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H Su

Publications and source records attributed to H Su.

At least 145 records · Page 8Linked to original sources

Expression of Fc gamma RIII on HeLa 229 cells: possible effect on in vitro neutralization of Chlamydia trachomatis.

The neutralizing activities of a murine immunoglobulin G3 (IgG3) monoclonal antibody specific for the major outer membrane protein of Chlamydia trachomatis and its monovalent Fab fragments were studied by using Syrian hamster kidney (HaK) cells and human epithelial (HeLa 229) cells. The intact IgG3 antibody was neutralizing for HaK cells but was nonneutralizing for HeLa cells. In contrast, monovalent Fab antibody fragments neutralized chlamydial infectivity for both HaK and HeLa cells. Immunofluorescence analysis of HeLa 229 cells with a panel of monoclonal antibodies specific to human Fc gamma receptors revealed the expression of cell surface Fc gamma RIII. We propose that Fc gamma RIII may obscure the chlamydia-neutralizing activity of certain IgG isotypes by facilitating the Fc gamma R-mediated entry of chlamydiae into HeLa 229 cells. These findings may help explain the inconsistencies that are commonly observed in results when HeLa 229 cells are used in chlamydia neutralization assays.

Animals↗

In vitro neutralization of Chlamydia trachomatis by monovalent Fab antibody specific to the major outer membrane protein.

Monovalent Fab antibodies to serovar- and subspecies-specific epitopes of the major outer membrane protein (MOMP) of Chlamydia trachomatis neutralized infectivity for hamster kidney cells by preventing chlamydial attachment. These findings exclude the aggregation of chlamydiae as a mechanism of anti-MOMP neutralization and provide additional evidence in support of the MOMP as a chlamydial adhesin.

Amino Acid Sequence↗

A novel L-serine deaminase activity in Escherichia coli K-12.

We demonstrate here that Escherichia coli K-12 synthesizes two different L-serine deaminases (L-SD) catalyzing the nonoxidative deamination of L-serine to pyruvate, one coded for by the previously described sdaA gene and a second, hitherto undescribed enzyme which we call L-SD2. A strain carrying a null mutation in sdaA made no detectable L-SD in minimal medium, but had activity in Luria broth. We describe a mutation, sdaX, which affects the regulation of L-SD2 and permits its expression in minimal medium, and an insertion mutation, sdaB, which abolishes L-SD2 activity completely. Both mutations lie near 60.5 min on the E. coli genetic map. The two L-SD enzymes have similar enzyme parameters, and both require posttranslational activation.

Chromosome Mapping↗

Identification and characterization of T helper cell epitopes of the major outer membrane protein of Chlamydia trachomatis.

Chlamydia trachomatis serovars A, B, and C are the causative agents of trachoma, the world's leading cause of preventable blindness. Immunoprophylaxis is a possible approach to control trachoma. The chlamydial major outer membrane protein (MOMP) is thought to play an important role in the development of protective immunity against chlamydial infection, and is therefore considered to be a promising candidate antigen in the development of a trachoma vaccine. Much effort has been focused on the molecular characterization of B cell sites of the MOMP that elicit neutralizing antibodies. Neutralizing sites have been identified as linear epitopes that reside within variable domains (VDs) of the protein whose primary sequences vary among different serovars. No information exists on MOMP T helper (Th) cell antigenic determinants, which are likely critical components for the development of a successful chlamydial vaccine. We used overlapping synthetic peptides (25 mers) representing the entire primary sequence of serovar A MOMP in T cell proliferation assays to identify T cell antigenic determinants of this molecule. Eight synthetic peptides (A-2, A-3, A-7, A-8, A-11, A-22, A-23, and A-24) stimulated proliferative responses of splenic T cells isolated from MOMP-immunized A/J mice. To ascertain if these peptides functioned as Th cell antigens, we determined their ability to prime A/J mice in vivo to produce an anamnestic IgG response specific to the MOMP. Mice primed with synthetic peptides A-8 (106-130) or A-23 (331-355) produced IgG antibodies reactive with the native MOMP and with the synthetic peptides corresponding to surface-accessible serovar-specific epitopes located in VD I and serogroup-specific epitopes located in VD IV of the protein. We synthesized the A-8 and A-23 peptides with the VD I sequence as colinear chimeric peptides. Immunization of mice with the T/B cell peptides produced high titered antibodies against the VD I sequence, and these antibodies reacted with the native MOMP and intact chlamydiae. The MOMP sequences containing these Th cell epitopes are conserved among the MOMP genes of different C. trachomatis serovars, indicating that they are common Th cell antigenic sites. Thus, the Th cell epitopes contained within these peptides, in combination with different trachoma serovar-specific B cell neutralizing determinants, may be useful in the development of a synthetic or recombinant trivalent trachoma vaccine.

Amino Acid Sequence↗

Modulation of bullous pemphigoid antigens by gamma interferon in cultured human keratinocytes.

We report the effects of human recombinant gamma interferon (gamma-IFN) on the expression of bullous pemphigoid (BP) antigens by human cultured keratinocytes. Secondary epidermal cell cultures were grown on 3T3 mouse fibroblasts; when confluent, some cultures were maintained in control medium while others were exposed to various concentrations of gamma-IFN (100, 200, 400 U/ml) for 14 days. The expression of BP antigens was analyzed by indirect immunofluorescence on epithelial sheets and immunoblotting of Tris, SDS, beta-mercaptoethanol culture extracts using different BP sera. Our results show that gamma-IFN alters the expression of BP antigens in a way varying according to the skin donor: we observed results ranging from complete loss and decreased expression to unchanged reactivity patterns. Thus, gamma-IFN modifies BP antigen expression; this behavior has been previously shown for other adhesion molecules such as fibronectin and thrombospondin. However, the observed variability of the expression of BP antigens according to the skin donor suggests an unexpected variability in keratinocyte sensitivity to gamma interferon, which remains to be explored both in vitro and in vivo.

Aged↗

Chlamydia trachomatis-host cell interactions: role of the chlamydial major outer membrane protein as an adhesin.

The major outer membrane protein (MOMP) of Chlamydia trachomatis is characterized by four symmetrically spaced variable domains (VDs I to IV) whose sequences vary among serotypes. The surface-exposed portions of these VDs contain contiguous sequences that are both serotyping determinants and in vivo target sites for neutralizing antibodies. Previous studies using surface proteolysis of C. trachomatis B implicated VDs II and IV of the MOMP of this serotype in the attachment of chlamydiae to host cells. In this study, we used monoclonal antibodies (MAbs) specific to antigenic determinants located in VDs II and IV of the MOMP of serotype B to further investigate the role of the MOMP in the attachment of chlamydiae to host cells. MABs specific to serotype- and subspecies-specific epitopes located in exposed VDs II and IV, respectively, neutralized chlamydial infectivity for hamster kidney cells by blocking chlamydial attachment. We radioiodinated these MAbs and used them to determine the number and topology of the surface-exposed VDs II and IV epitopes on chlamydial elementary bodies. VDs II and IV each comprised approximately 2.86 x 10(4) negatively charged sites and were in proximity on the chlamydial cell surface. These studies suggest that the MAbs blocked chlamydial attachment by inhibiting electrostatic interactions with host cells. We examined the effects of thermal inactivation on both chlamydial attachment and conformation of the MOMP. Heat-inactivated chlamydiae failed to attach to host cells and exhibited a conformational change in an inaccessible invariant hydrophobic nonapeptide sequence located within VD IV of the MOMPs of C. trachomatis serotypes. These findings suggest that in addition to electrostatic interactions, a common hydrophobic component of the MOMP also contributes to the binding of chlamydiae to host cells. Thus, we propose that the MOMP functions as a chlamydial adhesin by promoting nonspecific (electrostatic and hydrophobic) interactions with host cells. Surface-accessible negatively charged VDs appear to be important in electrostatic binding, while the invariant region of VD IV may provide a subsurface hydrophobic depression which further promotes binding of chlamydiae to host cells through hydrophobic interactions.

Antibodies, Monoclonal↗

The Chlamydia trachomatis hyp operon is homologous to the groE stress response operon of Escherichia coli.

The Chlamydia trachomatis serovar A hyp operon was cloned, sequenced, and expressed in Escherichia coli. Two cotranscribed open reading frames, hypA and hypB, encoded polypeptides of 17 and 57 kilodaltons, respectively. The deduced amino acid sequences of serovar A HypA and HypB proteins were (respectively) 85 and 94% identical with HypA and HypB proteins of Chlamydia psittaci GPIC, and HypB was greater than 50% identical to 60-kilodalton stress response proteins from other procaryotes and eucaryotes. The sequence should be useful in defining the antigenic structure of the Chlamydia trachomatis HypB protein, a necessary step toward understanding the relationship between the immune response to this protein and the pathogenesis of human chlamydial diseases.

Amino Acid Sequence↗

[Evaluation of prosthetic valvular regurgitation by color Doppler echocardiography].

Prosthetic valvular regurgitation was evaluated by color Doppler echocardiography in 107 patients with prostheses. Regurgitant jets were detected in 37 (35%) prostheses, 76% of them were transvalvular and 24% of them were perivalvular. The ratio of bioprostheses with increased intensity and transvalvular regurgitant jets increased parallel to the duration after replacement. Of those bioprostheses replaced more than 6 years, 23% developed regurgitation with a higher degree. Transvalvular regurgitation was detected in 25% of St. Jude Medical prostheses recently replaced, but the degree was low.

Aortic Valve↗

Comparative expression of bullous pemphigoid antigens in normal human epidermis and cultured keratinocytes.

A heterogeneity of the bullous pemphigoid (BP) antigen initially described as a 220- to 240-kDa polypeptide doublet expressed in normal human skin was recently demonstrated. The aim of our study was to compare the heterogeneity of BP antigen by the immunoblotting technique in extracts of both human epidermis and keratinocyte cultures. Extracts of epidermal tissues obtained from plastic surgery skin samples and secondary keratinocyte cultures were analyzed for their immunologic content defined by 30 BP sera. Twenty-six out of 30 tested sera showed similar binding reactivities with one or several polypeptide bands in both extracts. These sera defined seven antigens of molecular weights ranging from 240 to 97 kDa. Three groups of sera reacting with three, two, or only one antigen could be distinguished in which 180, 200, and 220 kDa polypeptides represented the major BP antigens both in vivo and in vitro. The binding reactivity of most immunofluorescent negative sera demonstrated the sensitivity of the immunoblotting technique to evidence the heterogeneity of BP antigens and antibodies. Keratinocyte cultures represent a reproducible substrate for such analysis and offer a standardization attempt in comparative investigations in BP.

Aged↗

Immunohistochemical study of normal skin of HIV-1-infected patients shows no evidence of infection of epidermal Langerhans cells by HIV.

Langerhans cells (LC) are dendritic epidermal antigen-presenting cells expressing the surface molecule CD4, which renders them theoretical cellular targets for direct infection by the human immunodeficiency virus (HIV). To date, somewhat conflicting results have been reported concerning the in vivo infection of LC by HIV as well as the numerical alteration of these cells in the course of HIV infection. In the present work we studied clinically normal skin of a group of 44 HIV-1-seropositive patients classified according to the Centers for Disease Control (CDC) stages II (n = 14), III (n = 9), and IV (n = 21). Monoclonal antibodies (MAb) to HIV p18, p24, and gp120 and to HLA-DR and CD1a antigens (specific for LC) were applied on frozen skin sections using an amplification biotin-streptavidin-fluorescein technique. The MAb to HIV p18 cross-reacted with a cytoplasmic antigen of epidermal basal keratinocytes also present on HIV-seronegative skin specimens. No other reactivity was observed with any of the three anti-HIV MAb. The quantitative study showed that no significant correlations could be established between the number of LC (evaluated independently by HLA-DR and CD1a antigens) and the number of peripheral blood CD4+ve lymphocytes or the CDC disease stage. These results cast some doubt on the previously reported in vivo infection and numerical decrease in LC in HIV infection. The precise involvement of LC in HIV infection awaits further investigation.

Acquired Immunodeficiency Syndrome↗

Distribution of an estrogen receptor-related protein (P29) in normal skin and in cultured human keratinocytes.

A monoclonal antibody, ERD5, which recognizes a 29Kd phosphoprotein associated with human estrogen receptor of myometrium was used to study the expression of this protein in normal skin and in cultured human keratinocytes. By indirect immunofluorescence, both in vivo and in vitro keratinocytes showed a variable cytoplasmic staining which increased with cell differentiation. SDS gel electrophoresis of soluble extracts of cultured keratinocytes and normal epidermis showed that P29 was a minor protein. Immunoblot analysis demonstrated that ERD5 strongly reacted only with a 29Kd polypeptide band without any cross-reactivity. These data suggest that keratinocytes might be estrogen sensitive like other cells in which P29 has already been located. The exact role of this protein in the keratinocyte differentiation process and its relationship with estrogen receptors remain to be elucidated.

Adolescent↗

Bullous pemphigoid and cicatricial pemphigoid: immunoblotting detection of involved autoantigens.

Bullous pemphigoid (BP) and cicatricial pemphigoid (CP) are subepidermal bullous autoimmune diseases which have distinct clinical features but identical immunological status. In order to determine whether these diseases could be dissociated on the basis of qualitative differences in serum antibodies to basement membrane zone (BMZ) antigens, the reactivity of sera from 7 CP and 29 BP patients with proteins extracted from normal human epidermal sheets (containing most of the lamina lucida components) was analysed using immunoblotting and compared to that of 10 normal sera. 20 out of the 29 BP sera contained antibodies recognizing one or several protein(s) of 240, 200, 180 and 165 kD molecular weight (MW). Antibodies in 4 out 7 CP sera specifically reacted with one or two polypeptides of 240 and 120 kD MW. These data confirm the heterogeneity of BP antigens and show the presence in CP of a novel 120 kD MW polypeptide which is found only in CP but not in BP. Taken together these findings demonstrate that in BP and CP, autoantibodies are directed to both common and specific BMZ antigens, their physiopathological significance need to be understood.

Adult↗

A comparison of the distributions of eight peptides in spinal cord from normal controls and cases of motor neurone disease with special reference to Onuf's nucleus.

The distributions of 8 peptides were studied in the 4 major segmental levels (cervical, thoracic, lumbar, sacral) of the spinal cord in 52 neurologically normal cases. Similar regions from 36 cases of motor neurone disease (MND) were compared using the same procedures to determine possible changes in the distribution of peptides in areas associated with sensory, motor and autonomic function. In normal spinal cords, calcitonin gene-related peptide (CGRP)-, the C-flanking peptide of neuropeptide Y (CPON)-, enkephalin-, galanin-, neurokinin-like-, somatostatin- and vasoactive intestinal polypeptide (VIP)-immunoreactive fibres were abundant in the dorsal horn. Numerous somatostatin-immunoreactive cell bodies were also present. In the ventral horn, immunoreactive fibres were less abundant. Most motoneurones were closely apposed by fibres immunoreactive for enkephalin, neurokinin, somatostatin and thyrotrophin-releasing hormone (TRH). A subpopulation of motoneurones, most notable in lumbar segments, displayed CGRP immunoreactivity. In common with autonomic nuclei, Onuf's nucleus, which is thought to innervate perineal striated muscle and external urethral and anal sphincters, was densely innervated with CPON-, enkephalin-, and in particular somatostatin-immunoreactive fibres, thus suggesting Onuf's nucleus may have an autonomic component. In the diseased cords, there was a reduction in the area of the ventral horn and numbers of motoneurones as revealed by conventional histological staining and immunostaining of neurofilament triplet proteins. No changes in the distribution of peptides was noted in the dorsal horn or autonomic nuclei. By contrast, in the ventral horn, neurokinin-, enkephalin-, somatostatin- and TRH-immunoreactive fibres, which are normally found associated with motoneurones, were absent. Therefore, not only are motoneurones lost in MND, but also the fibres which innervate them. CGRP-immunoreactive motoneurones were not observed, a finding consistent with the proposed role of this peptide as a muscle-trophic factor. In contrast to the large motoneurone groups in the ventral horn, the neuronal integrity of Onuf's nucleus and the peptides associated with it were spared. These data further imply that Onuf's nucleus is not a typical motor nucleus and it is not purely somatic. The coincident loss of peptide immunoreactivity and motoneurones from the large motor nuclei and sparing of Onuf's nucleus and its peptide-containing constituents in the diseased state suggests that peptides contribute to maintenance of neural integrity.

Adolescent↗

Mapping antigenic domains expressed by Chlamydia trachomatis major outer membrane protein genes.

Chlamydia trachomatis is an obligate prokaryotic intracellular pathogen of humans that infects mucosal epithelial cells. Exposed domains of its major outer membrane protein (MOMP) are both serotyping and protective antigenic determinants. To identify these domains, we have cloned and epitope-mapped the genes of serovars A, C (C serogroup) and L2, B (B serogroup) with a panel of monoclonal antibodies (mAbs). Predominantly conserved regions of the genes of both serogroups are interspersed with four short variable domains (I-IV). Recombinant phage clones expressing specific MOMP antigenic determinants revealed that protective serotype-specific recognized epitopes in variable domains I and II. Protective subspecies and serogroup-specific mAbs recognized overlapping determinants in variable domain IV near the C terminus. A nonprotective species-specific mAb mapped to an invariant peptide of nine residues contained within variable domain IV. In the intact chlamydial organism of serovar B, variable domains II and IV were susceptible to proteolytic digestion, whereas both N and C termini were protected. These results suggest an arrangement of MOMP in the outer membrane in which three of the four variable domains are exposed to the outside and in which both N and C termini are presumably oriented toward the periplasmic space. This molecular analysis of MOMP antigenic determinants and their surface topology on intact chlamydiae will be useful toward the development of a recombinant subunit or synthetic chlamydial vaccine.

Amino Acid Sequence↗

Differential effect of trypsin on infectivity of Chlamydia trachomatis: loss of infectivity requires cleavage of major outer membrane protein variable domains II and IV.

The initial interaction of chlamydiae with host cells is not well understood. Chlamydial cell surface components that function in attachment are key virulence factors, and their identification is critical for understanding the pathogenic strategies of this very successful parasite. We used trypsin proteolysis of chlamydiae to define surface components that function in chlamydia-host cell interactions. We found that trypsin had a differential effect on the infectivity of Chlamydia trachomatis serovars B and L2 for HeLa 229 cells. Trypsin treatment resulted in a significant loss of attachment and infectivity of serovar B but had no effect on the infectivity of serovar L2. Fluorograms of chlamydiae metabolically labeled with 14C-amino acids and treated with trypsin showed that the major outer membrane protein (MOMP) of both serovars was cleaved. Evidence for two trypsin cleavage sites was found for the serovar B MOMP. One cleavage site was located between lysine 145 and valine 146 in variable domain (VD) II of the protein. The second site was located between lysine 309 and threonine 310 in VD IV. In contrast, the serovar L2 MOMP was cleaved only at lysine 309 in VD IV. These results suggest a functional role for MOMP in chlamydial attachment and implicate VDs II and IV of MOMP in this interaction.

Amino Acid Sequence↗

Retrograde tracing shows that CGRP-immunoreactive nerves of rat trachea and lung originate from vagal and dorsal root ganglia.

The origins of sensory innervation of the lower respiratory tract are thought to be principally the nodose and jugular ganglia of the vagus nerve. It has been suggested and partially demonstrated that there is also a component arising from dorsal root ganglia, but the segmental levels involved are not known precisely. We have therefore investigated the origins of sensory nerves within the rat respiratory tract, particularly those containing calcitonin gene-related peptide (CGRP), using the technique of retrograde axonal tracing combined with immunohistochemistry. Injections of True blue were made into extra-thoracic trachea (n = 4 rats) and percutaneously into the right and left lung (n = 4 each). Retrogradely labelled neuronal perikarya were detected in vagal and dorsal root ganglia, and sympathetic chain ganglia. CGRP-immunoreactive cells were seen only in vagal and dorsal root ganglia. Tracheal innervation arose bilaterally in the vagal sensory ganglia but those on the right side represented the principal source; the majority of CGRP-containing neurons occurred in the jugular ganglion. A very small component of labelling occurred in spinal ganglia at levels C2-C6. The sensory innervation of the lungs was seen to arise predominantly from the ipsilateral dorsal root ganglia (45% of cells CGRP-immunoreactive) at levels T1-T6. In contrast to the trachea, the contribution of vagal sensory neurones to the lungs appeared to be less than that of the spinal ganglia. These results show that the sensory innervation of the rat lungs has a major origin in the dorsal root ganglia, in which almost half of the involved neurons contain CGRP, and confirm that most CGRP-immunoreactive nerves in the trachea arise in the right jugular ganglion.

Animals↗