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DNA damage by copper(II) complexes: coordination-structural dependence of reactivities.

A variety of copper complexes with different structural features have been shown to bind double-helical DNA with binding constants of 10(4)-10(7) M-1 and to promote double-strand DNA damage upon reductant/H2O2 activation. The interaction of the Cu complex with DNA results in hyperchromism and shifts to longer wavelengths of the strongest transitions in the Cu complexes, as well as striking hypochromism or hyperchromism of DNA absorption at 260 nm. In the presence of DMPO as the spin trap, the solution of each copper complex exhibits typical four-line ESR spectra of the hydroxyl radical by adding 2-mercaptoethanol and H2O2 to the solution. Quantitation by 2-deoxy-D-ribose shows that the competence of hydroxyl radical generation by the copper complexes upon reductant and H2O2 activation decreases in order, that is, Cu(HTCD)(2+)-Cu(Im)4Cl2-Cu(IDB) (NO3)2 > Cu(IDB)Cl2 > Cu(IDBt)Cl2. The copper complex-mediated hydroxyl radical, a powerful oxidant that attacks the adjacent DNA, is responsible for the DNA oxidative damage. The lambda DNA damage chemistry illustrates that the competence and selectivity of double-strand lambda DNA damage by the copper complexes are dependent on their geometric structures and types of ligands. The decreasing order of the DNA damage capacity by the present complexes is Cu(Im)4Cl2-Cu(IDB)-(NO3)2 > Cu(HTCD)2+ > Cu(IDBt)Cl2 > Cu(IDB)Cl2.

Animals↗

Cyclic electron flow around photosystem I is essential for photosynthesis.

Photosynthesis provides at least two routes through which light energy can be used to generate a proton gradient across the thylakoid membrane of chloroplasts, which is subsequently used to synthesize ATP. In the first route, electrons released from water in photosystem II (PSII) are eventually transferred to NADP+ by way of photosystem I (PSI). This linear electron flow is driven by two photochemical reactions that function in series. The cytochrome b6f complex mediates electron transport between the two photosystems and generates the proton gradient (DeltapH). In the second route, driven solely by PSI, electrons can be recycled from either reduced ferredoxin or NADPH to plastoquinone, and subsequently to the cytochrome b6f complex. Such cyclic flow generates DeltapH and thus ATP without the accumulation of reduced species. Whereas linear flow from water to NADP+ is commonly used to explain the function of the light-dependent reactions of photosynthesis, the role of cyclic flow is less clear. In higher plants cyclic flow consists of two partially redundant pathways. Here we have constructed mutants in Arabidopsis thaliana in which both PSI cyclic pathways are impaired, and present evidence that cyclic flow is essential for efficient photosynthesis.

Adenosine Triphosphate↗

Massive pulmonary hemorrhage and fulminant renal failure associated with immune complex glomerulonephritis.

A 54-year-old man had massive pulmonary hemorrhage and fulminant renal failure. Although his clinical presentation was similar to that of Goodpasture's syndrome, his renal disease was associated with deposition of immune complex rather than with production of antiglomerular basement membrane antibody. Serum cryoglobulins were present, presumptive evidence of circulating immune complexes; serum antiglomeral basement membrane antibodies were absent. Renal biopsy revealed a crescentic, exudative glomerulonephritis with a granular immunofluorescence pattern; subepithelial deposits were demonstrated by electron microscopy. This immune complex glomerulonephritis was thought possibly to be postinfectious in origin, with characteristics distinguishing it from Goodpasture's syndrome. Pulmonary hemorrhage and crescentic immune-complex-mediated glomerulonephritis are reviewed.

Acute Kidney Injury↗

Immune complex glomerulonephritis is induced in rats immunized with heterologous myeloperoxidase.

Anti-neutrophil cytoplasmic antibodies (ANCA), including anti-myeloperoxidase (MPO) antibodies, are associated with pauci-immune necrotizing small vessel vasculitis or glomerulonephritis. In order to substantiate a pathogenic role for ANCA, an animal model of pauci-immune ANCA-induced glomerulonephritis or vasculitis is required. Brouwer et al. reported pauci-immune glomerulonephritis in rats immunized with human MPO followed by perfusion of kidneys with lysosomal enzyme extract combined with H2O2, and suggested that this could serve as a model of ANCA-induced disease. We repeated these studies in spontaneously hypertensive rats (SHR) and Brown Norway rats (BNR). We immunized rats with human MPO. When circulating anti-MPO antibodies were detectable by indirect immunofluorescence microscopy and ELISA, blood pressure was measured, then perfusion of the left kidney of each rat was done via the renal artery in a closed, blood-free circuit with either MPO + H2O2, MPO, H2O2 alone or MPO + H2O2 + neutral protease. Rats were killed on day 4 or day 10 after perfusion, and specimens were examined by light and immunofluorescence microscopy. Pathological lesions and deposits of IgG, C3, and MPO were found in immunized rats perfused with MPO + H2O2 with or without neutral protease, or MPO alone, in both rat strains and on both day 4 and day 10. The degree of histologic injury was proportional in intensity to the amount of IgG immune deposits. Spontaneously hypertensive rats sustained more damage and higher blood pressure than Brown Norway rats. No lesion was observed in immunized rats perfused with H2O2 or in the non-perfused right kidneys. Some of the non-immunized rats perfused with MPO + H2O2 developed pathological lesions. In conclusion, these rat models are examples of immune complex-mediated glomerulonephritis, and therefore are not similar to human ANCA-associated disease.

Animals↗

Toll-like receptor 4 induced FcgammaR expression potentiates early onset of joint inflammation and cartilage destruction during immune complex arthritis: Toll-like receptor 4 largely regulates FcgammaR expression by interleukin 10.

OBJECTIVE: To study the role of Toll-like receptor (TLR)2 and 4 in the onset of joint inflammation and cartilage destruction during immune complex-mediated arthritis (ICA), and its relationship with FcgammaR expression. MATERIALS AND METHODS: ICA was induced in knee joints of TLR2-/- and TLR4-/- mice and their wild-type controls. Joint inflammation and cartilage destruction were measured in the knee joint using histology. mRNA levels were determined in synovial specimens and macrophages using quantitative polymerase chain reaction and cytokine protein levels in synovial washouts using Bioplex. RESULTS: Joint inflammation and cartilage destruction were not different in arthritic TLR2-/- and wild-type mice. By contrast, at day 1 after ICA induction, joint swelling and proteoglycan depletion in knee joints of TLR4-/- mice were considerably lower (inflammation 68-79% and proteoglycan depletion 27-76%) when compared with wild-type controls. Cytokine production at this time point was markedly reduced in TLR4-/- mice (interleukin (IL)1, IL6, macrophage inflammatory chemokine (MIP)-1alpha and keratinocyte-derived chemokine 49%, 72%, 68% and 84%, respectively). In arthritic synovia of TLR4-/- mice, and also after injection of the antigen poly-l-lysine (PLL) lysozyme alone, mRNA levels of FcgammaR, and the FcgammaR regulating cytokine IL10 were considerably lower. Stimulation of peritoneal macrophages with PLL lysozyme up regulated mRNA levels of FcgammaR and IL10, whereas neutralisation by anti-IL10 antibodies largely blocked FcgammaR up regulation. At day 4, joint inflammation and cartilage destruction were comparable in TLR4-/- mice and wild-type controls. CONCLUSION: TLR4 regulates early onset of joint inflammation and cartilage destruction during ICA arthritis by up regulation of FcgammaR expression and enhanced cytokine production. TLR4-mediated up regulation of FcgammaR is largely mediated by IL10.

Animals↗

Serous otitis media and immunological reactions in the middle ear mucosa.

An immunohistochemical study was performed on the middle ear mucosa of 21 children with chronic serous otitis media (SOM). In 86% of the patients a highly organized lymphatic tissue was found in the middle ear mucosa which can be regarded as part of the mucosa associated lymphoid tissue (MALT). Features of an immune complex mediated (type III) hypersensitivity reaction were absent.

Adult↗

Interleukin 10 treatment of patients with rheumatoid arthritis enhances Fc gamma receptor expression on monocytes and responsiveness to immune complex stimulation.

OBJECTIVE: Several clinical studies performed with human recombinant interleukin 10 (IL-10) in patients with rheumatoid arthritis (RA) have shown little efficacy. We investigated potentially proinflammatory in vivo effects of IL-10 in humans. We evaluated the upregulation of Fc gamma receptor (Fc gamma R) expression on monocytes/macrophages (and granulocytes) in patients with RA receiving different dosages of IL-10. METHODS: Together with changes in disease activity and several cell markers, the expression of Fc gamma RI, Fc gamma RIIa, and Fc gamma RIII was determined on granulocytes and monocytes/macrophages from the peripheral blood of 6 patients with active RA before and after treatment with recombinant human IL-10. In addition, the in vitro effect of IL-10 on Fc gamma R expression on monocytes/macrophages in combination with their susceptibility to immune complex induced production of tumor necrosis factor-alpha(TNF-alpha) was assessed. RESULTS: Clinical improvement was not observed in the IL-10 treated patients (based on ACR20 criteria). Significant decreases in thrombocyte numbers were observed in patients receiving IL-10. No changes in cell markers such as CD14 were found. On the other hand, expression of Fc gamma RI and Fc gamma RIIa on monocytes/macrophages was increased upon high dose IL-10 treatment. Interestingly, increases in expression of Fc gamma RI and Fc gamma RIIa correlated with a decrease in thrombocyte numbers. In vitro, IL-10 similarly upregulated Fc gamma RI and Fc gamma RIIa expression on monocytes/macrophages from RA patients. This was accompanied by increased TNF-a production after immune complex stimulation. CONCLUSION: These findings indicate that upregulation of Fc gamma R expression in RA with IL-10 treatment may counteract the otherwise antiinflammatory effects of IL-10 by potentiating immune complex mediated proinflammatory responses.

Antigen-Antibody Complex↗

The roles of PDZ-containing proteins in PLC-beta-mediated signaling.

Mammalian phospholipase C-beta isozymes are activated by a heterotrimeric GTP-binding protein linked to various cell surface receptors. Recent reports suggest that PDZ domain proteins play a significant role of PDZ-containing proteins in the regulation of mammalian PLC-beta isozymes. PDZ-containing proteins mediate the clustering of receptors and signaling molecules and thereby regulate agonist-induced signal transduction in polarized cells such as neuronal and epithelial cells. NORPA, a Drosophila PLC-beta, is known to be a component of a signaling complex that includes TRP and rhodopsin through interaction with INAD, a PDZ-containing protein. Mammalian PLC-beta1 and -beta2 isoforms interact with a PDZ-containing protein NHERF which is coupled to Trp4, a Ca(2+) channel. In addition, PLC-beta3 specifically interacts with E3KARP, another protein closely related to NHERF, through its C-terminal PDZ-binding motif. E3KARP up-regulates the PLC-beta3 activation coupled to muscarinic receptor. In this review, the role of signaling complexes mediated by PDZ-containing proteins in the regulation of PLC-beta isoforms will be discussed.

Animals↗

Release of both native and non-native proteins from a cis-only GroEL ternary complex.

Protein folding by the double-ring chaperonin GroEL is initiated in cis ternary complexes, in which polypeptide is sequestered in the central channel of a GroEL ring, capped by the co-chaperonin GroES. The cis ternary complex is dissociated (half-life of approximately 15 s) by trans-sided ATP hydrolysis, which triggers release of GroES. For the substrate protein rhodanese, only approximately 15% of cis-localized molecules attain their native form before hydrolysis. A major question concerning the GroEL mechanism is whether both native and non-native forms are released from the cis complex. Here we address this question using a 'cis-only' mixed-ring GroEL complex that binds polypeptide and GroES on only one of its two rings. This complex mediates refolding of rhodanese but, as with wild-type GroEL, renaturation is quenched by addition of mutant GroEL 'traps', which bind but do not release polypeptide substrate. This indicates that non-native forms are released from the cis complex. Quenching of refolding by traps was also observed under physiological conditions, both in undiluted Xenopus oocyte extract and in intact oocytes. We conclude that release of non-native forms from GroEL in vivo allows a kinetic partitioning among various chaperones and proteolytic components, which determines both the conformation and lifetime of a protein.

Adenosine Diphosphate↗

Plasma exchange in rheumatoid vasculitis.

Vasculitis is an uncommon, extremely debilitating complication of severe, chronic rheumatoid arthritis. High levels of circulating immune complexes along with vascular deposition of immunoglobulins and complement indicate an immune complex mediated disease. No pharmacologic therapy has been completely effective and the incidence of mortality is exceptionally high. This study shows clinical improvement with combination of plasma exchange and cytoxan therapy. We report an association in the conspicuous decline of immune complexes with objective clinical remission in 2 patients who underwent combination therapy. This adjunctive combination therapeutic modality is recommended in the treatment of rheumatoid vasculitis.

Aged↗

A possible involvement of TIF1 alpha and TIF1 beta in the epigenetic control of transcription by nuclear receptors.

Nuclear receptors (NRs) are ligand-inducible transcription factors that mediate complex effects on development, differentiation and homeostasis. They regulate the transcription of their target genes through binding to cognate DNA sequences as homodimers or heterodimers. The molecular mechanisms underlying transcriptional activation by NRs are still poorly understood, although intermediary factors (mediators) appear to be involved in mediating the transactivation functions of NRs. TIF1 has been identified previously as a protein that interacts specifically with the ligand binding domain of several nuclear receptors, both in yeast and in vitro. The characteristics of these interactions have led us to suggest that TIF1 might be a mediator of the NR ligand-inducible activation function AF-2. Using a two-hybrid screening in yeast, we have now identified two TIF1-binding proteins, mHP1 alpha and mMOD1, that are mouse homologues of the Drosophila heterochromatinic protein 1. Using mHP1 alpha as a bait in a second two-hybrid screening, we have isolated cDNAs encoding proteins that are also very likely to be involved in chromatin structure and function, as well as a protein structurally and functionally related to TIF1 (renamed TIF1 alpha), which was named TIF1 beta. Here we discuss how the function of members of the TIF1 family in the control of transcription could be exerted at the level of the structure of the chromatin template.

Amino Acid Sequence↗

Arthritis associated with salmonella infection.

Six cases of arthritis caused by or associated with Salmonella infection are reported. It is stated that an arthritis associated with a Salmonella infection cannot be excluded on the negative results of the Widal test. Consequent upon Salmonella infection two different types of arthritis might develop: a) monoarticular infectious arthritis or b) a subacute reactive oligo-articular arthritis. In this study a patient with a chronic destructive "reactive" oligoarthritis is described, resembling experimental "Salmonella-associated arthritis" in rats. This form of arthritis might be regarded as an immune complex mediated disease associated with a chronic infection.

Adult↗

Peptidomimetic C5a receptor antagonists with hydrophobic substitutions at the C-terminus: increased receptor specificity and in vivo activity.

A new class of peptidomimetic C5a receptor antagonists characterized by C-terminal amino acids with hydrophobic side chains is presented. Systematic optimization of the first hits led to JPE1375 (36), which was intensively characterized in vitro and in vivo. Compound 36 exhibits high microsomal stability and receptor specificity and is highly active in an immune complex mediated peritonitis model (reverse passive Arthus reaction) in mice.

Animals↗

Clinical significance of anti-Sm antibody in systemic lupus erythematosus & related disorders.

A retrospective analysis was undertaken of the clinical and immunological profile of 33 anti-Sm antibody positive (group I) and 243 anti-Sm antibody negative (group II) patients with systemic connective tissue diseases including systemic lupus erythematosus and related disorders (overlap, mixed and undifferentiated connective tissue diseases). The disease patterns were comparable, except for cutaneous vasculitis and hypocomplementaemia (low serum C3 levels). Vasculitis was observed in 55 per cent of group I and 35 per cent of group II subjects (P less than 0.05). Hypocomplementemia was also detected more frequently (86%) in group I as compared to group II (66%) patients (P less than 0.05). No association was found between anti-Sm antibody and renal, neuropsychiatric and cardiopulmonary features. The study thus demonstrated the association of anti-Sm antibody with immune complex mediated vasculitis.

Adolescent↗

Renal cell-expressed TNF receptor 2, not receptor 1, is essential for the development of glomerulonephritis.

TNF is essential for the development of glomerulonephritis, an immune-mediated disorder that is a major cause of renal failure worldwide. However, TNF has proinflammatory and immunosuppressive properties that may segregate at the level of the 2 TNF receptors (TNFRs), TNFR1 and TNFR2. TNFR1-deficient mice subjected to immune complex-mediated glomerulonephritis developed less proteinuria and glomerular injury, and fewer renal leukocyte infiltrates at early time points after disease induction, and this was associated with a reduced systemic immune response to nephrotoxic rabbit IgG. However, proteinuria and renal pathology were similar to those in wild-type controls at later time points, when lack of TNFR1 resulted in excessive renal T cell accumulation and an associated reduction in apoptosis of these cells. In sharp contrast, TNFR2-deficient mice were completely protected from glomerulonephritis at all time points, despite an intact systemic immune response. TNFR2 was induced on glomerular endothelial cells of nephritic kidneys, and TNFR2 expression on intrinsic cells, but not leukocytes, was essential for glomerulonephritis and glomerular complement deposition. Thus, TNFR1 promotes systemic immune responses and renal T cell death, while intrinsic cell TNFR2 plays a critical role in complement-dependent tissue injury. Therefore, therapeutic blockade specifically of TNFR2 may be a promising strategy in the treatment of immune-mediated glomerulonephritis.

Animals↗

Glomerular deposition of the complement C4 isotypes C4A and C4B in glomeruonephritis.

BACKGROUND: Complement C4 is a component of the classical complement pathway, which is a major mediator of inflammation in many forms of glomerulonephritis. The two isoforms of C4-C4A and C4B-differ in their physicochemical and functional properties. METHODS: The glomerular deposition of C4A and C4B was investigated in 39 cases of glomerulonephritis with classical pathway activation using isotype-specific monoclonal antibodies 99H7 (C4A) and 1288 (C4B) and indirect immunofluorescence. Complement C4 phenotypes of all patients were determined by agarose gel electrophoresis and immunoprecipitation. RESULTS: Three biopsies contained only the isotype C4B. C4 phenotyping revealed complete C4A deficiency in these three patients. Both isotypes C4A and C4B were detected in 36 biopsies. In 19 (53%) thereof staining for both isotypes was identical. In the remaining 17 (47%), staining intensity of C4A predominated over C4B. The distribution of these two staining patterns did not differ between membranous glomerulonephritis and lupus nephritis. They were also independent of C4A and C4B allotypes including the presence or absence of null alleles at either gene locus. In no case was C4B staining stronger than C4A staining. Serum creatinine and proteinuria did not differ between patients with identical and C4A-dominant C4 deposition. CONCLUSIONS: The most likely but still hypothetical explanation for predominance in glomerular deposition of C4A over C4B in many cases of immune complex-mediated glomerulonephritis is the greater affinity of C4A to protein-containing immune complexes as compared to C4B.

Adolescent↗

Calcium enhances the transfection potency of plasmid DNA-cationic liposome complexes.

It is shown that calcium increases the in vitro transfection potency of plasmid DNA-cationic liposome complexes from 3- to 20-fold. The effect is Ca(2+) specific as other cations, such as Mg(2+) and Na(+), do not give rise to enhanced transfection and the effect can be inhibited by the presence of EGTA. It is shown that Ca(2+) increases cellular uptake of the DNA-lipid complexes, indicating that increased transfection potency arises from increased intracellular delivery of both cationic lipid and plasmid DNA in the presence of Ca(2+). In particular, it is shown that the levels of intact intracellular plasmid DNA are significantly enhanced when Ca(2+) is present. The generality of the Ca(2+) effect for enhancing complex-mediated transfection is demonstrated for a number of different cell lines and different cationic lipid formulations. It is concluded that addition of Ca(2+) represents a simple and useful protocol for enhancing in vitro transfection properties of plasmid DNA-cationic lipid complexes.

Animals↗

Pulmonary hemorrhage and acute renal failure in a patient with mixed connective tissue disease.

Mixed connective tissue disease (MCTD) is considered to have a benign clinical course. Recently, renal disease has been recognized as a frequent complication (20%). This report describes a patient with MCTD who developed pulmonary hemorrhage and acute renal failure. The renal biopsy, in addition to a long-standing membranous nephropathy, revealed a tubulointerstitial nephritis. Immunofluorescent and electron microscopy showed immune complex deposition along the tubular basement membrane. Life-threatening, immune complex-mediated events can occur in the course of MCTD, manifested as pulmonary hemorrhage and tubulointerstitial nephritis.

Acute Kidney Injury↗