity for insulin (Kd approximately 10(-5) to 10(-6) moles/liter). These findings show that lymphocytes committed to the production of high affinity IgG autoantibodies to insulin are common in the B cell repertoire at the onset of IDDM.

Antibodies, Monoclonal

Characterization of the 70KDA component of the human Ku autoantigen expressed in insect cell nuclei using a recombinant baculovirus vector.

The Ku autoantigen is a human nuclear, DNA-binding heterodimer of 70kDa and 86kDa proteins. It is the target of autoantibodies in several autoimmune diseases. We now report the expression of a cDNA encoding the 70kDa Ku protein. Large amounts of protein were obtained using a recombinant baculovirus vector, in contrast with earlier unsuccessful attempts using other expression systems. We demonstrate that the 70kDa Ku protein is targeted to the nucleus and is associated with the nuclear matrix when expressed in the absence of the 86kDa Ku component. No post-translational modifications were observed. The 70kDa protein binds double and single-stranded DNA with very high affinity. Our results suggest that the baculovirus expression system may be of widespread use in the production and characterization of human autoantigens.

Animals

Clonal analysis of a human antibody response. Quantitation of precursors of antibody-producing cells and generation and characterization of monoclonal IgM, IgG, and IgA to rabies virus.

We quantitated and characterized the changes in the human B cell repertoire, at the clonal level, before and after immunization with rabies virus. Moreover, we generated 10 monoclonal cell lines producing IgM, IgG, and IgA antibodies to the virus. We found that in healthy subjects, not previously exposed to the virus, nearly 2% of the circulating B lymphocytes were committed to the production of antibodies that bound the virus. These B cells expressed the surface CD5 molecule. The antibodies they produced were polyreactive IgM that displayed a relatively low affinity for the virus components (Kd, 1.0-2.4 x 10(-6) g/microliters). After immunization, different anti-virus (IgG and IgA) antibody-producing cells consistently appeared in the circulation and increased from less than 0.005% to greater than 10% of the total B cells committed to the production of IgG and IgA, respectively. Most of such B cells do not express CD5 and produce monoreactive antibodies of high affinity for rabies virus (Kd, 6.5 x 10(-9) to 1.2 x 10(-10) g/microliters). One of these IgG mAbs efficiently neutralized rabies virus in vitro and in vivo, as detailed elsewhere (Dietzschold, B., P. Casali, Y. Ueki, M. Gore, C. E. Rupprecht, A. L. Notkins, and H. Koprowski, manuscript submitted for publication). Hybridization experiments using probes specific for the different human V gene segment families revealed that cell precursors producing low affinity IgM binding to rabies virus utilized a restricted number of VH gene segments (i.e., only members of the VHIIIb subfamily), whereas cell precursors producing high affinity IgG and IgA to rabies virus utilized an assortment of different VH gene segments (i.e., members of the VHI, VHIII, VHIV, and VHVI families and VHIIIb subfamily). In conclusion, our studies show that EBV transformation in conjunction with limiting dilution technology and somatic cell hybridization techniques are useful methods for quantitating, at the B cell clonal level, the human antibody response to foreign Ags and for generating human mAbs of predetermined specificity and high affinity.

Antibodies, Monoclonal