Search PubMed⌕ Search

Biomedical subjects

J A Clements

Publications and source records attributed to J A Clements.

At least 37 records · Page 2Linked to original sources

Localization of a new prostate-specific antigen-related serine protease gene, KLK4, is evidence for an expanded human kallikrein gene family cluster on chromosome 19q13.3-13.4.

The human tissue kallikrein (KLK) family of serine proteases, which is important in post-translational processing events, currently consists of just three genes-tissue kallikrein (KLK1), KLK2, and prostate-specific antigen (PSA) (KLK3)-clustered at chromosome 19q13. 3-13.4. We identified an expressed sequence tag from an endometrial carcinoma cDNA library with 50% identity to the three known KLK genes. Primers designed to putative exon 2 and exon 3 regions from this novel kallikrein-related sequence were used to polymerase chain reaction-screen five cosmids spanning 130 kb around the KLK locus on chromosome 19. This new gene, which we have named KLK4, is 25 kb downstream of the KLK2 gene and follows a region that includes two other putative KLK-like gene fragments. KLK4 spans 5.2 kb, has an identical genomic structure-five exons and four introns-to the other KLK genes and is transcribed on the reverse strand, in the same direction as KLK1 but opposite to that of KLK2 and KLK3. It encodes a 254-amino acid prepro-serine protease that is most similar (78% identical) to pig enamel matrix serine protease but is also 37% identical to PSA. These data suggest that the human kallikrein gene family locus on chromosome 19 is larger than previously thought and also indicate a greater sequence divergence within this family compared with the highly conserved rodent kallikrein genes.

Amino Acid Sequence↗

Temporal and tissue-specific expression of kallikrein (Klk) genes and identification of a novel Klk messenger ribonucleic acid transcript during early development in the mouse.

The kallikreins are a multigene family of serine proteases that act on a diverse number of substrates, including several growth factors and extracellular matrix (ECM) glycoproteins and proteinases. Recently, this family has been implicated in the process of early development and embryo implantation. In this study, we used reverse transcription-polymerase chain reaction with gene-specific primers and Southern hybridization to elucidate the temporal and tissue-specific expression patterns of the mouse kallikreins Klk1, Klk3, Klk5, Klk9, and Klk21 during early development in the embryo, uterus, and decidua. We observed the expression of Klk1 (tissue kallikrein), Klk3 (gamma-nerve growth factor), Klk9 (epidermal growth factor-binding protein), and Klk21 in the early conceptus (until the 2-cell stage). Only Klk21 continued to be expressed in the blastocyst until Day 7.5 of pregnancy. Expression of Klk9 reappeared at Day 7.5 and was consistently detected until Day 11, the last day studied; Klk1 was again expressed in the embryo from Day 9.5, with decreased levels by Day 11. In contrast, in the uterus or decidua, there was no expression of Klk1 until Day 7.5, when mRNA transcripts were abundant; transcripts then decreased in the Day 9.5 and Day 11 uterus. Expression of Klk21 in the uterus and decidua displayed a similar pattern but was detected at much lower levels. Interestingly, a novel Klk21-like mRNA was also detected in uterine tissue samples but not in embryonic samples; Klk3, Klk5, and Klk9 were not consistently expressed in the uterus or decidua over this time. This is the first report of the expression of specific kallikreins during early development. The distinct gene- and tissue-specific expression patterns presented in this study, in conjunction with the well-characterized roles of kallikreins in regulation of protein activation, ECM degradation, and proliferative events, suggests the involvement of the kallikrein gene family during early development.

Amino Acid Sequence↗

Activation of the kallikrein kinin system in interstitial cystitis.

PURPOSE: We investigated whether the kallikrein kinin system is activated in interstitial cystitis by measuring urinary excretion rates of kinin peptides, active and total kallikrein, and the kininase neutral endopeptidase in women with interstitial cystitis. We compared these excretion rates to a control group of women with stress incontinence and normal bladder function. MATERIALS AND METHODS: Catheter urine was collected from subjects during a water diuresis (approximately 10 ml. per minute) before and after distention of the bladder with 100 ml. water. The contribution of the bladder wall to urinary kinins was assessed by measuring the change in kinin levels after 2 minutes of bladder stasis before and after distention. RESULTS: Absolute bradykinin and kallidin excretion rates were similar in women with interstitial cystitis and control subjects. Two minutes of bladder stasis after bladder distention increased urinary bradykinin (p = 0.02) but not kallidin excretion rates. Active and total kallikrein excretion rates were similar in patients with interstitial cystitis and control subjects. Neutral endopeptidase excretion rates were reduced in the initial urine collection from subjects with interstitial cystitis but were similar in both groups during later collection periods. CONCLUSIONS: These data provide evidence for increased bradykinin levels in the bladder wall of subjects with interstitial cystitis, which may be due in part to reduced neutral endopeptidase levels. These increased bradykinin levels may participate in the pathogenesis and symptomatology of interstitial cystitis.

Adult↗

Nonionic polymers reverse inactivation of surfactant by meconium and other substances.

A variety of substances including human meconium have been found to affect adversely the surface tension-lowering activity of pulmonary surfactants, and this effect may be important in the pathogenesis of a number of human diseases. To find whether inactivation of surfactant could be prevented or reduced by nonionic polymers, we added dextrans, polyethylene glycols (PEGs), or polyvinylpyrrolidones (PVPs) of various molecular weights to pulmonary surfactants. One to 3% human meconium or other inactivating substances were then added to the mixtures, which were tested in a modified pulsating bubble surfactometer. Polymers (3.3-500 kD) in 1-10% concentrations enhanced the ability of a commercial surfactant replacement (Survanta) to lower the minimum surface tension in the presence of meconium, serum, or lysophosphatidylcholine. Similar effects were seen when polymers were added after mixing of surfactant and meconium or other inhibitors, indicating that polymers are capable of reversing the inactivation. Results from rat experiments indicate that total lung capacity is increased when PEG is first added to the Survanta, then mixed with meconium and instilled into the lungs. We postulate that polymers separate meconium-surfactant complexes, permitting surfactant components better access to the air-liquid interface. Taeusch HW, Lu KW, Goerke J, Clements JA. Nonionic polymers reverse inactivation of surfactant by meconium and other substances.

Animals↗

Molecular detection of prostate cells in ejaculate and urethral washings in men with suspected prostate cancer.

PURPOSE: To determine whether prostatic cells were normally present in ejaculate and if the sensitivity and specificity of the detection of malignant prostate cells in ejaculate and urethral washings from men with suspected prostate cancer could be improved using the more sensitive molecular technique of reverse transcriptase-polymerase chain reaction (RT-PCR). MATERIALS AND METHODS: RT-PCR for prostate-specific antigen (PSA), prostate-specific membrane antigen (PSM) and Apoliprotein D (3 putative prostate-specific and/or cancer-specific markers) was performed on RNA extracts of ejaculate (80) and urethral washings (52) from 77 men with suspected prostate cancer and 12 young controls (<30 years of age) and urines from 5 men who had radical prostatectomies and 10 women. RESULTS: PSA, PSM and Apolipoprotein D expression was detected in ejaculates and urethral washings from both patient and control groups. No differences were observed in the results obtained for 58 men with suspected or 19 men with confirmed prostate cancer or the 18 vasectomized men within the patient group. Urines from the 5 men who had radical prostatectomies and 10 women were all negative for PSA, but PSM was detected in 2 female urines and in 3 radical prostatectomy samples. As few as 10 LNCaP prostate tumor cells could be detected by PSA RT-PCR when added to female urine. CONCLUSION: We have established a sensitive method of detecting prostatic cells in ejaculate and urethral washings and shown that PSA RT-PCR is a reliable indicator of prostate cells in these samples. However, RT-PCR for PSA, PSM and Apoliprotein D were not useful for discriminating malignant from non-malignant prostate cells.

Adult↗

Prostate-specific antigen and gross cystic disease fluid protein-15 are co-expressed in androgen receptor-positive breast tumours.

Androgens regulate breast cancer cell proliferation via androgen receptor (AR)-mediated mechanisms. To investigate further the androgen-responsiveness of human breast tumours, we examined the immunohistochemical expression of the AR and two androgen-regulated proteins, prostate-specific antigen (PSA) and gross cystic disease fluid protein-15 (GCDFP-15), in 72 primary breast tumours. AR immunoreactivity was present in the nuclei of breast tumour cells and was correlated with oestrogen receptor (ER; P < 0.05) and progesterone receptor (PR; P < 0.01) status. PSA and GCDFP-15 immunoreactivity was present in the cytoplasm of tumour cells but not the adjacent stromal cells. AR-positive cells were present in 85% (61/72) of breast tumours, and 98% (43/44) of PSA-positive and 92% (44/48) of GCDFP-15-positive tumours were also positive for AR. Positive immunoreactivity for both PSA and GCDFP-15 in breast tumours was highly dependent on AR status (odds ratios of 24.0 and 4.5 respectively), but unrelated to age, ER and PR status and axillary lymph node involvement. PSA immunoreactivity was more frequently observed in moderate and well-differentiated tumours and was significantly (P < 0.001) associated with GCDFP-15 immunoreactivity. In conclusion, PSA and GCDFP-15 immunoreactivity was dependent on the presence of AR, but not ER or PR in primary breast tumours.

Adult↗

Current perspectives on the molecular biology of the renal tissue kallikrein gene and the related tissue kallikrein gene family.

Renal tissue kallikrein is a member of the multigene family of serine proteases called the tissue kallikrein (KLK) gene family. This is a highly conserved family of genes, with a genomic structural organization that is identical for all these genes and other genes in the larger serine protease family, such as trypsin and chymotrypsin. These genes exhibit high sequence similarity both within and between species. However, there are clearly areas of sequence variability, which is most apparent in regions that form the substrate binding pocket of each enzyme and confers the substrate specificity of each individual enzyme. These genes are also often expressed in the same tissue, although each gene can have an individual tissue-specific pattern of expression. Similar patterns of diversity yet identity are also apparent in the regulation of kallikrein gene expression or enzyme activity. These similarities, and the fact that several of these gene families are located in tight clusters in the genome, support the notion that they have arisen by gene duplication. In this review, an overview of the molecular biology of the renal tissue kallikrein (KLK1) gene and the larger KLK gene family is given, highlighting the similarities yet diversity that is the hallmark of this family of genes, and how this knowledge has, and will, impact on our understanding of the role these enzymes play in normal physiological events and disease.

Animals↗

Lung surfactant: a personal perspective.

This perspective tells the story of the discovery, characterization, and understanding of the surfactant system of the lung; of how investigators from many disciplines studied the system, stimulated by the demonstration of surfactant deficiency in respiratory distress syndrome of the newborn; and of how the resulting knowledge formed a basis for highly successful surfactant substitution treatment for this syndrome. The chapter includes personal reminiscences and reflections of the author and ends with a few thoughts about the present status and future prospects of this field of research.

History, 20th Century↗

Kallikrein gene expression in human pituitary tissues.

OBJECTIVE: The glandular kallikreins are a family of enzymes involved in the post-translational processing of polypeptides. Three family members have been characterized in the human: glandular kallikrein (KLK1) and two genes expressed in the prostate, KLK2 or hGK1 and KLK3 or prostate specific antigen (PSA). Both kallikrein immunoreactivity and KLK1 mRNA have been detected in the rat anterior pituitary and oestrogen induced prolactinomas. Immunoreactive kallikrein has also been reported in prolactin secreting pituitary tumours in humans. In this study we wished to determine whether KLK1 and/or other KLK genes were expressed in human pituitary tumours. DESIGN AND PATIENTS: Retrospective analysis of KLK gene expression in pituitary tissue obtained at surgery from 11 patients with a range of pituitary syndromes, 10 of which were tumour induced and included four prolactinomas. Three normal pituitaries, obtained at necropsy, were also analysed. MEASUREMENTS: Pituitary total RNA was subjected to both Northern blot analysis, with KLK1 and KLK2 cDNA probes, and KLK-specific reverse transcriptase -- polymerase chain reaction (RT-PCR). RESULTS: No KLK1 gene expression was detected on Northern blot analysis although expression of PRL, GH and pro-opiomelanocortin (POMC) was variously detected. KLK RT-PCR coupled with Southern blot analysis using oligonucleotide probes specific for each of the three KLK genes was positive in many tumours but with varying levels and differential expression. Overall, KLK1 was the most abundant with KLK3 the least. The identity of KLK1 and KLK2 was confirmed by sequencing the PCR products. There was no obvious correlation between KLK1 and hormone gene expression; KLK1 was present in PRL positive and negative tumours and in normal pituitary tissue. CONCLUSIONS: We have demonstrated a low level of expression of KLK1 as well as KLK2 and KLK3 in the human pituitary. The expression of KLK2 and KLK3 in the pituitary is a novel finding. The lack of correlation between PRL and KLK1 gene expression is an unexpected finding suggesting that the interaction between these factors may be more complex in the human pituitary than in the rodent model.

Adolescent↗

Association of surfactant protein C with isolated alveolar type II cells.

Surfactant protein C (SP-C) is a small hydrophobic protein that is synthesized and secreted by alveolar type II cells. The mechanism of clearance of SP-C from the alveolar airspace is not well understood, although previous studies demonstrated that recombinant SP-C instilled into the lungs of spontaneously breathing anaesthetized rats was taken up by type II cells and incorporated into lamellar bodies. The current investigation was undertaken to characterize the interaction of a complex of SP-C and surfactant-like lipids with freshly isolated rat alveolar type II cells under conditions in which the extracellular milieu can be regulated. SP-C was isolated from alveolar proteinosis lavage fluid and radiolabeled with 125I-Bolton-Hunter reagent. The radiolabeled protein retained its ability to facilitate adsorption of phospholipids to an air/liquid interface. Labeled human SP-C associated with isolated type II cells in a concentration-dependent manner that was also dependent upon temperature and time. The association of labeled SP-C with isolated type II cells did not saturate up to 150 micrograms/ml. SP-A significantly enhanced the association of SP-C with isolated type II cells. Under the experimental conditions tested, SP-C was not degraded to TCA-soluble products. These results are consistent with the hypothesis that association or uptake of SP-C by type II cells may be enhanced by SP-A and that like SP-A, SP-C is recycled by type II cells.

Animals↗

Alveolar lining layer is thin and continuous: low-temperature scanning electron microscopy of rat lung.

The low-temperature electron microscope, which preserves aqueous structures as solid water at liquid nitrogen temperature, was used to image the alveolar lining layer, including surfactant and its aqueous subphase, of air-filled lungs frozen in anesthetized rats at 15-cmH2O transpulmonary pressure. Lining layer thickness was measured on cross fractures of walls of the outermost subpleural alveoli that could be solidified with metal mirror cryofixation at rates sufficient to limit ice crystal growth to 10 nm and prevent appreciable water movement. The thickness of the liquid layer averaged 0.14 micron over relatively flat portions of the alveolar walls, 0.89 micron at the alveolar wall junctions, and 0.09 micron over the protruding features (9 rats, 20 walls, 16 junctions, and 146 areas), for an area-weighted average thickness of 0.2 micron. The alveolar lining layer appears continuous, submerging epithelial cell microvilli and intercellular junctional ridges; varies from a few nanometers to several micrometers in thickness, and serves to smooth the alveolar air-liquid interface in lungs inflated to zone 1 or 2 conditions.

Animals↗

Kallikrein gene family expression in the rat ovary: localization to the granulosa cell.

The glandular or tissue kallikreins are a multigene family of serine proteases, of which 13 genes (rKLK1-13) have been identified in the rat and are expressed in a wide variety of tissues. Kallikrein-like enzyme activity has been detected during the periovulatory period in the gonadotropin-primed immature female rat ovary and suggested to play a role in the inflammatory-like response at ovulation. In this study, we examined whether this enzyme activity was due to local expression of a rat KLK gene family member. Ovarian RNA, prepared from gonadotropin-treated animals, was assessed for rKLK gene expression by reverse transcriptase-polymerase chain reaction (RT-PCR) with universal rKLK primers derived from highly conserved regions in the rat KLK genes. Southern blot analysis of the RT-PCR products, using oligonucleotide probes specific for the individual genes, indicated that five rKLK gene family members, rKLK1 (encoding true kallikrein), rKLK3, rKLK7, rKLK8, and rKLK9, were expressed at varying levels in the ovaries of both untreated control and gonadotropin-treated immature female rats. The identities of these five rKLK messenger RNAs were further confirmed by DNA sequence analysis of the PCR products. In situ hybridization of gonadotropin-treated ovaries localized rKLK3 and rKLK7 gene expression to the luteinizing granulosa cells of periovulatory follicles. In an enriched population of nonluteinizing granulosa cells prepared from estrogen-primed animals, we also demonstrated rKLK3, rKLK7, rKLK9, and rKLK12 (but not rKLK1 or rKLK8) expression, whereas all six genes were expressed in the ovaries of these animals. In summary, we have reported the expression of six KLK gene family members in the rat ovary and localized this expression primarily to the granulosa cell. The potential roles of these enzymes in ovulation or other aspects of ovarian, particularly granulosa cell, function are yet to be elucidated.

Animals↗

Surfactant apoprotein A modifies the inhibitory effect of plasma proteins on surfactant activity in vivo.

Surfactant apoprotein A (SP-A) reduces the inhibitory effects of plasma proteins on the surface tension lowering properties of pulmonary surfactant in vitro. To test the effects of SP-A in vivo we administered a complete natural dog lung surfactant (DLS) containing apoproteins SP-A, SP-B, and SP-C, a butanol extract of DLS (DLSE) containing only apoproteins SP-B and SP-C, and DLSE supplemented with SP-A intratracheally to prematurely delivered rabbit pups in the presence of increasing amounts of human plasma. In the absence of plasma DLS and DLSE (100 mg/kg phospholipid) had comparable effects on lung mechanics (compliance during ventilation with a tidal volume of 6-7 mL/kg and quasi-static pressure-volume behavior) in this surfactant deficiency model. Plasma proteins in increasing amounts to a maximum protein concentration of 62.5 mg/mL had no effect on the response of the pups to DLS. In contrast, plasma added to DLSE in concentrations above 20 mg/mL significantly increased the peak inspiratory pressure (PIP) required to ventilate the pups with a tidal volume of 6-7 mL/kg, reduced the calculated total lung compliance, and decreased the deflation lung volumes. The inhibitory effects of plasma on DLSE were significantly less when SP-A was added to DLSE (5:1, phospholipid:SP-A, wt:wt). The addition of SP-A to DLSE in plasma restored the activity of the extract to levels comparable to complete DLS. These results suggest that plasma can interfere with surfactant function and that SP-A has a significant protective effect for surfactant against the inhibitory effects of plasma in vivo.

Animals↗

Pulmonary surfactant therapy.

Surfactant replacement therapy is now an integral part of the care of neonates since several clinical trials of natural surfactant extracts and synthetic preparations have shown efficacy in the treatment of infants with hyaline membrane disease. In these studies, early treatment with exogenous surfactant substantially reduced mortality and the incidence of air leak, although it did not appear to reduce the incidence of other complications, in particular bronchopulmonary dysplasia. Early reports of exogenous surfactant therapy in patients with the adult respiratory distress syndrome, although promising, remain limited in number. More research is needed to improve on current modes of therapy and to investigate the possible role of surfactant in other lung diseases of both newborns and adults.

Adult↗

Evaluation of pressure-driven captive bubble surfactometer.

We modified the captive bubble surfactometer [S. Schürch et al. J. Appl. Physiol. 67: 2389-2396, 1989] to facilitate the measurement of surface adsorption rates and to simplify its construction. We used a range of standards and monolayers of dipalmitoylphosphatidylcholine to check the calibration of the device against measurements made in a Wilhelmy surface balance and in the captive bubble by using a cathetometer, and we found good agreement. As a further test we measured the surface properties of rabbit lavage lung surfactant (60,000 x average g for 60 min) at 1.0 mg phospholipid/ml. This material adsorbed within 1 s to near-equilibrium surface tension, reached surface tensions of < 5 mN/m on the second compression, and formed very stable films. We conclude that a captive bubble surfactometer can provide accurate information about important surface properties of lung surfactant films.

1,2-Dipalmitoylphosphatidylcholine↗