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S M Fu

Publications and source records attributed to S M Fu.

At least 37 records · Page 2Linked to original sources

Chemical and serologic characterization of human lambda VIII light chains.

The primary structural features and serologic properties of a newly recognized human lambda light (L) chain V region subgroup (V lambda VIII) were elucidated through study of two monoclonal L chains, Bence Jones proteins HAG and BIV. The V region amino acid sequences of these components were highly homologous to each other and to that deduced from the prototypic V lambda VIII cDNA, Humla8f10, which encodes the L chains of the IgM lambda rheumatoid factor HAF10. Proteins HAG and BIV could be classified as members of the V lambda VIII subgroup and distinguished from L chains of the V lambda I, V lambda II, V lambda III, V lambda IV, and V lambda VI subgroups on the basis of amino acid sequence. In addition to distinctive residues found within the V lambda gene-encoded portion of the molecules, L chains HAG, BIV, and HAF10 contained remarkably different second complementarity-determining regions (CDR2) that consisted of 11 residues, rather than the seven typically found among members of the other five V lambda subgroups. This elongated structure would presumably impart to the ligand-binding site of lambda VIII molecules a markedly different canonical structure compared with those of lambda I, lambda II, lambda III, lambda IV, and lambda VI L chains. By using Bence Jones protein HAG as an immunogen, we obtained polyclonal and monoclonal anti-V lambda VIII subgroup-specific Abs that were used to identify and quantify lambda VIII-related molecules in normal and pathologic states. Among the Ig lambda components present in the serum of normal individuals, approximately 3% had lambda VIII L chains, a frequency comparable to that found among monoclonal Ig lambda proteins or surface(s) Ig lambda+ cells obtained from patients with malignant plasma cell- or B cell-related disorders, respectively. In contrast, lambda VIII L chains were detected on approximately 19% of monoclonal IgM lambda rheumatoid factors produced by B cell lines established from PBLs or synovial cells from patients with rheumatoid arthritis. The results of our studies provide new information on the structural and immunochemical features of lambda VIII L chains and the possible functional importance of the human V lambda VIII subgroup.

Amino Acid Sequence↗

CD40 signaling pathway: anti-CD40 monoclonal antibody induces rapid dephosphorylation and phosphorylation of tyrosine-phosphorylated proteins including protein tyrosine kinase Lyn, Fyn, and Syk and the appearance of a 28-kD tyrosine phosphorylated protein.

CD40 plays an important role in B cell activation, proliferation, and Ig class switching. The signal transduction pathway mediated by CD40 was studied using monoclonal antibody (mAb) 626.1 to CD40. Burkitt's lymphoma and Epstein-Barr virus-transformed B cell lines and tonsilar B lymphocytes were treated with the anti-CD40 mAb for various lengths of time. The early events triggered by CD40 were examined by monitoring the changes in tyrosine phosphorylation of cellular proteins with anti-phosphotyrosine mAb. Dephosphorylation of specific proteins ranging between 50-110 kD and the appearance of a 28-kD tyrosine phosphorylated protein were seen within 30 s in human B cell lines. The dephosphorylation was reversed and the 28-kD protein was dephosphorylated in cells stimulated for 1 min. In resting B cells, the appearance of the 28-kD phosphoprotein was observed in 30 s after the addition of the anti-CD40 mAb. The tyrosine phosphorylation of this protein persisted. The patterns of protein tyrosine phosphorylation differed from those induced by an anti-immunoglobulin M mAb. The changes in the state of tyrosine phosphorylation induced by the anti-CD40 mAb were obviated by mAb to CD45, a protein tyrosine phosphatase (PTP) or by the addition of sodium orthovanadate, a broad PTP inhibitor. They were also blocked by protein tyrosine kinase (PTK) inhibitors, herbimycin A and genistein, and PKC and protein serine/threonine kinase inhibitors, H7 and HA1004. In addition, the alteration in the tyrosine phosphorylation of PTKs Lyn, Fyn, and Syk was directly demonstrated. Engagement of CD40 for 30 s induced a transient decrease in tyrosine phosphorylation of these PTKs. These results indicate that the early events in CD40 signaling involve the complex interaction between PTP and protein kinases.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

Human rheumatoid factors with restrictive specificity for rabbit immunoglobulin G: auto- and multi-reactivity, diverse VH gene segment usage and preferential usage of V lambda IIIb.

To determine the molecular and functional properties of human rheumatoid factors (RF), we established stable hybridomas and Epstein-Barr virus-transformed B cell lines from the synovial fluid or peripheral blood of three patients with rheumatoid arthritis and one patient with systemic lupus erythematosus. 17 cell lines were obtained that produced high-titer immunoglobulin M (IgM) RF that reacted exclusively with rabbit but not human IgG or IgG of other mammalian species. Certain anti-rabbit IgG RF also had specificity for other mammalian antigens (Ag), including cytoskeletal proteins and intracellular proteins found in HeLa cells, as well as for Ag present in an extract prepared from the cell wall of group A streptococci. 13 of the 17 RF contained lambda-type light (L) chains, of which 12 were classified serologically as members of the lambda-L chain variable region (V lambda) subgroup, designated V lambda III. The heavy chain V region (VH) and V lambda sequences of nine of these IgM lambda RF were determined at the cDNA level. Five VH genes in three VH families were used by these antibodies (Ab), including VH1 (dp21/1-4b and dp10 [51p1]/hv1051), VH3 (dp38/3-15 and dp77/13-21), and VH4 (dp70/4-4b). The deduced V gene-encoded amino acid sequences of the lambda chains of these IgM lambda RF confirmed their serological classification as lambda III, and they were further classified as members of the relatively uncommon V lambda III subgroup, designated V lambda IIIb. Based on cDNA analyses, nine were the product of three different V lambda III b germline genes. Two such genes, designated hsiggll150 and hsiggll295, were cloned and sequenced from genomic DNA. Unique combinations of these VH and V lambda III b genes could be related to distinctive patterns of reactivity among the IgM lambda RF. Although the VH and V lambda regions of these Abs were expressed primarily as germline-encoded sequences, four of nine multireactive Abs had extensive V region mutation, indicative of an Ag-driven process. The finding that lambda IIIb L chains are preferentially found among anti-rabbit IgG RF, and that some of these Ab have specificity for other protein, cellular, and bacterial Ag, provides new insight into the pathogenesis of RA and related diseases.

Animals↗

Regulatory effects of prostaglandin E2 on the growth and differentiation of human B lymphocytes activated through their CD40 antigen.

We have studied the effects of prostaglandin E2 (PGE2) on the growth and differentiation of human tonsillar B lymphocytes cultured in the CD40 system with or without IL-4 or IL-10. PGE2 (10(-9) to 10(-6) M) enhanced proliferation of B cells activated through their CD40 Ag, but not their Ig secretion. PGE2 further potentiated both IL-4- and IL-10-induced B cell growth as determined by [3H]TdR uptake and cellular enumeration. The IL-10-induced IgM, IgG, and IgA secretion was enhanced twofold to fourfold after addition of PGE2, whereas IL-4-induced IgG and IgE secretion was inhibited. The IgE production was particularly sensitive as an approximately 90% inhibition was obtained for 10(-7) M PGE2. In addition, PGE2 inhibited IgE production by naive surface IgD+ B cells cultured in the CD40 system, suggesting that PGE2 may interact with mechanisms involved in IgE switching. PGE2 displayed similar effects on cytokine-induced proliferation and Ig secretion of B cells activated by anti-CD40 Abs used in a soluble form. Finally, the PGE2 effects were mimicked by agents increasing cAMP, indicating that the PGE2 activities are likely to depend on the activation of the cAMP pathway. Altogether, the present data indicate that PGE2 stimulates human CD40-activated B cell growth, but differently modulates cytokine-induced differentiation. Thus, in microenvironments supporting the development of an immune response, the secretion of PGE2 by competent cells such as macrophages may participate in the regulation of the humoral response.

Antigens, CD↗

Signal transduction via CD40 involves activation of lyn kinase and phosphatidylinositol-3-kinase, and phosphorylation of phospholipase C gamma 2.

CD40 is a 50-kD glycoprotein that plays an important role in B cell survival, memory, and immunoglobulin isotype switch. Engagement of the CD40 antigen by monoclonal antibodies (mAbs) results in increased protein tyrosine kinase (PTK) activity, which plays an important role in mediating the biologic effects of CD40. We demonstrate, using an in situ phosphorylation technique, that CD40 cross-linking by the anti-CD40 mAb 626.1 resulted within 1 min in increased phosphorylation of the src type kinase, lyn, in Daudi B cell lines and remained sustained for up to 20 min. The activity of lyn kinase, as measured by immune complex kinase assay, was also increased after CD40 engagement, with similar kinetics. In contrast, the phosphorylation and activity of fyn, fgr, and lck kinases demonstrated minimal changes following stimulation of Daudi cells with mAb 626.1 over this same time period. CD40 engagement also resulted in phosphorylation of phospholipase C gamma 2 of phosphatidylinositol (PLC gamma 2) and phosphatidylinositol (PI)-3-kinase. Phosphorylation of PI-3-kinase was shown to be associated with an increase in its enzymatic activity. These results suggest that lyn plays an important role in CD40-mediated PTK activation and identify PLC gamma 2 and PI-3-kinase targets for CD40-mediated phosphorylation, suggesting a role for these two enzymes in CD40 signal transduction.

1-Phosphatidylinositol 4-Kinase↗

Role of protein tyrosine kinases in CD40/interleukin-4-mediated isotype switching to IgE.

The B-cell antigen CD40 transduces signals, which synergize with interleukin (IL)-4 to induce IgE synthesis in human B cells. IL-4 induces epsilon germline transcription but not mature epsilon transcripts or IgE protein synthesis in B cells. Addition of anti-CD40 monoclonal antibody to IL-4-treated B cells results in deletional S mu--> S epsilon switch recombination, expression of mature epsilon transcripts, and IgE synthesis and secretion. Because both IL-4 and anti-CD40 induce protein tyrosine phosphorylation in B cells, we investigated the role of protein tyrosine kinase in IL-4/CD40-mediated IgE synthesis. The protein tyrosine kinase inhibitors genistein and herbimycin A, but not the protein kinase C inhibitor 1-(5-isoquinolinesulfonyl)-2-methylpiperazine (H7) or the protein kinase A inhibitor N-2-guanidinoethyl-5-isoquinolinesulfonamide, inhibited IgE synthesis in B cells stimulated with IL-4 and CD40. Genestein and herbimycin, but not H7, inhibited IL-4-driven epsilon germline transcription in B cells. Both genestein and herbimycin, but not H7, inhibited CD40-mediated IgE synthesis in B cells pretreated for 4 days with IL-4 to allow optimal expression of epsilon germline transcripts. Inhibition of IgE synthesis in these cultures was accompanied by inhibition of S mu--> S epsilon deletional switch recombination as assayed by nested polymerase chain reactions. These results suggest that activation of protein tyrosine kinase plays an important role in both the IL-4 and the CD40 signalling pathways that lead to IgE isotype switching in B cells.

Antigens, CD↗

TXK, a novel human tyrosine kinase expressed in T cells shares sequence identity with Tec family kinases and maps to 4p12.

A gene for a novel, putative cytoplasmic tyrosine kinase, TXK has been isolated from a human peripheral blood cDNA library. The complete nucleotide sequence of the cDNA indicates that it is related most closely to EMT, a tyrosine kinase of T cells and to the B-cell tyrosine kinase Btk, which is mutated in X-linked agammaglobulinemia (XLA) in humans and X-linked immunodeficiency disease (XID) in mouse. TXK, like BTK, is a member of the Tec sub-family of Src-type (non-receptor) tyrosine kinases. Like similar Tec sub-family members, and unlike the other Src kinases, TXK lacks both the N-terminal myristylation signal and the C-terminal regulatory tyrosine. TXK expression is detected primarily in T cells and some myeloid cell lines but not in a number of other cell types. TXK shares 60% amino acid homology with EMT and 57% with BTK over the SH3, SH2 (Src-homology) and catalytic domains but unlike BTK, EMT and tec, it lacks Gap 1 homology and steroid hormone receptor homology in the N-terminal region. Genomic clones containing TXK have been isolated and hybridize to chromosome position 4p12.

Amino Acid Sequence↗

Role of interleukin-1 in endotoxin-induced lung injury in the rat.

The effects of the recombinant interleukin-1 receptor antagonist (rIL-1ra) on the systemic vascular and lung injury following intraperitoneal Salmonella enteritidis lipopolysaccharide (LPS) were determined in male Sprague-Dawley rats. Initial experiments identified that maximal mortality occurred with an intraperitoneal LPS dose of 20 mg/kg, and this dose was used in subsequent experiments. Albumin permeability, measured in an ex vivo perfused heart-lung preparation from the rats 2 h after injection of LPS, was increased with endotoxin as was the wet:dry weight ratio. Pretreatment of the rats with intravenous rIL-1ra, 1 to 10 mg/kg, followed by a continuous intravenous infusion at 30 to 50 micrograms/kg/min resulted in restoration of blood pressure at 100 min following endotoxin administration. Moreover, coadministration of rIL-1ra with endotoxin totally prevented the rise in albumin permeability of the pulmonary vasculature and the increase in wet:dry lung weight ratios observed in rats treated with LPS alone. LPS injected intraperitoneally caused a marked decrease in circulating leukocyte count, an effect not reversed by rIL-1ra. RNA extraction of whole-lung homogenates revealed that mRNA for IL-1 beta was constitutively expressed in the absence of endotoxin, but transcripts increased progressively from 0.5 to 2 h after endotoxin administration. Increases in mRNAs for tumor necrosis factor-alpha (TNF-alpha) and for macrophage inflammatory protein-2 (MIP-2), a potent neutrophil chemoattractant, were also observed from 0.5 until 2 h after endotoxin administration.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Hyper IgM syndrome associated with defective CD40-mediated B cell activation.

Recent studies show that most patients with X-linked hyper IgM syndrome have defects in the gene for CD40 ligand. We evaluated 17 unrelated males suspected of having X-linked hyper IgM syndrome. Activated T cells from 13 of the 17 patients failed to bind a soluble CD40 construct. In these patients, the sequence of CD40 ligand demonstrated mutations. By contrast, T cells from the remaining four patients exhibited normal binding to the CD40 construct. Sequencing of the cDNA for CD40 ligand from these patients did not show mutations. The possibility that hyper IgM syndrome in these four patients was due to abnormalities in the B cell response to CD40-mediated signals was examined. Peripheral blood lymphocytes were stimulated with anti-CD40 alone, IL4 alone or anti-CD40 plus IL4. In comparison with B cells from controls or patients with hyper IgM syndrome and mutant CD40 ligand, B cells from the patients with hyper IgM syndrome and normal CD40 ligand were defective in their ability to secrete IgE (P < 0.02) or express activation markers, CD25 and CD23 (P < 0.02) in response to stimulation with anti-CD40. The failure of these B cells to respond to CD40-mediated activation could not be attributed to a generalized deficiency in B cell activation because IL4 induced normal up-regulation of CD23 and CD25 expression. These findings indicate that hyper IgM syndrome may result from defects in expression of CD40 ligand by activated T cells or defects in CD40-mediated signal transduction in B cells.

Antigens, CD↗

Protein tyrosine kinase activation and protein kinase C translocation are functional components of CD40 signal transduction in resting human B cells.

CD40 is a 47kD glycoprotein expressed on all B cells that plays an important role in B cell development and activation. Previous investigations have focused on signal transduction events in activated B cells and B cell lines, and little information is available regarding CD40 signal transduction in resting, normal B cells. Because CD40 plays a critical role in the regulation and activation of resting B cells, we studied the signaling mechanisms involved in functional responses to CD40 ligation in these cells. Treatment of dense tonsil B cells with either protein tyrosine kinase (PTK) or protein kinase C (PKC) inhibitors, but not with an inhibitor of cyclic nucleotide dependent kinases, resulted in abrogation of CD40-mediated cell adhesion, suggesting a role for both PTK and PKC in CD40-mediated B cell adhesion. Direct evidence for CD40-mediated PTK activation was demonstrated by increased tyrosine phosphorylation as detected by anti-phosphotyrosine Western blots of cell lysates prepared from dense resting tonsil B cells stimulated with biotinylated anti-CD40 monoclonal antibody plus avidin. CD40 engagement also resulted in PKC activation, as detected by translocation of cytosolic PKC activity to the membrane-bound compartment. CD40-mediated PKC translocation was dependent on PTK activation, whereas PTK activity induced by CD40 ligation was independent of PKC activity, suggesting that PTK activation precedes PKC activation in resting B cells stimulated with anti-CD40 mAb. The results of our experiments identify PTK and PKC activation as components of CD40 signal transduction in normal, resting B cells and establish a functional role for these events.

Antigens, CD↗

Differential regulation of human B-lymphocyte tumor necrosis factor-alpha (TNF-alpha) and lymphotoxin (TNF-beta) production by protein phosphatase 1 and 2A inhibitor.

Tumor necrosis factor (TNF) and lymphotoxin (LT; TNF-beta) are major cytokines produced by B lymphocytes. Stimulation by okadaic acid, a phosphatase 1 and 2A inhibitor, markedly increased TNF mRNA accumulation and cytokine production. On the other hand, the accumulation of LT mRNA was not affected by okadaic acid despite structural and functional similarities between TNF and LT. The increase in TNF mRNA accumulation was due to the stimulation of gene transcription and a marked stabilization of this mRNA. The binding activities of the transcription factors AP-1 and AP-2 and NF kappa B, which regulates TNF gene transcription, were also stimulated by okadaic acid. In addition, okadaic acid was shown to increase TNF production at the protein level. These results show the importance of protein phosphatases in the regulation of cytokine production in B cells, and further identifies differences in the regulation of TNF-alpha and LT production.

B-Lymphocytes↗

Diversification, not use, of the immunoglobulin VH gene repertoire is restricted in DiGeorge syndrome.

Immunoglobulin (Ig) genes were isolated from unamplified conventional as well as polymerase chain reaction-generated cDNA libraries constructed from the peripheral blood cells of a patient with complete DiGeorge syndrome. Comparison of the sequences of 36 heavy chain clones to the recently expanded database of human VH genes permitted identification of the germline VH genes that are expressed in this patient as well as placement of 19 of these genes in a partially resolved 0.8-mb region of the human VH locus. The pattern of VH gene use does not resemble the fetal (early) repertoire. However, as in the fetal repertoire, there are a number of cDNAs derived from germline genes that previously have been identified as autoantibodies. Two D mu sequences also were identified, as was another sequence resulting from a unique recombination event linking JH to an unidentified sequence containing a recombination signal sequence-like heptamer. All of the DiGeorge cDNAs are closely related to germline VH genes, showing little or no evidence of somatic mutation. In contrast, comparably selected IgM VH sequences derived from normal adult and age-matched human libraries, and from a second DiGeorge syndrome patient in whom the degree of thymic dysfunction is much less severe, exhibit considerable evidence of somatic mutation. The absence of somatic mutation is consistent with the atypical development of functional antibody responses associated with complete DiGeorge syndrome and implicates a role for T cells in the generation of diversity within the B cell repertoire.

Antibody Diversity↗

Human antibodies reactive with beta-amyloid protein in Alzheimer's disease.

Four human B cell lines established by Epstein-Barr viral transformation of B cells from a patient with a clinical diagnosis of Alzheimer's disease (AD) were found to secrete antibodies that react with plaques and cerebrovascular blood vessels in AD brain in a staining profile characteristic of beta-amyloid protein (beta-AP) in AD brain. Two of these antibodies were shown to be reactive with a rare plaque in a normal brain. In these studies, immunofluorescence and avidin-biotin complex immunoperoxidase methodology were used to determine antibody reaction, and thioflavine S was used to double label amyloid and neurofibrillary tangles. The four antibodies also reacted with neurons in normal and AD brain. Absorption studies, dot immunoblots, and enzyme-linked immunosorbent assays with beta-amyloid peptides 1-28 (beta-A1-28) and 1-40 (beta-A1-40) indicate the major determinant of the reactive epitope is located in the region of amino acids 1-28 of beta-AP. However, inhibition studies demonstrate a significant contribution to the antigenic determinant by the 29-40 region of the beta-A1-40. These antibodies represent the first human autoantibodies against beta-AP. The pathological significance of these autoantibodies is discussed.

Aged↗

Defective expression of the CD40 ligand in X chromosome-linked immunoglobulin deficiency with normal or elevated IgM.

B lymphocytes from patients with X chromosome-linked immunoglobulin deficiency with normal or elevated serum IgM are unable to switch from the synthesis of IgM/IgD to that of other immunoglobulin isotypes. Isotype switch recombination was evaluated in three affected males by examining interleukin 4-driven IgE synthesis. T-cell-dependent IgE synthesis was completely absent in the B lymphocytes of the patients. In contrast, CD40 mAb plus interleukin 4 induced the patients' B cells to synthesize IgE and to undergo deletional switch recombination. Because interaction between CD40 and its ligand on activated T cells is critical for T-cell-driven isotype switching, we examined CD40 ligand expression. In contrast to normal T cells, lymphocytes from the patients expressed no detectable CD40 ligand on their surface after stimulation with phorbol 12-myristate 13-acetate and ionomycin, although the mRNA of the ligand was expressed normally. These results suggest that defective expression of the CD40 ligand underlies the failure of isotype switching in this disease.

Adolescent↗

Immunoregulatory role of CD40 in human B cell differentiation.

CD40 is a member of a family of surface molecules with homology to the nerve growth factor receptor and is expressed on B cells. The role of CD40 in regulating human B cell differentiation and the production of specific Ig isotypes was examined. In the absence of other stimuli, anti-CD40 and IL-4 induced the secretion of IgM, IgG, and IgE by purified human peripheral blood B cells. However, addition of formalinized Staphylococcus aureus (SA) enhanced the response. In the presence of SA, anti-CD40 and IL-4 induced the secretion of IgM, IgG1, IgG2, IgG3, and IgG4 in addition to IgE. No consistent effect on IgA secretion was demonstrated. The combination of SA, anti-CD40, and IL-4 induced one tenth of the total Ig production that was stimulated by SA and IL-2, with a different distribution of Ig H chain isotypes. B cells stimulated with SA, anti-CD40, and IL-4 secreted a greater percentage of IgG4 and IgE and a decreased percentage of IgG1 and IgA, compared with that secreted in response to SA and IL-2. Anti-CD40 did not induce Ig production in combination with IL-2 and did not alter the Ig secreted in response to SA and IL-2. Stimulation with SA, anti-CD40, and IL-4 caused Ig H chain isotype switch, inasmuch as IgG and IgE secretion could be induced from preimmune cord blood B cells and IgD+ naive adult B cells and IgE secretion could be induced from IgE- adult B cells. Ig secretion by purified B cells stimulated with SA, IL-4, and anti-CD40, but not with SA and IL-2, was significantly enhanced by anti-CD18 or anti-ICAM-1 mAb, suggesting that homotypic aggregation induced by anti-CD40 might limit Ig production. Finally, anti-CD40 was found to inhibit Ig production by B cells cultured with anti-CD3-activated T cells. These results suggest that engagement of the CD40 molecule on B cells provides signals that permit IL-4 to induce Ig isotype switching. This response is limited by LFA-1-mediated homotypic interactions of B cells. Engagement of CD40 by the ligand expressed by activated T cells appears to be important for the activation of B cells during T cell-B cell collaboration and the production of all isotypes of Ig.

Antibody Formation↗

Stimulation of tumor necrosis factor alpha production in human monocytes by inhibitors of protein phosphatase 1 and 2A.

The protein phosphatase 1 and 2A inhibitor, okadaic acid, has been shown to stimulate many cellular functions by increasing the phosphorylation state of phosphoproteins. In human monocytes, okadaic acid by itself stimulates tumor necrosis factor alpha (TNF-alpha) mRNA accumulation and TNF-alpha synthesis. Calyculin A, a more potent inhibitor of phosphatase 1, has similar effects. TNF-alpha mRNA accumulation in okadaic acid-treated monocytes is due to increased TNF-alpha mRNA stability and transcription rate. The increase in TNF-alpha mRNA stability is more remarkable in okadaic acid-treated monocytes than the mRNA stability of other cytokines, such as interleukin 1 alpha (IL-1 alpha), IL-1 beta, and IL-6. Gel retardation studies show the stimulation of AP-1, AP-2, and NF-kappa B binding activities in okadaic acid-stimulated monocytes. This increase may correlate with the increase in TNF-alpha mRNA transcription rate. In addition to the stimulation of TNF-alpha secretion by monocytes, okadaic acid appears to modulate TNF-alpha precursor processing, as indicated by a marked increase in the cell-associated 26-kD precursor. These results suggest that active basal phosphorylation/dephosphorylation occurs in monocytes, and that protein phosphatase 1 or 2A is important in regulating TNF-alpha gene transcription, translation, and posttranslational modification.

Base Sequence↗