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Biomedical subjects

R M Ten

Publications and source records attributed to R M Ten.

22 records · Page 2Linked to original sources

Eosinophil cationic protein cDNA. Comparison with other toxic cationic proteins and ribonucleases.

Human eosinophil granules contain several basic proteins including eosinophil cationic protein (ECP), eosinophil-derived neurotoxin (EDN) and major basic protein (MBP). ECP and MBP are potent helminthotoxins while EDN is less so. Both ECP and EDN possess neurotoxic and ribonuclease activities. A clone representing ECP mRNA was isolated from an eosinophil lambda ZAP cDNA library. The cDNA sequence codes for a preprotein of 160 amino acids and a protein of 133 amino acids, the amino terminus of which is identical to the known partial amino acid sequence of ECP. The ECP nucleotide sequence shows similarity to EDN, rat pancreatic ribonuclease, and human angiogenin; all are members of the ribonuclease gene superfamily. Although the deduced amino acid sequence of ECP shares identical active site and substrate binding site residues with EDN, angiogenin, and human pancreatic ribonuclease, the ribonuclease activity of ECP is 50 to 100 times less than that of EDN possibly because of the lack of a positively charged residue at human pancreatic ribonuclease position 122. The calculated isoelectric point (10.8), electronic charge (14.5), and cationic charge distribution of ECP are different from those of EDN but similar to those of MBP, which may account in part for the greater helminthotoxic activity of ECP when compared to EDN. These data suggest that ECP and EDN are derived from a common ancestral ribonuclease gene and that ECP has evolved into a potent helminthotoxin similar in some respects to MBP, while losing much of its ribonuclease activity.

Amino Acid Sequence↗

Molecular cloning of the human eosinophil peroxidase. Evidence for the existence of a peroxidase multigene family.

Human eosinophil peroxidase (EPO) was purified from eosinophil granules derived from the peripheral blood of patients with eosinophilia. The molecular mass of the H and L subunits was determined by gel filtration to be 57,000 and 11,000 daltons, respectively. The partial amino acid sequences of both subunits were used to construct oligonucleotides for the screening of several cDNA libraries, including one derived from human-induced umbilical cord mononuclear cells. A cDNA clone was isolated corresponding to EPO. The nucleotide sequence revealed an open reading frame of 2,106 bp, corresponding to a prosequence, L chain, and H chain, in this order. Comparison of the EPO nucleotide sequence with other peroxidases, such as myeloperoxidase, suggests the existence of a multigene family.

Amino Acid Sequence↗

Eosinophil granule major basic protein in acute renal allograft rejection.

Conventional staining techniques to determine the presence of tissue eosinophils underestimate their number and do not usually detect eosinophil degranulation. We have studied the involvement of eosinophils in acute renal allograft rejection by immunofluorescence localization of eosinophil granule major basic protein (MBP) in the kidney and by measurement of MBP in the plasma and urine by radioimmunoassay. Tissue eosinophilia and extracellular deposition of MBP indicative of eosinophil degranulation were observed in 94% and 87%, respectively, of patients with acute rejection as compared with 17% and 17%, respectively, of patients with cyclosporine nephrotoxicity. The urine levels of MBP were significantly elevated in acute rejection but not in cyclosporine nephrotoxicity. Plasma MBP concentrations were within the normal range in both acute rejection and cyclosporine nephrotoxicity. The presence of marked tissue eosinophilia and eosinophil degranulation did not always indicate irreversible rejection. Interleukin-2 and IL-2 receptors were also elevated in the urine during acute rejection. These results support a role for the eosinophil as an effector of tissue damage during rejection and suggest the potential usefulness of urine MBP determinations for the immunologic monitoring of transplanted patients.

Acute Disease↗

Acute interstitial nephritis: immunologic and clinical aspects.

Acute interstitial nephritis is a common renal syndrome that may be associated with a variety of infections and drug therapies or may develop without an identified cause. Three cases are presented to illustrate the three types of acute interstitial nephritis--drug related, infection related, and idiopathic. Cell-mediated immune mechanisms seem to be more important than humorally mediated mechanisms in the pathogenesis of acute interstitial nephritis. Frequently, eosinophils are identified as a component of the interstitial cellular infiltrate, and eosinophiluria and eosinophilia have been claimed to be helpful in the diagnosis of acute interstitial nephritis, especially the drug-induced type. Neither eosinophiluria nor the presence of increased urinary levels of eosinophil major basic protein, however, is specific for the diagnosis of acute interstitial nephritis. Patients with drug-induced interstitial nephritis frequently have symptoms and signs suggestive of a hypersensitivity syndrome and rarely have more dramatic anaphylactic manifestations. Systemic glucocorticoids have been shown to be beneficial in this type of acute interstitial nephritis.

Acute Disease↗