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D J McCormick

Publications and source records attributed to D J McCormick.

At least 91 records · Page 5Linked to original sources

The antigenic structure of the human glycoprotein hormone alpha-subunit: II. Cross-species comparisons.

Eight monoclonal antibodies, specific for the glycoprotein hormone alpha-subunit, were raised against human free alpha-subunit, human FSH, or human CG. All of these antihuman monoclonal antibodies were tested for cross-reactivity with alpha-subunits derived from bovine, porcine, equine, bull frog, sea turtle, turkey, and ostrich glycoprotein hormones. All showed cross-reactivity with affinities ranging from 10(-4) to 10(-8) depending upon the antibody and the species of alpha-subunit. Cyanogen bromide fragments of bovine and equine alpha, when tested with selected antibodies indicated that antigenic determinants could be localized in two regions: alpha 9-33 and alpha 76-92. Comparison of amino acid sequences, and relative potencies, suggest that major antigenic determinants involve residues 21, 22, and 23 (F-F-S in human alpha) and 76-85 (G-G-F-K-V-E-N-H-T-A in human alpha). As part of this study the N-terminal amino acid sequences of bull frog, sea turtle, turkey, and ostrich alpha-subunits were determined and reported for the first time.

Amino Acid Sequence↗

Neurotensin(8-13): comparison of novel analogs for stimulation of cyclic GMP formation in neuroblastoma clone N1E-115 and receptor binding to human brain and intact N1E-115 cells.

Neurotensin(8-13), the carboxyl-terminal portion of neurotensin, is 4-50 times more potent than native neurotensin in binding to intact neuroblastoma N1E-115 cells and human brain tissue and in stimulation of intracellular cyclic GMP production and inositol phospholipid hydrolysis in clone N1E-115 (Gilbert JA and Richelson E, Eur J Pharmacol 99: 245-246, 1984; Gilbert JA et al., Biochem Pharmacol 35: 391-397, 1986; Kanba KS et al., J Neurochem 46: 946-952, 1986; and Kanba KS and Richelson E, Biochem Pharmacol 36: 869-874, 1987). A series of novel analogs of neurotensin (8-13) was synthesized, and a structure-activity study was done comparing the abilities of these peptides to stimulate intracellular cyclic GMP production in intact neuroblastoma clone N1E-115 and to inhibit the binding of [3H]neurotensin to these cells and to membranal preparations from human brain. A direct correlation was found for each analog between its EC50 for biochemical activity and its KD for binding ability in studies with clone N1E-115. Furthermore, a strong correlation existed for each peptide between its KD for binding to neurotensin receptors on these cells and its KD for binding to neurotensin receptors in human brain tissue. In this study, the residues that were important to the biochemical and binding activities of neurotensin (8-13) proved to be identical to the amino acids that are necessary for the functional integrity of native neurotensin (Gilbert JA et al., Biochem Pharmacol 35: 391-397, 1986.

Brain↗

The calmodulin binding domain of the plasma membrane Ca2+ pump interacts both with calmodulin and with another part of the pump.

Synthetic peptides corresponding to the calmodulin-binding domain of the human erythrocyte Ca2+ pump were prepared representing residues 2-29 (C28W), 2-21 (C20W), 2-16 (C15W), and 16-29 (C14) of the sequence (James, P., Maeda, M., Fisher, R., Verma, A. K., Krebs, J., Penniston, J. T., and Carafoli, E. (1988) J. Biol. Chem. 263, 2905-2910). Peptides C28W, C20W, and C15W bound to calmodulin with an apparent 1:1 stoichiometry in the presence of Ca2+ and inhibited the activation of the Ca2+ pump by calmodulin, while C14 was ineffective. Substituting tyrosine (C28Y) or alanine (C28A) for the tryptophan residue lowered the affinity for calmodulin. The estimated Kd values for the calmodulin-peptide complexes were 0.1 nM for C28W, 5-15 nM for C20W, C28Y, and C28A, and 700-1700 nM for C15W. The Ca2+ pump in inside-out erythrocyte membrane vesicles was activated by proteolytic removal of the endogenous calmodulin-binding domain. Addition of C20W or C28W then inhibited calmodulin-independent Ca2+ transport, while a calmodulin-binding peptide from another enzyme had no effect. The inhibition of the pump by C20W was purely competitive with Ca2+, while C28W decreased the Vmax and increased the K1/2 for Ca2+, restoring the pump activity nearly to its low basal level. The results suggest that a calmodulin-binding peptide from any enzyme has two kinds of specificity: it shares with peptides from other enzymes the ability to bind to calmodulin, but only it has the specificity to interact with its own (proteolytically activated) enzyme.

Amino Acid Sequence↗

Modulation of erythrocyte Ca2+-ATPase by selective calpain cleavage of the calmodulin-binding domain.

The activity of the membrane-bound and the purified erythrocyte Ca2+-ATPase in the absence of calmodulin was stimulated by calpain digestion but could be further increased to maximal levels by calmodulin (CaM). Thus, CaM sensitivity was retained by the digested ATPase, at least at short times of incubation. In membranes digested at higher temperatures and in the purified ATPase digested at higher calpain/ATPase ratios, the ATPase became fully activated. The membrane-bound and the purified 138-kDa ATPase were converted by calpain to a fragment of approximately 124 kDa which still bound CaM and could be isolated on CaM columns when proteolysis occurred slowly but not when it occurred rapidly. Carboxypeptidase digestion of the purified enzyme and of its fragment of about 124 kDa has shown that calpain attacked the CaM-binding domain near the C terminus of the ATPase. This has also been supported by digestion of the purified enzyme and of its fragment of about 124 kDa. A first cut occurred in the middle of the domain producing a fragment of about 14 kDa and a (CaM-binding) fragment of about 124 kDa. A second cut closer to the N terminus of the domain also produced a fragment of about 124 kDa and accounted for the loss of CaM binding at prolonged times of incubation of the ATPase with calpain.

Amino Acid Sequence↗

Synthetic peptide segments of inhibin alpha- and beta-subunits: preparation and characterization of polyclonal antibodies.

The amino acid sequences of human inhibin alpha-, beta A- and beta B-subunits were analyzed for hydrophilicity and chain flexibility to predict regions that are on the surface of the subunits and, therefore, are potential antigenic sites. Based on these analyses, a total of nine peptides were synthesized, and rabbit antisera against the peptides were prepared. Peptides of the N-terminus (residues 1-16 and 13-24) and region 109-123 of the alpha-subunit produced high titer antibodies. Regions 69-79 and 93-105 of the beta A-subunit and region 93-104 of the beta B-subunit were also immunogenic. Immunoblotting of an inhibin preparation with anti-alpha-peptide antiserum revealed that a 32K band (inhibin) and an 18K band (alpha-subunit) were stained. Immunoblotting with anti-beta-peptide antiserum detected a 32K band (inhibin), a 24K band (activin), and a 14K band (beta-subunit). Injection (iv) of these antisera into rats induced dramatic elevation of serum FSH in 6-12 h and suggested immunoneutralization of endogenous inhibin. RIAs for each subunit were developed using radioiodinated peptides as tracers. Competition binding assays indicated crossreactivity with human follicular fluid, semen, serum, plasma, and crude inhibin preparations. Parallel dilution curves were obtained. Antisera against beta A- and beta B-subunit peptide cross-reacted with each other. In immunocytochemical studies, these antisera were used in conjunction with gold-labeled goat antirabbit immunoglobulin G to localize inhibin in cells of the rat testis. Specific staining of inhibin was localized within the Sertoli cells of some tubules in adult rat testis. Positive staining could be blocked by preadsorbing the sera with the appropriate synthetic peptide. These results suggest that antibodies against synthetic inhibin peptides are useful in elucidating the roles of inhibin and activin.

Animals↗

Production of antibodies against murine class II antigens using unconjugated synthetic peptides of the beta chain region 63-78.

synthetic peptides corresponding to residues 63-78 of the first domain of the beta chain of murine I-A/I-E class II antigens were used in the unconjugated rather than the traditional protein-conjugated form to immunize (129J X B6)F1 mice. The sequences made represented the four haplotypes; Ak beta, Ad beta, Abm-12 beta and Ed beta. These sequences were selected on the basis of computer algorithms used to predict surface accessibility and main-chain flexibility profiles, and by reported hypervariability and site-directed mutagenesis experiments of these regions. Factors such as the use of complete Freund's adjuvant, a continuous immunization regime, and the sex of the mice used were found to influence the amount of anti-peptide antibody produced when unconjugated peptide was used as the immunogen. Antibodies produced were shown by FACS analysis to react with I-A/I-E class II antigens expressed on the lymphocyte surface. These findings indicate that the use of unconjugated synthetic peptides representing sequences of proteins which are in close proximity to disulfide bonds may be an advantage over conventional methods of peptide conjugation to proteins.

Amino Acid Sequence↗

Hormone-dependent phosphorylation of the avian progesterone receptor.

Progesterone receptors are phosphoproteins, in which phosphorylation has been proposed as a control mechanism for some stages of hormone action. Progesterone administration was shown to increase phosphorylation of the receptor from both cytosol and nuclear extracts of whole cells. We have analyzed the receptor phosphopeptides generated by chemical and proteolytic cleavage to assess the number of phosphorylation sites and their approximate location in the receptor. Progesterone receptor was labeled in situ in the presence or absence of hormone in medium containing [32P] orthophosphate, isolated by immunoprecipitation, and then digested with several proteases. The resulting 32P-labeled peptides were resolved by either two-dimensional electrophoresis:chromatography or by reverse-phase high performance liquid chromatography. Multiple phosphopeptides (3-6) were detected after cleavage with trypsin, chymotrypsin, or V8 protease. Major increases in phosphorylation occurred at existing sites since after hormone treatment no new phosphopeptides were found. Individual phosphopeptides showed variable increases in phosphorylation of 1.5-5-fold. The A and B receptor forms showed identical phosphorylation patterns, indicating similar processing in vivo. The phosphopeptide pattern for receptor in nuclear extracts resembled that of cytosol receptor. Chemical cleavage was used to assess the distribution of phosphorylation sites. Cyanogen bromide produced a large 40-kDa polypeptide which contained all of the phosphorylation sites and comprised the residues 129-449. Hydroxylamine was used to cleave a unique bond, Asn-372-Gly-373, in the 40-kDa polypeptide. All of the phosphorylation sites were located on the amino-terminal side of the cleavage. Thus, all of the phosphorylation sites were localized to a specific region (Met-129 to Asn-372) of the progesterone receptor that does not include either the DNA or steroid binding domains.

Animals↗

Studies with antibodies against the conserved cysteine region of progesterone receptor.

Polyclonal antibodies were generated against two synthetic peptides corresponding to sequences from the DNA-binding domain of steroid receptors. The sequence for peptide 1 (13 amino acids) lies between the two putative metal-binding loops of the conserved cysteine region while the sequence for peptide 2 (12 amino acids) lies within one loop. Peptide antibodies were generated by injecting rabbits with peptide conjugated to bovine serum albumin. By Western blot analysis, antibodies to peptide 2 recognized chick and human progesterone receptor and human glucocorticoid receptor, but peptide 1 antibodies did not. No cross-reactivity with native chick progesterone receptor was detected with either anti-peptide. These findings suggest that the epitopes for peptide 2 antibodies, and possibly for peptide 1 antibodies, are inaccessible to antibody in the native receptor.

Amino Acid Sequence↗

The glycoprotein hormones: recent studies of structure-function relationships.

The structural features of the heterodimeric glycoprotein hormones (LH, FSH, TSH, and hCG) are briefly reviewed. Removal of carbohydrate chains does not reduce binding of the hormones to membrane receptors, but markedly reduces biological responses. The glycopeptides from the hormone do not reduce binding of native hormone to receptors but do reduce biological responses. Newer data concerned with replication of different regions of the peptide chains of these molecules using synthetic peptides are reviewed and presented. These studies indicate that two regions on the common alpha subunit are involved with receptor binding of the LH, hCG, and TSH molecules. These regions are alpha 26 to 46 and alpha 75-92. Two synthetic disulfide loop peptides from the hCG beta subunit beta 38-57 and beta 93-100 also block binding of hCG to its receptor. In addition, the beta 38-57 peptide stimulates testosterone production by Leydig cells. These data indicate that glycoprotein hormone binding to plasma membrane receptors involves a discontinuous site on the hormone that spans both the alpha and beta subunits, and that the alpha subunit sites are similar for several hormones.

Amino Acid Sequence↗

The production of antibodies against the conserved cysteine region of steroid receptors and their use in characterizing the avian progesterone receptor.

The most highly conserved feature of steroid receptor primary structure, the conserved cysteine region, corresponds to the DNA-binding domain of steroid receptors. This domain of chick progesterone receptor (PR) and other receptors was immunochemically characterized using site-directed antibodies. Eight peptides were synthesized corresponding to portion of the conserved cysteine region from PR, glucocorticoid, or estrogen receptor proteins. Polyclonal antibodies were obtained by immunizing rabbits with peptide conjugated to a protein carrier. The cross-reactivity of each antiserum was tested by Western blotting against chick and human PR, human glucocorticoid receptor, and human estrogen receptor. Of the several antisera positive by Western blots, only one cross-reacted with native chick PR. It was found that antibody bound to 4S transformed receptor, but not to 8S nontransformed receptor. At 50 mM KCl, antibody bound preferentially to transformed receptor form A, but at 400 mM KCl antibody bound equally well to either receptor form A or B. Binding of PR to DNA-cellulose was partially inhibited by the presence of cross-reacting peptide antibody. Thus, we have obtained at least one site-directed antibody against steroid receptors which is a useful structural probe to the DNA-binding functional domain of these gene regulatory proteins.

Amino Acid Sequence↗

The effects of synthetic alpha-subunit peptides on thyrotropin interaction with its receptor.

Synthetic peptides of the alpha-subunit of human glycoprotein hormones have been shown previously to inhibit binding of [125I]iodo-hCG to ovarian membranes, thus indicating the importance of the alpha-subunit in the structure-function relationships of the gonadotropic hormone. These same synthetic alpha-subunit peptides, the sequences of which are common to all human glycoprotein hormones, were found to inhibit the binding of [125I]iodo-TSH to human thyroid membrane preparations and FRTL-5 rat thyroid cells. The active portions of the subunit were represented in synthetic peptides alpha 21-35, alpha 31-45, alpha 26-46, and alpha 81-92, indicating that 2 separate sites within the alpha-subunit have binding activity for TSH. Peptides alpha 26-46 and alpha 31-45 were also found to potently inhibit the stimulation of adenylate cyclase activity by bovine TSH in TSH bioassay using FRTL-5 cells. Seven other synthetic peptides, including the remainder of the 92-amino acid sequence of the alpha-subunit, demonstrated little or no ability to inhibit binding of the tracer or inhibit the bioactivity of intact TSH. The findings were very similar to those of previous studies involving hCG binding, except that the two active sites appeared to be somewhat shifted towards the COOH-terminal end of the subunit. These studies support the concept of the importance of the alpha-subunit in receptor binding of all glycoprotein hormones and demonstrate the utility of the overlapping synthetic peptide strategy in investigations of protein structure-function relationships.

Amino Acid Sequence↗

The effects of synthetic alpha-subunit peptides on thyroid-stimulating immunoglobulin activity.

Synthetic peptides, representing specific portions of the alpha-subunit of the human glycoprotein hormones, can inhibit both the binding of labeled TSH to thyroid membranes and adenylate cyclase stimulation by TSH in vitro. The same synthetic peptides (alpha 26-46 and alpha 31-45) significantly (P less than 0.05) inhibited the adenylate cyclase-stimulating activity of thyroid-stimulating immunoglobulins (TSI) from 10 patients with hyperthyroid Graves' disease. Peptide alpha 26-46 was the most potent, resulting in 79.1 +/- 8.8% (+/- SE) inhibition at 133 micrograms/mL, while peptide alpha 31-45 inhibited TSI activity by 36.3 +/- 5.2%. Peptides alpha 61-75 and alpha 81-92, that had only minimal ability to inhibit TSH-mediated cAMP generation, did not significantly inhibit TSI activity. The inhibitory action of alpha 26-46 was dose dependent, and a significant negative correlation was found between the maximum TSI activity of the serum sample and the inhibition achieved by the synthetic peptide, suggesting that differences in TSI affinity and/or titer may account for the variable inhibitory activity of the peptides. These results suggest that TSI interact with the TSH receptor at the site that recognizes the portion of the TSH alpha-subunit represented by the synthetic peptide alpha 26-46 and, thus, support the concept that the TSH-binding site of the TSH receptor is the site of antigen binding between TSI and the thyroid cell.

Cyclic AMP↗

The metabolism of propranolol (ICI 45,520, Inderal) and xamoterol (ICI 118,587, Corwin) by isolated rat hepatocytes: in vivo-in vitro correlations.

1. The metabolism of two compounds which undergo predominantly Phase I (propranolol) and Phase II (xamoterol) metabolism in vivo has been studied in isolated rat hepatocytes. 2. Propranolol was rapidly metabolized by rat hepatocytes to a number of metabolites which correlated well with those observed in vivo. The effect of saturable metabolism on the in vitro clearance of propranolol at high substrate concentrations was very similar to the changes observed in vivo. 3. Xamoterol was metabolized by rat hepatocytes to produce mainly xamoterol glucuronide, with the sulphate conjugate of xamoterol representing a minor component. The low rate of formation of xamoterol sulphate is probably due to the low affinity of xamoterol for the sulphotransferase enzyme, since supplementation with inorganic sulphate did not significantly alter the rate of sulphation; the sulphotransferase system of these hepatocytes was however shown to be active in the metabolism of phenol. 4. The correlations observed between the known routes of metabolism of propranolol and xamoterol in vivo and those observed in isolated hepatocytes support the utility of isolated hepatocytes as a predictive model of metabolic events in vivo.

Animals↗

Myasthenogenicity of human acetylcholine receptor synthetic alpha-subunit peptide 125-147 does not require intramolecular disulfide cyclization.

This study reports the synthesis of a disulfide-looped peptide corresponding to residues 125-147 (Cys 128-Cys 142) of the nicotinic acetylcholine receptor (AChR) of human skeletal muscle, H alpha 125-147 (Lys-Ser-Tyr-Cys-Glu-Ile-Ile-Val-Thr-His-Phe-Pro-Phe-Asp-Glu-Gln- Asn-Cys-Ser-Nle-Lys Leu-Gly), and a nondisulfide-looped analogue, H alpha 125-147(S) (Lys-Ser-Tyr-Ser-Glu-Ile-Ile-Val-Thr-His-Phe-Pro-Phe-Asp-Glu- Gln-Asn-Cys-Ser-Nle-Lys-Leu-Gly), in which the amino acid Cys 128 was replaced with serine. Both peptides induced antigen-specific helper T cell responses, as evidenced in vitro by lymph node cell proliferation and in vivo by production of anti-AChR antibodies. Rats immunized with 100 micrograms of either synthetic peptide, without conjugation to a carrier, produced anti-peptide antibodies which bound to native AChR in immunoprecipitation assays and induced modulation of membrane-bound AChR from cultured human myotubes. Both peptides also induced electrophysiologic and biochemical signs of experimental autoimmune myasthenia gravis. Thus, region 125-147 of the AChR alpha-subunit is at least partly exposed extracellularly in human muscle and contains one or more autoantigenic sites capable of stimulating T cells and B cells. Disulfide-linkage between residues Cys 128 and Cys 142 is not essential for myasthenogenicity.

Animals↗

Inhibition of human choriotropin binding to receptor by human choriotropin alpha peptides. A comprehensive synthetic approach.

Synthetic overlapping peptides of the alpha-subunit of human chorionic gonadotropin (hCG) were made by solid-phase peptide synthesis employing a comprehensive synthetic approach. The entire primary structure of the alpha-subunit was synthesized as a series of nine consecutive peptides, each 15 residues in length, and overlapping with its two adjacent neighbors by 5 residues on each side. Receptor binding activity of each synthetic peptide was measured by the inhibition of binding of 125I-labeled hCG to rat ovarian receptor. Peptides alpha 21-35, alpha 31-45, alpha 71-85, and alpha 81-92 were shown to compete for binding with native hCG, thus demonstrating that at least two regions on the alpha-subunit may be part of the binding site(s) of the hormone. The low affinity of the peptides (10(-5)-10(-6) M) compared to native hormone (10(-10) M) for receptor is not unexpected due to the probability of discontinuous and multiple sites involved in receptor binding. An ultrapure preparation of hCG alpha-subunit also had low affinity (10(-5), suggesting that conformational changes upon combination with beta-subunit to form dimer or changes in conformation after binding are necessary for high affinity interaction. These results correlate with previous predictions of binding sites based on studies employing chemical and enzymatic modifications of intact hormone and show that synthetic peptide strategies are helpful in the elucidation of protein structure and function.

Amino Acid Sequence↗

The major clotting protein from guinea pig seminal vesicle contains eight repeats of a 24-amino acid domain.

The complete amino acid sequence of the major clotting protein from the guinea pig seminal vesicle (SVP-1) has been determined by nucleotide sequencing of cDNA clones corresponding to the 3' terminus of an mRNA that codes for a protein precursor to SVP-1. The first 40 amino acids of the derived protein sequence are identical to those determined by N-terminal sequencing of SVP-1 isolated from the lumen of the seminal vesicle. This finding confirms that SVP-1 is cleaved from the C terminus of a larger precursor protein. The portion of the nucleotide sequence that codes for SVP-1 contains eight highly homologous but imperfect repeats of a 72-nucleotide domain. This repeated structure is also evident at the amino acid level. The consensus 24-amino acid repeat unit contains two lysine and three glutamine residues. Since the clotting of SVP-1 is known to involve the formation of gamma-glutamyl-epsilon-lysine crosslinks, it is likely that the 24-amino acid repeating unit is the unit of function of SVP-1.

Amino Acid Sequence↗