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GCN20, a novel ATP binding cassette protein, and GCN1 reside in a complex that mediates activation of the eIF-2 alpha kinase GCN2 in amino acid-starved cells.

GCN2 is a protein kinase that phosphorylates the alpha-subunit of translation initiation factor 2 (eIF-2) and thereby stimulates translation of GCN4 mRNA in amino acid-starved cells. We isolated a null mutation in a previously unidentified gene, GCN20, that suppresses the growth-inhibitory effect of eIF-2 alpha hyperphosphorylation catalyzed by mutationally activated forms of GCN2. The deletion of GCN20 in otherwise wild-type strains impairs derepression of GCN4 translation and reduces the level of eIF-2 alpha phosphorylation in vivo, showing that GCN20 is a positive effector of GCN2 kinase function. In accordance with this conclusion, GCN20 was co-immunoprecipitated from cell extracts with GCN1, another factor required to activate GCN2, and the two proteins interacted in the yeast two-hybrid system. We conclude that GCN1 and GCN20 are components of a protein complex that couples the kinase activity of GCN2 to the availability of amino acids. GCN20 is a member of the ATP binding cassette (ABC) family of proteins and is closely related to ABC proteins identified in Caenorhabditis elegans, rice and humans, suggesting that the function of GCN20 may be conserved among diverse eukaryotic organisms.

ATP-Binding Cassette Transporters↗

In vivo role of phagocytic synovial lining cells in onset of experimental arthritis.

The in vivo role of phagocytic synovial lining cells (SLC) was studied in acute experimental arthritis in the mouse. SLCs were selectively depleted by injecting liposomes encapsulating the drug dichloromethylene diphosphonate (CL2MDP, Clodronate). Optimal depletion of phagocytic lining cells occurred 7 days after CL2MDP liposome injection. Eliciting an immune complex-mediated arthritis in SLC-depleted knee joints largely prevented inflammation if compared to control arthritic knee joints. Joint swelling and influx of inflammatory cells into the joint cavity was markedly diminished. Cartilage damage, in this model related to influx of inflammatory cells, was significantly decreased. Reduced influx of inflammatory cells (mainly polymorphonuclear neutrophils) was correlated to a decreased production of chemotactic factors as measured in washouts of arthritic joints in a two-compartment Transwell system. Interleukin-1-driven chemotactic factors seem to be involved. Interleukin-1 levels were significantly lowered in SLC-depleted arthritic knee joints as compared to controls. Injection of recombinant murine interleukin-1 in SLC-depleted knee joints caused less influx of inflammatory cells as compared to injection into control knee joints. A specific damage of CL2MDP liposome treatment to synovial blood vessels was excluded as intraarticular injection of human recombinant C5a in lining-depleted knee joints showed similar influx of inflammatory cells if compared to human recombinant C5a injection in control knee joints. This study indicates that in immune complex-mediated arthritis, phagocytic lining cells regulate the onset of the inflammatory response.

Animals↗

Identification of apolipoprotein A1 and immunoglobulin as components of a serum complex that mediates activation of human sperm motility.

Serum is superior to other body fluids in activating the progressive motility of human spermatozoa and is used in connection with sperm separation for fertilization in vitro. The major activating capacity is localized to a macromolecular fraction, purified to homogeneity by a four-step protocol with ion-exchange chromatography, chromatofocusing, exclusion FPLC (elution corresponding to a molecular mass of about 250 kDa), and Blue Sepharose chromatography (no binding but elimination of albumin). The pure protein, at a concentration of 20-70 nmol/L, activated the motility to the same extent as serum. SDS-polyacrylamide gel electrophoresis under nonreducing conditions showed one band corresponding to a molecular mass of about 180 kDa. In the presence of mercaptoethanol, two bands are obtained corresponding to 50 kDa and about 25 kDa, respectively. Without the Blue Sepharose step, the sample after reduction revealed an additional band at about 67 kDa, suggesting that the fraction is then in complex also with albumin. Amino acid sequence analysis of the Blue Sepharose eluate identified three protein chains--those of apolipoprotein A1 and immunoglobulin heavy and light chains--suggesting that the preparation is an apolipoprotein A1-immunoglobulin complex. Antiserum raised toward the pure preparation in a rabbit inhibited human sperm motility, when added directly to spermatozoa. Pretreatment of human serum with rabbit antiserum significantly reduced its ability to activate sperm motility. The sperm activating capacity of the protein complex was destroyed by heating at 100 degrees C for 5 min, suggesting that the activity was dependent on intact protein conformations. Albumin, apolipoprotein A1, and immunoglobulins by themselves had only minor effects on sperm motility.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

Targeting of SCG10 to the area of the Golgi complex is mediated by its NH2-terminal region.

SCG10 is a neuronal growth-associated protein that is concentrated in the growth cones of developing neurons. SCG10 shows a high degree of sequence homology to the ubiquitous phosphoprotein stathmin, which has been recently identified as a factor that destabilizes microtubules by increasing their catastrophe rate. Whereas stathmin is a soluble cytosolic protein, SCG10 is membrane-associated, indicating that the protein acts in a distinct subcellular compartment. Identifying the precise intracellular distribution of SCG10 as well as the mechanisms responsible for its specific targeting will contribute to elucidating its function. The main structural feature distinguishing the two proteins is that SCG10 contains an NH2-terminal extension of 34 amino acids. In this study, we have examined the intracellular distribution of SCG10 in PC12 cells and in transfected COS-7 cells and the role of the NH2-terminal domain in membrane-binding and intracellular targeting. SCG10 was found to be localized to the Golgi complex region. We show that the NH2-terminal region (residues 1-34) was necessary for membrane targeting and Golgi localization. Fusion proteins consisting of the NH2-terminal 34 amino acids of SCG10 and the related protein stathmin or the unrelated protein, beta-galactosidase, accumulated in the Golgi, demonstrating that this sequence was sufficient for Golgi localization. Biosynthetic labeling of transfected COS-7 cells with [3H]palmitic acid revealed that two cysteine residues contained within the NH2-terminal domain were sites of palmitoylation.

Animals↗

Differential modulation of stimulatory and inhibitory Fc gamma receptors on human monocytes by Th1 and Th2 cytokines.

Immune complex-mediated inflammatory responses are initiated by Fc gamma R on phagocytes. We report in this study that an inhibitory receptor, Fc gamma RIIb2, is expressed on circulating human monocytes, and when co-cross-linked with stimulatory Fc gamma R it down-regulates effector function. Fc gamma RIIb2 expression is increased by IL-4 and decreased by IFN-gamma, in contrast to the activating receptor, Fc gamma RIIa, which is increased by IFN-gamma and decreased by IL-4. Thus, Th1 and Th2 cytokines differentially regulate the opposing Fc gamma R systems, altering the balance of activating and inhibiting Fc gamma R. The detection and cytokine modulation of Fc gamma RIIb2 in human myeloid cells provide evidence of a negative regulator of immune complex-mediated responses in human phagocytes and offer a new approach to limit Ab-triggered inflammation in autoimmune disease.

Adjuvants, Immunologic↗

Heat-mediated immune complex dissociation and enzyme-linked immunosorbent assay signal amplification render p24 antigen detection in plasma as sensitive as HIV-1 RNA detection by polymerase chain reaction.

OBJECTIVE: To compare heat denaturation and acidification as immune complex dissociation (ICD) methods in adult HIV-1 infection and to increase the sensitivity by a signal-amplification-boosted HIV-1 p24 antigen enzyme-linked immunosorbent assay (ELISA). DESIGN: Prospective and retrospective blinded study of paired serum and plasma samples from 245 patients (112 of class A, 66 of B, 67 of C of the Centers for Disease Control and Prevention 1993 classification). METHODS: Plasma and sera were prospectively tested for antigen by ELISA using native, acidified, or heat-denatured material. Retrospective tests included batch analysis of heat-denatured samples for antigen by the signal-amplification-boosted ELISA and for viral RNA. RESULTS: With serum, native antigen was reactive in 26.5%. Acidification increased the rate to 53.1% (P < or = 0.0001), but was inefficient at a CD4+ count > or = 500 x 10(6)/l. Heat denaturation further elevated the rate to 67.8% (P < or = 0.0007) and the use of plasma to 78.0% (P < or = 0.008). The boosted ELISA, performed with plasma samples diluted 1 :6, which eliminated the problem of heat-induced sample coagulation, was confirmed positive in 89.5% of serum and 97.8% of plasma samples. RNA was detected in 95.7%. CONCLUSION: Heat-mediated ICD combined with a signal-amplification-boosted ELISA detects HIV-1 expression as sensitively as a polymerase chain reaction kit for viral RNA, but at only a fraction of the cost. The procedure uses a 50 microliters plasma sample and should be fully automatable.

Adult↗

Rapid receptor-proximal signaling assays for FcR gamma-containing receptors.

Novel, cell-based assays, based on bioluminescence resonance energy transfer, have been developed for FcepsilonRI- and GPVI-FcRgamma complex-mediated signaling at receptor-proximal steps. In a stable transfectant of the HEK-293 cell line expressing human FcepsilonRIalpha, FcepsilonRIbeta, and FcRgamma-GFP2 and Syk(1-265)-Rluc fusion proteins, FcepsilonRI cross-linking markedly increased BRET2 ratios, which are the ratios of GFP2 emission to Rluc emission. These ratios reflect the FcRgamma-GFP2-Syk(1-265)-Rluc interaction in living cells. The signals are specifically inhibited by the Src-family kinase inhibitor PP2. Separately, in transient transfectants expressing GPVI, FcRgamma-GFP2, and Syk(1-265)-Rluc, the GPVI-specific ligand convulxin induced a two-fold increase in the BRET2 ratio and this increase was also inhibited by PP2. Finally, a differential assay was developed which permits the measurement of FcepsilonRI- and GPVI-FcRgamma complex-mediated signaling in the same cell. These assays provide useful methods for monitoring FcRgamma-Syk interaction in real time in living cells and may contribute to the understanding of signal regulation through FcRgamma-containing receptors.

Blotting, Western↗

Focal adhesion kinase is redistributed to focal complexes and mediates cell spreading in macrophages in response to M-CSF.

The macrophage colony-stimulating factor (M-CSF, CSF-1) regulates survival, proliferation and differentiation of mononuclear phagocytes, as well as macrophage motility and morphology. The latter features are usually regulated by ECM-mediated activation of integrins and subsequent tyrosine phosphorylation of cellular proteins, including focal adhesion kinase (FAK). FAK is phosphorylated by downstream receptor tyrosine kinases as well. We addressed the question whether M-CSF regulates FAK tyrosine phosphorylation in macrophages, and found that M-CSF induces FAK phosphorylation at all known tyrosine residues. This phosphorylation was dependent on Src. Extracellularly-regulated kinase (ERK), Jun N-terminal kinase (JNK) and phosphatidylinositol-3-kinase (PI3K) were found to be negatively involved in M-CSF-induced FAK phosphorylation, as their inhibition resulted in FAK hyper-phosphorylation. Following M-CSF treatment, FAK and the active forms of M-CSFR and Src were redistributed to the cytoskeleton, where active ERK, JNK and PI3K were detectable. Immunofluorescence showed the presence of FAK and its active form in focal complexes following M-CSF treatment. Moreover, cell spreading and adhesion were impaired when FAK tyrosine phosphorylation was abrogated by either transfection with FRNK, a dominant negative form of FAK, or treatment with a number of inhibitors of upstream FAK-activating signals. These results point to a relevant role for FAK in the regulation of cell spreading and adhesion in macrophages.

Animals↗

Cyclosporin-A differentially affects apoptosis during in vivo rat thymocyte maturation.

Maturation arrest and interference with selection are two well-documented effects of cyclosporin-A (CsA) on the thymus. We recently hypothesized that these effects are related and owing to the reduced T-cell receptor (TCR)-CD3 complex-mediated signal transduction in thymocytes upon CsA treatment. In this hypothesis, the maturation arrest is the result of the additional depletion of thymocytes that normally survive by positive selection, whereas the impaired self-tolerance induction is caused by an increased survival of thymocytes that normally undergo negative selection. In this view, it is anticipated that CsA differentially affects thymocyte apoptosis during in vivo thymocyte maturation. Indeed, we report in this study a strong increase in apoptotic cells in the thymic cortex on in situ analysis. Simultaneously, the number of apoptotic cells had decreased at the cortico-medullary zone which is held to be the site for negative selection. Rapamycin (Rapa) also interferes with thymocyte maturation by inhibiting cytokine-driven proliferation. Hence, Rapa preferentially affects the early maturational stages of thymocyte development and is considered not to alter thymocyte selection and subsequent apoptotic events. Indeed, the number of apoptotic events appears not to be altered. However, possibly owing to the decrease in cortical macrophages, the apoptotic cells revealed an atypical enumeration around blood vessels. Taken together, our results favour the hypothesis that the dominant effect of CsA on the thymus is the reduction of the TCR-CD3 complex-mediated signal transduction in thymocytes upon interaction with stromal cells. Furthermore, the preferential localization of apoptotic cells next to blood vessels upon Rapa administration may indicate that endothelial cells are a back-up system for the removal of apoptotic cells.

Animals↗

A Mediator subunit, MDT-15, integrates regulation of fatty acid metabolism by NHR-49-dependent and -independent pathways in C. elegans.

The Caenorhabditis elegans Nuclear Hormone Receptor NHR-49 coordinates expression of fatty acid (FA) metabolic genes during periods of feeding and in response to fasting. Here we report the identification of MDT-15, a subunit of the C. elegans Mediator complex, as an NHR-49-interacting protein and transcriptional coactivator. Knockdown of mdt-15 by RNA interference (RNAi) prevented fasting-induced mRNA accumulation of NHR-49 targets in vivo, and fasting-independent expression of other NHR-49 target genes, including two FA-Delta9-desaturases (fat-5, fat-7). Interestingly, mdt-15 RNAi affected additional FA-metabolism genes (including the third FA-Delta9-desaturase, fat-6) that are regulated independently of NHR-49, suggesting that distinct unidentified regulatory factors also recruit MDT-15 to selectively modulate metabolic gene expression. The deregulation of FA-Delta9-desaturases by knockdown of mdt-15 correlated with dramatically decreased levels of unsaturated FAs and multiple deleterious phenotypes (short life span, sterility, uncoordinated locomotion, and morphological defects). Importantly, dietary addition of specific polyunsaturated FAs partially suppressed these pleiotropic phenotypes. Thus, failure to properly govern FA-Delta9-desaturation contributed to decreased nematode viability. Our findings imply that a single subunit of the Mediator complex, MDT-15, integrates the activities of several distinct regulatory factors to coordinate metabolic and hormonal regulation of FA metabolism.

Animals↗

Polymorphism of the FcgammaRIIalpha IgG receptor in patients with lupus nephritis and glomerulopathy.

OBJECTIVE: FcgammaRIIalpha is a low affinity receptor that has 2 codominantly expressed alleles, R131 and H131, which differ in their ability to bind immunoglobulin G (IgG) subclasses. Cells expressing H131 bind more efficiently complexed IgG2 than those expressing the R131 variant. The FcgammaRIIalpha polymorphism has been shown to be associated with lupus nephritis. We evaluated the relevance of FcgammaRIIalpha gene polymorphism in the development of lupus immune complex mediated nephritis, as well as its clinical and histological characteristics, by comparing the genotype and allelic distribution of this receptor in lupus nephritis to ethnically matched Brazilian patients with primary glomerulonephritis. METHODS: Patients with lupus nephritis (n = 76) and patients with diagnosis of primary glomerulonephritis (n = 63) established by kidney biopsies were recruited. FcgammaRIIalpha genotyping was performed by polymerase chain reaction with allele-specific primers to distinguish between the 2 allelic forms (H131 and R131). RESULTS: We observed a skewed frequency of genotype FcgammaRIIalpha-R/R131 and the R131 allele in patients with lupus nephritis compared to primary glomerulopathies (p < 0.05), which disappeared when we compared this population with lupus nephritis only to the group with proliferative glomerulonephritis (IgA nephropathy, membranoproliferative glomerulonephritis, and mesangial proliferative glomerulonephritis). No association was found between genotype distribution and histological class of lupus nephritis or renal insufficiency available at the beginning and end of followup. We found an association of genotype FcgammaRIIalpha-R/R131 with higher antinuclear antigen titers and complement 3 consumption (p < 0.05). CONCLUSION: The skewed distribution of FcgammaRIIalpha genotypes with the predominance of homozygous R/R131 genotype observed in patients with lupus nephritis over nonproliferative idiopathic glomerulonephritis emphasizes its importance as a heritable risk factor for immune complex mediated renal injury in Brazilian patients with lupus.

Adult↗

Administration of dehydroepiandrosterone sulfate retards onset but not progression of autoimmune disease in NZB/W mice.

NZB/W mice spontaneously develop an autoimmune disease characterized by the formation of anti-DNA antibodies and subsequent development of a fatal immune complex-mediated glomerulonephritis. Treatment of NZB/W F1 female mice with DHEAS, a precursor of DHEA, beginning at 2 months of age delayed the onset of autoimmune disease and prolonged survival. Animals treated with DHEAS beginning at 2 months of age had significantly lower anti-dsDNA serum antibody titers when compared to controls. Interestingly, DHEAS treatment had no effect on titers of anti-phosphatidylcholine (PtC) "natural" antibodies. Serum levels of IL-10, which increase with onset of disease, were also significantly reduced in mice treated with DHEAS beginning at 2 months of age. In contrast, if DHEAS treatment was started at 6 months of age, there was no effect on mortality rates. In addition, treatment of animals with DHEAS beginning at 6 months of age did not lower serum titers of anti-dsDNA and had no ameliorating effect on anti-PtC antibody production. Serum levels of IL-10 were also unaffected in mice treated with DHEAS beginning at 6 months of age. Together, these data suggest that parenteral administration of DHEAS is effective at delaying autoimmune disease and prolonging survival when given prior to the onset of symptoms. However, DHEAS treatment does not affect the course of disease when treatment begins after the onset of disease. We propose that DHEA(S) therapy used under similar conditions would not provide a clinically beneficial effect in the specific symptoms of immune complex-mediated glomerulonephritis.

Age Factors↗

Anti-IgE for chronic asthma.

BACKGROUND: Omalizumab is a recombinant humanised monoclonal antibody directed against immunoglobulin E (IgE) to inhibit the immune system's response to allergen exposure. Omalizumab is directed against the binding site of IgE for its high affinity Fc receptor. It prevents free serum IgE from attaching to mast cells and other effector cells and prevents IgE mediated inflammatory changes. The complexes of Omalizumab and IgE formed as a result of treatment are small and not thought to be able to trigger complement activation or give rise to immune complex mediated pathology. OBJECTIVES: To determine the efficacy of anti-IgE in patients with allergic asthma. SEARCH STRATEGY: We searched the Cochrane Airways Group Asthma trials register (February 2003) for potentially relevant studies. SELECTION CRITERIA: Randomised control trials examining anti-IgE administered in any manner for any duration. DATA COLLECTION AND ANALYSIS: Two reviewers independently assessed study quality and extracted and entered data. Three modes of administration were identified from the published literature (inhaled, intravenous and subcutaneous injection). Subgroup analysis was performed by asthma severity. Data were extracted from published and unpublished sources. MAIN RESULTS: Eight trials were included in the review, contributing a total of 2037 mild to severe allergic asthmatic participants with high levels of IgE. Treatment with intravenous and subcutaneous Omalizumab resulted in a 98 to 99% reduction in free IgE, reductions which were not observed following placebo treatment. Significant increases in the number of participants who were able to reduce (> 50% reduction in daily corticosteroid usage (four trials): odds ratio (OR) 2.50, 95% confidence interval (CI) 2.02 to 3.10; or completely withdraw their daily steroid intake (four trials): OR 2.50, 95%CI 2.00 to 3.13, were observed. Participants treated with Omalizumab were less likely to suffer an asthma exacerbation (stable steroid phase (three trials): OR 0.46, 95%CI 0.35 to 0.61; steroid reduction phase (three trials) OR 0.46, 95% CI 0.36 to 0.59). REVIEWER'S CONCLUSIONS: Omalizumab was significantly more effective than placebo at increasing the numbers of patients who were able to reduce or withdraw their inhaled steroids and was effective in reducing asthma exacerbations. Omalizumab was well tolerated, although the safety profile requires longer term assessment. Patient and physician assessment of the drug was positive. Further assessment in paediatric and severe adult populations is necessary, as is comparison with inhaled corticosteroids.

Anti-Asthmatic Agents↗

ERK phosphorylation potentiates Elk-1-mediated ternary complex formation and transactivation.

Induction of the human c-fos proto-oncogene by mitogens depends on the formation of a ternary complex by p62TCF with the serum response factor (SRF) and the serum response element (SRE). We demonstrate that Elk-1, a protein closely related to p62TCF in function, is a nuclear target of two members of the MAP kinase family, ERK1 and ERK2. Phosphorylation of Elk-1 increases the yield of ternary complex in vitro. At least five residues in the C-terminal domain of Elk-1 are phosphorylated upon growth factor stimulation of NIH3T3 cells. These residues are also phosphorylated by purified ERK1 in vitro, as determined by a combination of phosphopeptide sequencing and 2-D peptide mapping. Conversion of two of these phospho-acceptor sites to alanine impairs the formation of ternary complexes by the resulting Elk-1 proteins. Removal of these serine residues also drastically diminishes activation of the c-fos promoter in epidermal growth factor-treated cells. Analogous mutations at other sites impair activation to a lesser extent without affecting ternary complex formation in vitro. Our results indicate that phosphorylation regulates ternary complex formation by Elk-1, which is a prerequisite for the manifestation of its transactivation potential at the c-fos SRE.

3T3 Cells↗

Immunopharmacology and adverse drug reactions.

Adverse drug reactions are common and troublesome complications of contemporary pharmacotherapy. Adverse drug reactions are frequently, and often incorrectly, referred to as "allergy". Although there are multiple mechanisms for adverse drug reactions, adverse drug reactions mediated by the immune system account for a disproportionate number of fatal and serious adverse reactions, and constitute a major clinical problem for patients and physicians. The immune system has evolved in multicellular organisms as a defence against infection. Interactions between drugs and the immune system occur as inadvertent consequences of the protective function of the immune system, with drug molecules or drug-carrier haptens being recognized as "non-self" by the immune system. The classical mechanisms for drug hypersensitivity described by Gell and Coombs (Types 1 to 4) include IgE-mediated, cytotoxic, immune complex-mediated and delayed mechanism. These mechanisms provide elegant models for drug-immune interactions that can provide mechanistic explanations for events such as urticaria associated with penicillins. However, these mechanisms do not account for many of the immunologically mediated adverse reactions commonly encountered in clinical practice. Over the last two decades, there has been an increasing awareness of the importance of reactive drug metabolites and drug-protein interactions in the initiation of immunologic events mediating adverse drug reactions. Reactive drug metabolites may produce direct and profound effects on various functions of the immune system. Although some adverse reactions mediated by the immune system occur with equal frequency among adults and children, some of these reactions appear to be markedly more common among children than adults.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Functional studies of chloroplast glyceraldehyde-3-phosphate dehydrogenase subunits A and B expressed in Escherichia coli: formation of highly active A4 and B4 homotetramers and evidence that aggregation of the B4 complex is mediated by the B subunit carboxy terminus.

Chloroplast glyceraldehyde-3-phosphate dehydrogenase (phosphorylating, E.C. 1.2.1.13) (GAPDH) of higher plants exists as an A2B2 heterotetramer that catalyses the reductive step of the Calvin cycle. In dark chloroplasts the enzyme exhibits a molecular mass of 600 kDa, whereas in illuminated chloroplasts the molecular mass is altered in favor of the more active 150 kDa form. We have expressed in Escherichia coli proteins corresponding to the mature A and B subunits of spinach chloroplast GAPDH (GapA and GapB, respectively) in addition to a derivative of the B subunit lacking the GapB-specific C-terminal extension (CTE). One mg of each of the three proteins so expressed was purified to electrophoretic homogeneity with conventional methods. Spinach GapA purified from E. coli is shown to be a highly active homotetramer (50-70 U/mg) which does not associate under aggregating conditions in vitro to high-molecular-mass (HMM) forms of ca. 600 kDa. Since B4 forms of the enzyme have not been described from any source, we were surprised to find that spinach GapB purified from E. coli was active (15-35 U/mg). Spinach GapB lacking the CTE purified from E. coli is more highly active (130 U/mg) than GapB with the CTE. Under aggregating conditions, GapB lacking the CTE is a tetramer that does not associate to HMM forms whereas GapB with the CTE occurs exclusively as an aggregated HMM form. The data indicate that intertetramer association of chloroplast GAPDH in vitro occurs through GapB-mediated protein-protein interaction.

Amino Acid Sequence↗

C1q production and C1q-mediated immune complex retention in lymphoid follicles of rat spleen.

Involvement of C1q in retaining immune complexes in germinal centers in rat spleen was studied in vivo and in vitro. C1q production was found in fibroblastic reticulum cells in the peripheral mantle zone, in follicular dendritic cells in germinal centers, and in transitional forms between these two cells in the inner mantle zone. In passively immunized animals, immune complexes were found transiently on fibroblastic reticulum cells, then on the transitional forms and follicular dendritic cells. Extracellular C1q was detected by the presence of immune complexes on both the transitional forms and follicular dendritic cells, but not on fibroblastic reticulum cells. Thus, the fibroblastic reticulum cell appeared to trap immune complexes but not to retain either immune complexes or C1q. The morphology and function of the fibroblastic reticulum cell and the follicular dendritic cell suggest that they belong to the same lineage. Immune complexes were bound in vitro to germinal centers in cryostat spleen sections in the same manner as those retained in vivo. The binding required no complement in the incubation medium and was inhibited by C1q-suppressing factors. The extracellular C1q originating from the follicular cells may therefore play a role in retaining immune complexes in the germinal center.

Animals↗