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Biomedical subjects

J Lu

Publications and source records attributed to J Lu.

At least 559 records · Page 31Linked to original sources

Surfactant protein D binding to alveolar macrophages.

Surfactant protein D (SP-D) is a lung-specific protein, synthesized and secreted by lung epithelial cells. It belongs to group III of the family of C-type lectins; each member of this group has an unusual overall structure consisting of multiple globular 'head' regions (which contain the C-type lectin domains) linked by triple-helical, collagen-like, strands. This group includes the surfactant protein A (SP-A) and the serum proteins mannan-binding protein, conglutinin and collectin-43, all of which have been shown to bind to the C1q receptor found on a wide variety of cells, including macrophages. Both SP-D and SP-A have been shown to enhance oxygen radical production by alveolar macrophages. Although this strongly suggests a direct interaction between SP-D and a specific receptor on alveolar macrophages, it is still unclear whether SP-D binds to the same receptor used by SP-A and/or C1q. Human SP-D was isolated from amniotic fluid and was radiolabelled using 125I. Alveolar macrophages were isolated from human bronchioalveolar lavage fluid, and also from bovine lung washings, by differential adhesion to 24-well tissue-culture plates. The study was carried out using EDTA-containing buffers, to eliminate Ca(2+)-dependent C-type lectin binding, and was also carried out at 4 degrees C to eliminate possible internalization by the cells. 125I-SP-D showed specific binding to alveolar macrophages in both a time- and concentration-saturable manner. The binding was inhibited, by approx. 90%, on addition of a 200-fold excess of unlabelled SP-D. The apparent dissociation constant (Kd) was (3.6 +/- 1.3) x 10(-11) M, based on the assumption that native SP-D is assembled as a dodecamer of 12 identical polypeptides of 43 kDa to yield a protein of 516 kDa. C1q was also shown to bind alveolar macrophages (Kd 3 x 10(-6) M), but addition of C1q did not show inhibition of the binding of 125I-SP-D to the macrophages. We conclude that SP-D binds specifically to alveolar macrophages and the receptor involved is different from that utilized by C1q.

Animals↗

Genomic organization, 5'-upstream sequence, and chromosomal localization of an insulinoma-associated intronless gene, IA-1.

IA-1 is a novel cDNA originally isolated from a human insulinoma subtraction library (ISL-153). It encodes a protein containing both a zinc finger DNA-binding domain and a putative prohormone domain. IA-1 transcripts have been found thus far only in tumors of neuroendocrine origin. Clinical studies have shown that IA-1 is a sensitive marker for neuroendocrine differentiation of human lung tumors. In this study, we cloned and sequenced the entire IA-1 gene and its 5'-upstream region from a human liver genomic library. In situ hybridization localized the IA-1 gene to the short arm of human chromosome 20. Sequence analysis and restriction enzyme mapping showed that the IA-1 gene is uninterrupted and appears to be intronless. Evidence that IA-1 is an intronless gene that can translate into protein was obtained from in vitro translation studies that showed that both IA-1 cDNA and IA-1 genomic DNA yielded identical protein products of approximately 61,000 daltons. Examination of the 5'-upstream region (2090 base pairs) revealed several tissue-specific regulatory elements, including glucokinase upstream promoter elements and a Pit-1 factor binding site. The presence of several different upstream regulatory elements may account for IA-1 gene expression in different neuroendocrine tumors.

Base Sequence↗

cDNA sequence and genomic organization of mouse secretin.

A murine insulinoma library was constructed by subtracting glucagonoma cDNAs from insulinoma cDNAs. Comparison of the nucleotide sequence of one of the clones with sequences from the GenBank database showed that it was a member of the secretin family. The clone, 490 bp long, encodes a protein of 133 amino acids consisting of a signal peptide, a N-terminal peptide, secretin, and a C-terminal peptide, which showed 88% and 80% homology with rat and porcine secretin precursor proteins, respectively. The translated secretin peptide showed a unique Met to Thr substitution at position 5 as compared to the secretins from other species. That the Met to Thr substitution was not tumor-related was demonstrated by the fact that an identical sequence was found in cDNA from normal mouse intestine. Studies on the mouse secretin gene revealed that it contains four exons separated by 81 bp, 110 bp, and 96 bp introns.

Amino Acid Sequence↗

Selenite induction of DNA strand breaks and apoptosis in mouse leukemic L1210 cells.

The effects of selenite on DNA integrity, cell viability, and long-term proliferative potential of mouse leukemic L1210 cells were examined in this study. Selenite treatment resulted in concentration-dependent increases in DNA single-strand breaks and double-strand breaks, as detected by a modified filter elution assay. A time-course experiment showed that DNA single-strand breaks preceded DNA double-strand breaks. Agarose gel electrophoresis of DNA extracted from selenite-treated cells displayed a nucleosomal fragmentation pattern that is characteristic of apoptotic cell death. The involvement of a Ca2+,Mg(2+)-dependent endonuclease responsible for DNA double-strand fragmentation was implied by the observation that two inhibitors of endonuclease activity, i.e. aurintricarboxylic acid and zinc, blocked selenite-induced DNA double-strand breaks. These inhibitors also prevented selenite-induced cell death as defined by loss of ability to exclude trypan blue dye. Selenite treatment severely impaired the colony-forming ability of cells capable of trypan blue exclusion. The induction of DNA strand breaks and commitment to apoptosis may explain the selenite-mediated growth inhibition and loss of long-term proliferative potential.

Animals↗

Primary structure of bovine collectin-43 (CL-43). Comparison with conglutinin and lung surfactant protein-D.

Collectin-43 (CL-43) is a bovine serum protein that is composed of subunits of three identical chains, each of which contains a collagen region and a C-type carbohydrate recognition domain; thus, CL-43 belongs to the collectins (group III of the C-type lectins). We have derived the complete primary sequence of CL-43 using partial protein sequencing, cDNA cloning, and reverse transcription-polymerase chain reaction techniques. The primary sequence of CL-43 shows that it contains an N-terminal region of 28 residues, followed by a collagenous domain of 38 repeats of Gly-Xaa-Yaa and then a C-terminal section of 159 residues, containing a short "neck" region and the carbohydrate recognition domain with the conserved residues found in all C-type lectins. The amino acid sequence of CL-43 showed 74% identity to bovine conglutinin and 70% identity to bovine lung surfactant protein D (SP-D), but the collagen region is considerably shorter than the 57 Gly-Xaa-Yaa triplets found in conglutinin and SP-D. Northern blot analysis showed that CL-43 was only synthesized in bovine liver, with no detectable signal in a variety of other bovine tissues, including lung. No cross-hybridizing signals were detected in mRNA from sheep, human, rat, or mouse liver. Since CL-43 and conglutinin have only been detected in members of bovidae, it is probable that an ancestral gene of these two proteins was first derived from a SP-D-like gene, and that this ancestral gene duplicated during evolution.

Amino Acid Sequence↗

Start site selection by Sp1 in the TATA-less human Ha-ras promoter.

The promoter of the human Ha-ras gene is very GC-rich, has four Sp1-binding sites and no TATA element. Transcription initiates at multiple start sites spread over a 90-base pair region, with a major cluster between +1 and +11. We detected the binding of a HeLa nuclear protein to the region from +6 to +20, a region which overlaps the major cluster and includes nine start sites within its boundaries. When part of this region was mutated, the nine start sites were abolished, so the region may be an initiator. The regulatory elements of the promoter have no differential effect on start site usage. But Sp1 bound to GCIV located at -38 acts as a start site selector, increasing the activity of the start sites from +1 downstream but not the upstream sites at -31, -21, and -10. When spacers of increasing length were inserted 3' to GCIV, the major cluster dwindled, and the upstream sites became strong sites, first the one at -10 and then the one at -21. Thus start sites were strongest when put into an Sp1-selected locus 36 to 53 base pairs downstream from GCIV and weak when outside this locus. The start sites with these properties may be due to initiators.

Animals↗

Testis and somatic Xrcc-1 DNA repair gene expression.

The human XRCC1 gene has been shown to be involved in DNA strand-break repair using the Chinese hamster ovary cell mutant EM9. The purpose of this study was to characterize the expression of Xrcc-1 to determine if there is tissue-specific expression and to provide a baseline of information for future studies that may involve altering Xrcc-1 expression in mice. Normal young adult male testis and enriched populations of pachytene spermatocytes and round spermatids displayed significantly higher levels of Xrcc-1 expression than other mouse tissues, although Xrcc-1 transcripts were found in low abundance in all tested tissues. Cultured mouse cell lines displayed levels of expression similar to male germ cells, which is a striking contrast to the levels of expression obtained in somatic tissues from the mouse. The relatively high levels of expression identified in male germ cells indicate Xrcc-1 may have an important role in male germ cell physiology.

Animals↗

In vitro genotoxicity studies of chrysotile asbestos fibers dispersed in simulated pulmonary surfactant.

Micronucleus (MN) formation and sister-chromatid exchange (SCE) assays were performed for asbestos in cultured Chinese hamster lung (V79) cells to determine the effect of surfactant treatment on the genotoxicity of two chrysotile asbestos samples of different fiber lengths. The cells were challenged in vitro with NIEHS intermediate- and short-length chrysotile fibers in both their native state and with surfactant pretreatment. For the surfactant pretreatment, the fibers were incubated in a simulated pulmonary surfactant which was prepared by ultrasonically dispersing dipalmitoyl lecithin (DPL), a primary component of pulmonary surfactant, in minimal essential medium (MEM). Chrysotile asbestos was ultrasonically mixed into the prepared surfactant dispersion or into MEM. V79 cells were exposed to DPL-treated intermediate-length chrysotile (TICA), intermediate-length chrysotile (ICA), DPL-treated short-length chrysotile (TSCA) or short-length chrysotile (SCA) fibers for 48 h. For each treatment, 2000 mononucleated cells were scored for MN formation, and 30 M2 metaphase cells were scored for SCE induction. The results showed that all samples, TICA, ICA, TSCA and SCA, caused significant elevation in the frequency of cells with micronuclei and of cells with two or more nuclei. The increase in micronucleus frequency was greatest in cells challenged with untreated intermediate-length fibers, and was greater for untreated than for DPL-treated short-length fibers. For the short-length fiber samples, DPL surfactant treatment decreased activity for multiple nucleus formation, while DPL treatment did not result in consistent changes in that activity for intermediate-length fibers. Results of SCE assays were either negative or inconclusive. Cells were more viable following TICA and TSCA than following ICA and SCA challenge as measured by cell counts after 48 h of incubation.

Animals↗

Up-regulation of surface antigens on epiplexus cells in postnatal rats following intraperitoneal injections of lipopolysaccharide.

Epiplexus cells in postnatal rats exhibited a remarkable up-regulation of major histocompatibility complex class I and II antigen expression after intraperitoneal administration of bacterial lipopolysaccharide; other surface antigens, i.e. complement type 3 receptors and leukocyte common antigens, were also vigorously elevated when compared with those of the corresponding control rats. The immunostaining of epiplexus cells with OX-42, OX-18 and OX-1 for the detection of complement type 3 receptors, major histocompatibility class I and leukocyte common antigens, respectively, was noticeably enhanced with a drastic increase in their numbers. The most significant finding was the upsurge of OX-6-positive epiplexus cells exhibiting major histocompatibility class II antigens, especially in rats receiving two intraperitoneal injections of lipopolysaccharide and killed at the age of 14 days. Immunoelectron microscopy confirmed the above findings and added the fact that the immunoreactive site was confined to the plasma membrane. An interesting feature was the occurrence of OX-6-positive macrophage-like cells in transit across the choroid epithelium. It is concluded from this study that the upsurge of immunopositive epiplexus cells after lipopolysaccharide injections was partly attributed to the infiltration of stromal macrophages which migrated across the epithelium. The up-regulation of major histocompatibility complex class I and II antigen expression on epiplexus cells by lipopolysaccharide would enable them to carry out self-recognizing and antigen-presenting function in the ventricular system.

Animals↗

Interaction of apical and basal membrane ion channels underlies electroreception in ampullary epithelia of skates.

The exquisite sensitivity of elasmobranch fishes to electric fields is thought to reside in electroreceptive organs called ampullae of Lorenzini. We measured the stimulus-response behavior of ampullary organs excised from skates. Under open-circuit conditions, the ampullary organ showed three distinct response states: spontaneous repetitive spikes, evoked spikes, and small, damped oscillatory responses. Under short-circuit conditions, the amplitude range for a linear current response to a sinusoidal (0.5 Hz) voltage clamp of an organ (assessed by spectral analysis of the harmonics generated) was 7-200 microV rms. Changes in the spike firing rate of the afferent nerve innervating the organ were evident for voltage clamps of the ampullary epithelium of 3 microV and the spike rate saturated for clamp steps exceeding 100 microV. Thus, the linear response range of the ampullary epithelium exceeded the range in spike firing rate of the afferent nerve. The steady-state transorgan electrical properties under voltage clamp conditions were obtained by analysis of complex admittance determinations in the frequency range 0.05-20 Hz for perturbations (< 100 microV rms) in the linear range. Admittance functions were distinctly related to the preparation states observed under open-circuit conditions. A negative real part in the organ admittance (i.e., a steady-state negative conductance generated by the preparation) was a common characteristic of the two (open-circuit) excitable states. The negative conductance was also confirmed by the direction of current flow through the ampullary epithelium in response to step voltage clamps. We conclude that the steady state-negative conductance is an essential property of the ampullary epithelium,and we suggest that the interplay of negative and positive conductances generated by ion channels in apical and basal membranes of receptor cells results in signal amplification that may contribute significantly to the electric field sensitivity of ampullary organs.

Afferent Pathways↗

Molecular cloning and identification of a receptor-type protein tyrosine phosphatase, IA-2, from human insulinoma.

A novel 3.6-kb cDNA, IA-2, with a 2,937-bp open reading frame was isolated from a human insulinoma subtraction library (ISL-153). The predicted amino acid sequence and in vitro-translated product of IA-2 cDNA revealed a 979-amino-acid protein with a pI value of 7.09 and a molecular mass of 105,847 daltons. The protein sequence is consistent with a signal peptide, an extracellular domain, a transmembrane region, and an intracellular domain. The extracellular domain contains an unusual cysteine-rich region following the signal peptide. The intracellular cytoplasmic domain of IA-2 possesses highly conserved regions similar to the catalytic domains found in members of the protein tyrosine phosphatase (PTP) family. Northern blot analysis showed that IA-2 mRNA was expressed in five of five freshly isolated human insulinomas, rat and mouse insulinoma cell lines, and enriched normal mouse islets. It also was found in normal human brain, pituitary, pancreas, and brain tumor cell lines, but not in a variety of other normal or tumor tissues. Based on the sequence and expression data, it appears that IA-2 is a new member of the receptor-type PTP family that is expressed in islet and brain tissues.

Amino Acid Sequence↗

Comparison of the effects of an organic and an inorganic form of selenium on a mammary carcinoma cell line.

The development of new compounds with greater cancer inhibitory activity and that are well tolerated continues to be a priority in chemoprevention research involving selenium. One compound, 1,-4-phenylene-bis(methylene)selenocyanate (p-XSC), is representative of a series of organoselenium compounds with these characteristics. In this study, the effects of p-XSC on a mouse mammary carcinoma cell line were compared to those of sodium selenite, which has been shown to be growth inhibitory. Treatment with p-XSC caused a 3- to 6-fold greater accumulation of selenium within cells than did treatment with equivalent amounts of selenite and cells were able to better tolerate higher cellular levels of selenium derived from p-XSC. Both compounds resulted in a dose-dependent reduction in cell number after 24 h of exposure. Selenite and p-XSC also caused a dose-dependent increase in cell death by apoptosis. This effect was observed within 5 h of treatment. The effect of p-XSC on apoptosis was more pronounced than that of selenite, especially at the 20 microM level of exposure. The induction of apoptosis by selenium compounds may partially account for their chemopreventive activity.

Animals↗

Effect of excess dietary iron on the promotion stage of 1-methyl-1-nitrosourea-induced mammary carcinogenesis: pathogenetic characteristics and distribution of iron.

The effect of feeding a 10-fold excess of dietary iron on the promotion stage of MNU-induced mammary carcinogenesis was investigated. Rats fed excess iron in the diet had more mammary carcinomas than rats fed the recommended level of iron. A significantly greater proportion of carcinomas in rats fed the excess iron diet had the normal Ha-ras gene rather than the mutated form (G-->A transition mutation in codon 12). In non-tumor bearing rats, mammary epithelial cells in lobules were the primary site of iron accumulation. However, in mammary carcinomas, a shift in the distribution of iron from the epithelial cells to the stroma was noted. Iron was predominantly found in tumor stroma; malignant epithelial cells failed to accumulate comparable levels of iron. These observations indicate that in the presence of excess iron there is an increase in the number of mammary carcinomas that do not bear the mutant Ha-ras gene. Whether changes in the distribution of iron within the mammary gland contribute to the altered pathogenetic characteristics of these tumors is being investigated.

Animals↗