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Biomedical subjects

A R Hand

Publications and source records attributed to A R Hand.

At least 37 records · Page 2Linked to original sources

Secretory protein expression patterns during rat parotid gland development.

The rat parotid gland produces a number of well-characterized secretory proteins. Relatively little is known, however, about the onset of their synthesis and cellular localization during gland development. Secretory protein expression was studied in parotid glands of fetal and postnatal rats using light and electron microscopic immunocytochemistry and Northern blotting. Amylase, parotid secretory protein (PSP), common salivary protein-1 (CSP-1), and SMGB were first detected by immunofluorescence in parotid glands of 18 day fetuses. By 5 days after birth, light and electron microscopic immunolabeling localized all of these proteins to the secretory granules of developing acinar cells. Labeling of acinar cells for DNAse I, however, was not observed until 18 days after birth. Between 9 and 25 days, CSP-1 and SMGB reactivity of acinar cells declined, but increased in intercalated duct cells. After 25 days, CSP-1 and SMGB were found only in intercalated ducts, and amylase, PSP, and DNAse I were restricted to acinar cells. Levels of CSP-1 and SMGB mRNA were relatively constant through 21 postnatal days, but declined significantly after that. Amylase and PSP mRNA increased rapidly and continuously from five days after birth to the adult stage. In contrast, DNAse I mRNA was not detectable until 18 days after birth. The immunocytochemical and molecular analyses define three basic patterns of protein expression in the rat parotid gland: proteins whose synthesis is initiated early in development and is maintained in the acinar cells, such as amylase and PSP; proteins that are initially synthesized by immature acinar cells but are restricted to intercalated ducts in the adult gland, such as CSP-1 and SMGB; and proteins that are synthesized only by mature acinar cells and first appear during the third postnatal week, such as DNAse I. The parotid gland exhibits four distinct developmental stages: prenatal, from initiation of the gland rudiment until birth; neonatal, from 1 day up to about 9 days postnatal; transitional, from 9 days to 25 days of age; and adult, from 25 days on. Although differences exist in timing and in the specific proteins expressed, these developmental stages are similar to those seen in the rat submandibular gland. Additionally, the results support the suggestion that intercalated ducts may differentiate from the neonatal acini.

Age Factors↗

Analysis of outgrowth of Bacillus subtilis spores lacking penicillin-binding protein 2a.

The loss of Bacillus subtilis penicillin-binding protein (PBP) 2a, encoded by pbpA, was previously shown to slow spore outgrowth and result in an increased diameter of the outgrowing spore. Further analyses to define the defect in pbpA spore outgrowth have shown that (i) outgrowing pbpA spores exhibited only a slight defect in the rate of peptidoglycan (PG) synthesis compared to wild-type spores, but PG turnover was significantly slowed during outgrowth of pbpA spores; (ii) there was no difference in the location of PG synthesis in outgrowing wild-type and pbpA spores once cell elongation had been initiated; (iii) outgrowth and elongation of pbpA spores were dramatically affected by the levels of monovalent or divalent cations in the medium; (iv) there was a partial redundancy of function between PBP2a and PBP1 or -4 during spore outgrowth; and (v) there was no difference in the structure of PG from outgrowing wild-type spores or spores lacking PBP2a or PBP2a and -4; but also (vi) PG from outgrowing spores lacking PBP1 and -2a had transiently decreased cross-linking compared to PG from outgrowing wild-type spores, possibly due to the loss of transpeptidase activity.

Bacillus subtilis↗

Expression of gross cystic disease fluid protein-15/Prolactin-inducible protein in rat salivary glands.

Gross cystic disease fluid protein-15 (GCDFP-15)/prolactin-inducible protein (PIP) is present at moderate levels in human submandibular and sublingual glands and is barely detectable in human parotid gland. The rodent homologue, PIP, has previously been identified in adult submandibular and lacrimal glands. Here we present the molecular characterization of rat PIP and show that this protein is a product of neonatal and adult rat submandibular, sublingual, and parotid glands. cDNA clones encoding rat PIP were isolated and sequenced. The deduced amino acid sequence of rat PIP shows 56% overall identity and 80% similarity with mouse PIP. By SDS-PAGE, secreted rat PIP has an apparent Mr of 17,000, with a minor proportion present as Mr 20-22,000 N-glycosylated forms. PIP was localized in rat salivary glands by immunogold silver staining. PIP was identified in acinar cells of developing and mature submandibular and parotid glands and at very low levels in sublingual gland serous demilunes. Typically, rat submandibular gland secretory proteins are produced by either acinar cell progenitors (Type III cells) or mature acinar cells. The expression pattern observed for PIP is similar to that previously reported for salivary peroxidase, an important component of nonimmune mucosal defense.

Aging↗

Cyclic AMP-receptor proteins in the enamel matrix.

Cyclic AMP receptor proteins (cARP) are present in a variety of cell types. Intracellularly, they are the regulatory (R) subunits of type II cyclic AMP-dependent protein kinase (PKA: E.C.2.7.1.37). Additionally, cARP are secretory products of several cell types.[1] That cARP are present in and secreted by ameloblasts into the enamel matrix of the rat incisor was demonstrated by photoaffinity labeling, Western blotting and immunogold cytochemistry. Gold particles were present over cytoplasmic regions including Tomes' Processes of secretory ameloblasts, secretory granules and in the Golgi region. Specific RII labeling was seen in the enamel matrix, but not in dentin. The enamel matrix was more reactive during early maturation compared to the secretory stage of amelogenesis. Nuclear labeling with the RII antibody showed higher intensity in maturation than in secretory ameloblasts. These results demonstrate that cARP are expressed in ameloblasts and secreted into the enamel matrix. The role(s) of cARP in enamel matrix mineralization and the involvement of PKA-regulated pathways in enamel protein synthesis and secretion remain to be determined.

Ameloblasts↗

Cyclic AMP-receptor responses to hypergravity.

BACKGROUND: Altered gravity (G) encountered during spaceflight causes physiologic changes in humans and in experimental animals. In addition to weightlessness (0G) in space, sharply increased G forces are exerted on the spacecraft during the lift-off and reentry phases. Previous studies showed major changes in cAMP-associated activity of rat heart muscle after spaceflight, indicating that (hormone) signaling pathways may have been affected. HYPOTHESIS: The present study was designed to test the hypothesis that cAMP-related cellular responses of exocrine glands after simulated hypergravity (centrifugation at 1.7G) differ from the effects of 0G. METHODS: A portion of the parotid and lachrymal gland tissue was fixed for morphologic and immunocytochemical study, and another was used for biochemical determinations. A short-term tissue culture was established from each gland to determine the effects of stimulation by norepinephrine. Heart muscle (ventricle) was also studied. Soluble and particulate fraction extracts of tissue homogenates were prepared, photoaffinity labeled with the [32P]8-N3-analog of cAMP, proteins separated by electrophoresis and the cAMP-reactive proteins (cARP) identified by autoradiography. RESULTS: Differences were seen in protein banding patterns of the gland extracts and in altered cARP distribution in the 1.7G samples of heart ventricle and exocrine gland tissues, when compared with 1G controls. In the heart, cARP increased in the soluble fraction, while the particulate fraction extract showed no change. In acinar cells of the parotid, labeled cARP had accumulated, but decreased after stimulation to the level of the 1G controls. Immunogold labeling showed an increased content of amylase in the secretory granules of the 1.7G animals, while morphologic observation revealed few changes in the structure of parotid acinar cells. The response in the lachrymal gland was translocation of an isoform of cARP from the particulate to the cytoplasmic compartment. CONCLUSIONS: Changes distinct from those due to 0G, but specific for hyper-G were found in cARP activity, protein synthesis, as well as in an apparent inhibition of regulated secretion.

Adaptation, Physiological↗

Expression and distribution of parotid secretory proteins in experimental diabetes.

Previous studies of experimental diabetes have demonstrated changes in the levels of specific salivary proteins. The present study is part of a larger effort aimed at elucidating the mechanism(s) by which insulin regulates salivary protein expression in the rat parotid gland. Diabetes was induced in 2-3-month-old male Fischer 344 rats by injection of streptozotocin (STZ). After 30 days one group of rats was given insulin for 7 days. Untreated rats served as controls. As previously observed, parotid acinar cells from diabetic rats accumulated lipid and contained occasional crystalloid lysosomes. Quantitative immunogold labeling of secretory granules in diabetic glands revealed decreases of 30-60% for proline-rich-proteins (PRPs), amylase and parotid secretory protein (PSP), but labeling for acidic epididymal glycoprotein (AEG) was unchanged. The response to insulin treatment was variable: amylase and PSP labeling were partly restored, but PRP and AEG labeling showed little change. Photoaffinity labeling of cyclic AMP receptor proteins (cARP) showed changes in several tissues including a consistent increase in the diabetic parotid gland. Immunogold labeling of secretory granules with antibody to cARP was similar in control and diabetic parotids, but nuclear and cytoplasmic label was decreased in diabetic acinar cells. These results indicate that STZ-diabetes and insulin reconstitution cause variable changes in the expression of parotid secretory proteins. Changes in cARP levels suggest that the insulin and cyclic AMP pathways may interact in regulating expression of salivary secretory proteins.

Alpha-Globulins↗

Morphologic evidence for a preferential storage of tissue plasminogen activator (t-PA) in perivascular axons of the rat uvea.

The uveal layer is thought to hold the largest stores of tissue plasminogen activator (t-PA) within the eye. However, the uveal cell types that contain and could release t-PA to contiguous tissues and fluids have not been clearly identified. In the present study the general distribution pattern of t-PA antigen in fresh rat iris and choroid tissue was determined by immunofluorescence in preliminary light microscopic (LM) cryosections. Transmission electron microscopic (TEM) immunogold localization was then used to detect specific cellular and subcellular sites of t-PA antigen. The primary antibody was rabbit anti-mouse t-PA IgG. The immunofluorescence in preliminary LM cryosections of both tissues was most intense over discrete linear and cross-sectioned structures that resembled the contours of axon bundles. This impression was strengthened when silver impregnation highlighted similar structures in separate sections of the same tissue samples. TEM immunogold labeling of thin sections then confirmed that the t-PA antigen was confined to the axoplasm of both myelinated and unmyelinated perivascular nerve fibers in both the iris and choroid. Gold particles were not observed over axonal membranes, myelin sheaths, Schwann cells, retinal pigment epithelium or vascular endothelial cells. Ultrathin TEM cryosections of the iris showed a localization of some particles over structures that resembled tubules and vesicles within the axoplasm, but not over mitochondria. The axonal location of t-PA was shown by the co-localization of t-PA with an antibody against rat neurofilaments. The typical axon morphology that enclosed the t-PA particle markers in all TEM sections also indicated an axonal location. Separate TEM sections were processed with conventional fixatives and stains to highlight the typical uveal axon morphology, which also confirmed the identity of perivascular axons as the sites of t-PA localization. Affinity of the primary antibody for rat t-PA was shown by an inhibition ELISA against rat uveal tissue extracts and by the inhibition of t-PA activity in aqueous humor. An amidolytic assay was used to quantify t-PA activity. Possible explanations for the preferential immunolocalization of t-PA antigen to the axoplasm of uveal nerve terminals and the need for additional functional studies to confirm a putative neural t-PA synthesis are discussed.

Animals↗

Biochemical and immunological studies and assay of rat sublingual mucins.

Original studies of rat sublingual mucins raised questions as to the existence of a second mucin species as distinguished by binding to hydroxyapatite. The existence of multiple mucin species is of concern in pharmacological studies of mucous-cell secretion as each species could represent distinct mucous-cell populations that respond differently to secretagogues. Thus a separate hydroxyapatite-bound mucin pool expressed in rat sublingual glands was isolated and characterized. Biochemical comparison of hydroxyapatite-bound mucins to total and hydroxyapatite-unbound sublingual mucins demonstrated no substantial differences in either amino acid and carbohydrate contents or in size distributions. In addition, a radioimmunoassay was developed using antisera prepared previously against unbound mucins. The three mucin pools exhibited equal specificities in displacement of radiolabelled unbound mucin tracer in the radioimmunoassay. Thus, bound and unbound mucins are indistinguishable, both immunologically and in biochemical composition. The radioimmunoassay was then evaluated for use in pharmacological studies of acinar mucous-cell secretion. Measurement by radioimmunoassay of secretion from isolated acini in response to carbachol was concentration-dependent (EC50 approx. 0.3 microM and maximal stimulation at 1 microM carbachol). In immunolocalization studies the antiserum was highly selective for mucous cells, recognized all mucous cells within histological sections, and was localized subcellularly to mucous-cell secretion granules and trans-Golgi, further validating the radioimmunoassay as a method to detect exocrine secretion from the entire pool of acinar mucous cells. Moreover, the radioimmunoassay was compared and found equivalent to an acid-precipitation method to assess relative secretion, suggesting the acid-precipitation method is also valid for pharmacological studies of isolated acini.

Animals↗

Intra- and submembrane particle densities during CO2 stimulation of H+ secretion in turtle bladder.

The apical cell membranes of the H+ secreting, alpha-intercalated cells of turtle urinary bladder (TB) are characterized by studs (cytoplasmic domains of V-adenosinetriphosphatase) on thin-section transmission electron microscopy and by intramembrane particles (spherical units, SPUs) occurring as rod-shaped particles on freeze-fracture electron microscopy. To examine the relationship between studs and SPUs, morphometric studies were carried out on bladders maintained in 5% CO2 and in the absence of exogenous CO2. The stud density per square micrometer of apical membrane was 3,909 +/- 352 (+/-SE) in four TBs (29 alpha-cells) at 5% CO2 and 3,667 +/- 448 (+/-SE) in the paired halves of the same bladders without CO2 (25 alpha-cells). Corresponding densities of SPUs counted on apical membranes of the same bladders (n = 4) were 3,941 +/- 545 in 5% CO2 and 3,599 +/- 511 without CO2. The similarity of the densities of studs and SPUs under both conditions indicates that each SPU within the membrane is matched by one stud projecting into the cytoplasm. The one-for-one relationship between studs and SPUs was preserved over a wide range of transport rates. Addition of CO2 caused only inconsistent increments in the densities of studs and SPUs despite substantial increases in H+ transport rate. Slight variations in spacing of studs were consistent with patterns of distribution of SPUs on fracture surfaces.

Animals↗

Scales of urine acidification: apical membrane-associated particles in turtle bladder.

Since the time of Smith, studies of urinary acidification have shifted their focus to ever smaller scales and have revealed iterative patterns or organization. For this review we focus on the organization of intra- and submembrane particles at the scale of the apical cell membrane of the H+ secreting, alpha intercalated cells. Particles were examined quantitatively by thin section and freeze-fracture (FF) electron microscopy. Ongoing studies in turtle bladder indicate that the density of submembrane particles (studs) per micron 2 is approximately the same as that of spherical units (SPUs) forming linear (rod-shaped) arrays on FF. This one-to-one relationship is observed in the presence or absence of CO2 and suggests that CO2-induced changes in H+ secretion do not involve dissociation of the intramembrane (channel) and cytoplasmic (catalytic) parts of the H-ATPase. Structure-function studies based on density estimates of the particles, morphometry of the H+ secreting cell population, and measurement of H+ transport rate prior to fixation permit functional correlation across scales of study.

Acids↗

Immunocytochemical studies of cell differentiation during rat salivary gland development.

The development of the rat submandibular and parotid glands has been studied using antibodies to secretory proteins as cell-specific markers. Although the morphology of the glands and the timing of the main steps of cytodifferentiation are substantially different, they have several proteins and developmental features in common. The latter include the initial formation of perinatal acini which undergo a transition to adult acini expressing a different complement of secretory proteins; the development of adult intercalated ducts (ID) from the perinatal acinar cells; and the retention of the perinatal phenotype in some cells of the ID.

Animals↗

Secretory granule formation and synthesis pathway of secretory proteins in parotid gland cells.

The cytochemical technique for endogenous peroxidase and an immunocytochemical method with protein A-gold were used to investigate the formation of the secretory granule substructure in acinar cells of the gerbil parotid glands in normal conditions and after treatment with the ionophore monensin. In untreated animals and 90 min after treatment with monensin, peroxidase activity was seen in rER, in transport vesicles close to the condensing vacuoles, and in the dense core of condensing vacuoles and secretory granules, whereas the Golgi cisternae remain unreactive. At 45 or 60 min after stimulation with monensin, the condensing vacuoles and the immature granules in the trans Golgi area did not exhibit dense cores and their content appeared similar to the peripheral portion of the mature secretory granules. These observations suggest that, in Mongolian gerbil parotid acinar cells, some substances such as peroxidase may be transported from the rER directly to the condensing vacuoles.

Animals↗

Quantitative immunocytochemistry of Ca(2+)-Mg2+ ATPase in ameloblasts associated with enamel secretion and maturation in the rat incisor.

Our previous studies revealed intense membrane-associated labeling for Ca(2+)-Mg2+ ATPase (Ca(2+)-pump) in secretory and maturation ameloblasts in the rat incisor, both by enzyme cytochemistry and by immunohistochemical techniques. The purpose of the present study was to map the distribution of Ca(2+)-pump protein at the cellular and subcellular levels by means of a Ca(2+)-pump-specific monoclonal antibody and electron microscopic immunogold cytochemistry. Tissue specimens were dissected from secretory, early, and late enamel maturation zones. We quantified results by comparing gold particle densities over ameloblast lateral and distal plasma membrane regions, supranuclear cytoplasm, regions of the ruffled borders, and nuclei. The highest concentration of gold particles was seen over the distal membranes of early-maturation ameloblasts relative to those in late-maturation and secretory stages. Cytoplasmic labeling was less than that of the distal and lateral membranes, and gold particles located over nuclei were considered to be due to non-specific binding. These results are consistent with our earlier findings and suggest a role for the plasma membrane Ca(2+)-pump in the regulation of calcium availability to mineralizing enamel.

Ameloblasts↗

Quantitative immunocytochemical study of secretory protein expression in parotid glands of rats chronically treated with isoproterenol.

Chronic treatment of mice and rats with isoproterenol (IPR) causes marked hypertrophy and hyperplasia of the salivary glands, and alters the expression of several secretory proteins. We used quantitative postembedding immunogold labeling to study the cellular responses in the rat parotid gland during daily (up to 10 days) injections of IPR and during recovery (up to 14 days) after cessation of IPR treatment. Labeling densities of acinar cell secretory granules with antibodies to amylase and protein SMG-B1 (cross-reactive with the rat homologue of Parotid Secretory Protein, PSP) fell to 10% of control levels after 8-10 IPR injections, then increased during recovery, paralleling previous biochemical determinations of changes in protein and mRNA levels. With antibodies to proline-rich proteins (PRP), labeling densities initially fell, then subsequently showed considerable variability, but never exceeded control levels. These results contrast with biochemical determinations showing a marked induction of PRP synthesis, and may have both immunological and structural explanations. Occasional intercalated duct cells located close to the acini underwent differentiation toward an acinar-like phenotype as a result of IPR treatment. After 1-2 IPR injections, the secretory granules of these cells labeled with antibodies to amylase and PRP. Subsequently, the granules appeared electron-lucent and were increased in size and number. These observations support earlier work, suggesting that intercalated duct cells may differentiate into other gland cell types.

Amylases↗

Stimulation of Xenopus oocyte maturation by inhibition of the G-protein alpha S subunit, a component of the plasma membrane and yolk platelet membranes.

Oocytes of Xenopus laevis undergo maturation when injected with an affinity-purified antibody against the COOH-terminal decapeptide of the alpha subunit of the G-protein Gs, an antibody that inhibits Gs activity. Germinal vesicle breakdown, chromosome condensation, and polar body formation occur, with a time course similar to that for oocytes treated with progesterone. The alpha S antibody-injected oocytes also acquire the ability to be activated by sperm. Coinjection of the catalytic subunit of cAMP-dependent protein kinase, or incubation with cycloheximide, inhibits maturation in response to injection of the alpha S antibody; these experiments show that the alpha S antibody acts at an early point in the pathway leading to oocyte maturation, before formation of maturation promoting factor, and like progesterone, its action requires protein synthesis. Immunogold electron microscopy shows that alpha S is present in the yolk platelet membranes as well as the plasma membrane. These results support the hypothesis that progesterone acts by inhibiting alpha S, and suggest that the target of progesterone could include yolk platelet membranes as well as the plasma membrane.

Amino Acid Sequence↗

Immunogold localization of beta 1-integrin in bone: effect of glucocorticoids and insulin-like growth factor I on integrins and osteocyte formation.

Insulin-like growth factor I (IGF-I) and high-dose glucocorticoids exert opposite effects on bone formation. Because integrins are involved in cell and matrix organization, the effect of glucocorticoids and IGF-I on integrins was investigated in bone. An immunogold transmission electron microscopic (TEM) method was developed and applied to an organ culture system of 20-day fetal rat parietal bones, which mineralize in vitro. In parietal bone culture, 100 mM corticosterone treatment for 72 hr decreased calcification by 29%, disrupted osteoblast organization, and decreased the number of osteocytes. The quantity of osteoblast processes and the number of osteocytes per unit bone area were decreased by 48% and 56%, respectively. This effect was dose-dependent. The beta 1-integrin subunit was localized equally to apical and basal osteoblast surfaces by immunogold TEM. Compared to untreated control cultures, corticosterone (100 nM) decreased beta 1 by one third. In contrast, treatment with IGF-I for 72 hr increased calcification by 38%, cell processes by 71%, and osteocytes per unit area of bone by 107%. The number of gold particles localizing beta 1 on the osteoblast plasma membrane doubled, almost entirely on the apical surface of the osteoblast. Glucocorticoids and IGF-I had no significant effect on beta 1 levels in osteocytes. In conclusion, glucocorticoids and IGF-I modulate integrin levels on osteoblasts, and influence osteocyte formation and bone calcification. However, neither glucocorticoids nor IGF-I alter beta 1-integrin levels on osteocytes.

Animals↗

Persistence of a perinatal cellular phenotype in submandibular glands of adult rat.

In the perinatal submandibular gland (SMG) of the rat, Type I cells secrete protein C (89 KD) and Type III cells secrete B1-immunoreactive proteins (20-30 KD); both cell types secrete protein D (175 KD). After the disappearance of both perinatal cell types from the maturing acini, only cells of the intercalated ducts (ID) show strong reactivity for the perinatal antigens. In adult ID, light and electron microscopic immunocytochemical analysis showed that most cells had either C or B1 reactivity, a few had either C and D or B1 and D reactivities, and some cells were unreactive for all of the perinatal proteins. Occasional clusters of "adult" acini, however, were strongly positive for B1 and for D, and these clusters were negative for a typical adult acinar marker, the glutamine/glutamic acid-rich proteins (GRP). Also seen in some preparations were a few anomalous acini with the histological appearance of sublingual (SLG) acini. These were negative for the perinatal and adult submandibular gland marker proteins but reactive with an antibody against SLG mucin. We suggest that the B1-positive acini in the adult SMG consist of newly differentiated replacement cells that have arisen from the ID, and that the anomalous mucous acini are, phenotypically, SLG acini that have differentiated within the SMG parenchyma.

Animals↗

Cyclic AMP-reactive proteins in human saliva.

This study was conducted to compare cyclic AMP-reactive proteins (cARP), the secretory form of regulatory (R) subunits of cyclic AMP-dependent protein kinase (PKA), and cyclic nucleotide phosphodiesterase (PDE) activity in human whole saliva with that of parotid fluid. Additionally, experiments were done to determine whether secretory cARP is altered by environmental stimuli. Earlier work showed that R subunits are present in parotid fluid and in salivary glands of rats. No previous information is available about secretory PDE in saliva. Whole and parotid ductal saliva samples were collected by a non-invasive procedure from healthy volunteers. After photoaffinity labelling with [32P]-8-N3-cAMP, the R subunits were identified by autoradiography. Cyclic nucleotide PDE activity was measured as a function of the conversion of the cyclic nucleotide to the tritiated 5'-nucleotide. The results showed that R of the type II cAPK, RII (M(r) 50-54 kDa) and/or a slower-moving isoform (M(r) 54-56 kDa, RIIa) were present in all parotid saliva samples tested. Whole saliva was positive for RII in more than 95% of the samples tested (n = 62), but with 50-90% reduction in concentration compared to parotid fluid. Both female and male subjects exposed to controlled auditory (60-80 dB) stimuli responded by a two- to five-fold increase in photoaffinity labelling of cARP (salivary RII, RIIa and RIIfr). There was considerable individual variability, but in all cases the differences in the results were significant (p < 0.05, n = 20). Whole saliva showed measurable PDE activity in fresh or frozen samples, whereas no PDE activity was detected in parotid fluid.(ABSTRACT TRUNCATED AT 250 WORDS)

3',5'-Cyclic-AMP Phosphodiesterases↗