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Clonal analysis of palmar fibromatosis: a study whether palmar fibromatosis is a real tumor.

BACKGROUND: Palmar fibromatosis that arises in the palmar soft tissue is characterized by infiltrative growth with a tendency toward local recurrence but does not metastasize. This study investigated the clonality of this process in twelve female patients, each with a single lesion, by examining the pattern of X-chromosome inactivation. METHODS: Hematoxylin and eosin stained sections of formalin-fixed, paraffin-embedded tissues were microdissected by laser capture microdissection to obtain the proliferative spindle cells. Tumor cells were isolated from the sections of rectum adenocarcinoma, and used for positive control. The genomic DNAs was extracted with phenol-chloroform, digested with a methylation-sensitive restriction endonuclease HpaII, and amplified by polymerase chain reaction (PCR), using primers targeted to a highly polymorphic short tandem repeat (STR) of the human androgen receptor gene (HUMARA). RESULTS: Among the twelve samples, three samples failed amplification, one sample showed homozygosity which was not suitable for further analysis, eight samples were successfully amplified, and showed a random X chromosome inactivation pattern, suggesting polyclonality of these lesions. CONCLUSION: The current findings suggest that palmar fibromatosis is a reactive proliferation rather than a clonal neoplasm.

Journal Article↗

Clonal analysis of neoplastic transformation in cultured diploid rat liver epithelial cells.

Expression of TGF-alpha mRNA, which correlates well with the ability of cells to condition medium with an EGF-like activity, clonally segregates best with tumorigenicity among the several single phenotypes considered in this study. The results of unreported studies in which we have analyzed the quantitative relationships between the expression of selected phenotypes and tumorigenicity, suggest that the elevated expression of myc and TGF-alpha mRNAs interact in their associations with tumor yield. These results suggest that elevated myc expression sensitizes hepatic epithelial cells to the possible tumorigenic action of TGF-alpha. This observation may explain why the correlation between the qualitative expression of TGF-alpha and tumorigenicity, described here, is not perfect. Conventionally applied markers of transformation in hepatocytes in vivo and in cultured liver epithelial cells in vitro that we studied -histochemical expression of GGT, ability to grow in medium containing low levels of calcium, and ability to grow in soft agar- clonally segregated with tumorigenicity poorly in liver epithelial cells transformed in vitro. We conclude that these phenotypes are not adequate markers for determining the lineage of hepatic epithelial neoplasms (including, probably hepatocellular cancers arising in vivo). This study appears to be the first to attempt to analyze clonally the association of these markers with tumorigenicity, and to quantify the sensitivity, specificity, and predictive value of the associations. Our study suggests that the relatively weak associations of these phenotypes with tumorigenicity may be related only to their stronger associations with expression of TGF-alpha, or to some other property that is strongly associated with tumorigenicity. Expression of TGF-alpha is more strongly associated with expression of GLC, for example, than is the GLC phenotype with tumorigenicity. At least for GLC, autocrine stimulation by TGF-alpha is likely, since EGF increases growth of WB cells in low calcium medium. This observation may explain the perfect correlation between expression of TGF-alpha and GLC. EGF also stimulates lactate dehydrogenase, pyruvate kinase, and glucose 6-phosphate dehydrogenase in WB cells. However, quantitative correlation between GGT activity and TGF-alpha is less strong. Thus, our data from these studies suggest that the tumorigenic phenotype of cultured hepatic epithelial cells is intimately dependent on the expression of the TGF-alpha gene, possibly producing autocrine stimulation of growth via the cells' EGF receptors. This is the most simple view of the potential relationship between TGF-alpha expression and tumorigenicity in liver epithelial cells.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Clonal analysis of bilateral breast cancer.

Forty-nine pairs of bilateral breast tumors (41 synchronous and 8 asynchronous cases) were examined for X-chromosome inactivation status and p53 mutations to address the issue of their clonality. Among 12 cases that were informative for the trinucleotide repeat polymorphism in exon 1 of the androgen receptor gene on the X chromosome, 3 cases were found to have different alleles of the locus inactivated in the right and left breast tumors, indicating that the two tumors arose from distinct transformed cells. Thirteen tumors (13%) from 11 women (22%) contained somatic mutations in exons 5-8 of the p53 gene. In two cases, both breast tumors harbored p53 mutations, but the specific mutations were not identical. Seven synchronous and two asynchronous cases had p53 mutations in one tumor only. A germ line p53 mutation at codon 248, one of the most common p53 mutations in Li-Fraumeni syndrome, was observed in one case. Immunohistochemical analysis of p53 protein with a monoclonal antihuman p53 antibody showed concordant positivity between the right and left tumors in three bilateral breast cancer cases. Our results suggest that at least some bilateral breast tumors originate from distinct cells, but that some bilateral breast tumors may be related through a common p53 abnormality.

Adult↗

Heterogeneity of B cell growth factor (BCGF)-producing T cells in humans. Clonal analysis of BCGF-producing cells within T4+ and T8+ subsets and evidence for the involvement of different growth factors in different BCGF assays.

Human peripheral blood T cells were cloned under conditions allowing the clonal expansion of virtually all T cells. Clones derived from T4+ or T4- (T8+) subsets were screened for their ability to induce B cell proliferation either in the Staphylococcus aureus Cowan-I (SAC)-driven assay or in the costimulation assay based on the use of anti-mu antibodies. BCGF activity in the SAC- and in the anti-mu-driven system was displayed by 13% and 15% T8+ clones, respectively, while 74% and 79% T4+ clones had BCGF activity in the same assay. SN of clones with BCGF activity were further screened for their susceptibility to the inhibition by CM 269 (anti-IL-2 receptor) monoclonal antibody. All clones were inhibited in the SAC assay, whereas several clones were partially or totally resistant to inhibition in the anti-mu assay. Nine of such non-inhibited clones were further analyzed for their ability to produce gamma-IFN (known to act as a BCGF) and IL-2: six of them were found to produce gamma-IFN, while none produced any detectable IL-2 activity.

Cells, Cultured↗

Clonality analysis of different histological components in combined small cell and non-small cell carcinoma of the lung.

Combined small cell and non-small cell carcinoma is relatively rare in the lung. Examination of the clonal relationship of different components in this type of tumor may give a clue to the rarity. We retrieved 6 such tumors; all 6 had small cell carcinoma and adenocarcinoma components, and 3 had an additional squamous cell carcinoma component. We examined the point mutations in the p53 gene and allelic loss (ie, the loss of heterozygosity [LOH] pattern) of chromosome 3p in each component. p53 mutations were detected in the small cell carcinoma component of 5 tumors and in the non-small cell carcinoma components of 2 tumors. In 1 case, the squamous cell carcinoma component had a p53 mutation locus identical to that in the small cell carcinoma component, but in the other case, the adenocarcinoma component had a different mutation than that in the small cell carcinoma component. Chromosome 3p LOH loci in the squamous cell carcinoma component were present in the small cell carcinoma component in all 3 cases, but some LOH loci were not identical in the small cell carcinoma and adenocarcinoma components in 3 cases. These results suggest that the small cell and squamous cell carcinoma components of combined small cell lung carcinomas have an intimate clonal relationship. On the other hand, the adenocarcinoma component often may be derived from a separate clone or, more likely, undergo a progressive process separate from the squamous cell-small cell carcinoma beginning in a very early stage, that is, before the appearance of p53 and chromosome 3p abnormalities. This tumorigenesis process may explain the relative rarity of combined small cell and non-small cell carcinoma, which occurs primarily in the peripheral lung, an infrequent site of squamous cell carcinoma.

Adenocarcinoma↗

Clonality analysis by sequence variation of the latent membrane protein 1 gene in patients with chronic active Epstein-Barr virus infection.

Chronic active Epstein-Barr virus (EBV) infection is a severe systemic disease associated with high rates of mortality and morbidity. Recent studies suggest that the clonal expansion of EBV-infected T or natural killer cells plays a crucial role in the pathogenesis of chronic active EBV infection. However, it is not clear whether chronic active EBV infection is truly a monoclonal disorder that originates from one cell. The clonality of EBV was investigated by sequence variation of the latent membrane protein 1 (LMP1) gene, which has a high degree of sequence heterogeneity. Peripheral blood mononuclear cells were obtained from nine Japanese patients with chronic active EBV infection and four with infectious mononucleosis. A carboxyl-terminal region of the LMP1 gene was analyzed by polymerase chain reaction (PCR). The amplified PCR products were subcloned, and 18 clones from each sample were sequenced. Patients with chronic active EBV infection each had two to five different LMP1 nucleotide sequences, whereas patients with infectious mononucleosis each had one to seven different sequences. Patients with chronic active EBV infection and infectious mononucleosis both had one dominant sequence. Longitudinal analysis was performed in four patients with chronic active EBV infection, in whom the dominant strains were found to have remained unchanged for several years. The results suggest that EBV in patients with chronic active EBV infection was polyclonal, although clonal expansion may occur. Collectively, these findings are critical to clarify further the pathogenesis of chronic active EBV infection and aid in the development of effective treatment strategies.

Adolescent↗

In vitro clonal analysis of mouse neural crest development.

Analysis of lineage segregation during mammalian neural crest development has not been sufficiently performed due to technical difficulties. In the present study, therefore, we established a clonal culture system of mouse neural crest cells in order to analyze developmental potentials of individual neural crest cells and their patterns of lineage segregation. 12-O-Tetradecanoylphorbol-13-acetate (TPA) and cholera toxin (CT) were applied to culture medium to trigger melanogenic differentiation of mouse neural crest cells. Three morphologically distinct types of clones were observed. (1) "Pigmented clones" consisted of melanocytes only, suggesting that the clone-forming cells were committed to the melanogenic lineage. These clones were observed only in the presence of TPA and CT. The proportion of this type of clone (8%) was much lower than that of the equivalent type of clone in quail trunk neural crest (40-60%; Sieber-Blum and Cohen, 1980, Dev. Biol. 80, 96-106). It therefore appears that the segregation pattern to the melanogenic lineage during mouse neural crest development in vitro differs quantitatively from that in the quail. (2) "Mixed clones" consisted of pigmented and unpigmented cells. Like pigmented clones, they were observed only in the presence of TPA and CT. The clones contained up to four types of cells: melanocytes, S100-positive cells (Schwann cells or melanogenic precursor cells), serotonin (5-HT)-positive autonomic neuron-like cells, and substance P (SP)-immunoreactive sensory neuron-like cells. Thus, at least some mixed clone-forming cells are pluripotent. (3) Two classes of "unpigmented clones" were observed that consisted of unpigmented cells only. These clones developed in the presence and absence of TPA and CT. Unpigmented clones in one class contained up to three types of cells as well as other, as yet unidentified cells: S100-, 5-HT-, and SP-positive cells. This observation suggests that at least some of these clones originate from cells with a partially restricted developmental potential. Clones in another class consisted of S100- or SP-positive cells only. These clones might be derived from cells restricted to the SP-positive neuronal cell or melanocyte/Schwann cell lineage. The present data indicate that at initiation of migration, the mouse neural crest of the trunk region is a heterogeneous population of cells containing pluripotent cells, cells with a restricted developmental potential, and cells apparently committed to the melanogenic cell lineage.

Animals↗

Clonal analysis of the epithelial component of Warthin's tumor.

The proliferation of the epithelial component of Warthin's tumor is generally considered to represent a neoplastic condition. There has been much controversy about the histogenesis of this tumor, and the clonality of the epithelial component has not been clarified. We examined the clonal status of epithelial cells of Warthin's tumor by using a polymerase chain reaction (PCR) method based on trinucleotide repeat polymorphism of the X chromosome-linked human androgen receptor gene (HUMARA) and on random inactivation of the gene by methylation. Total DNA was isolated from formalin-fixed, paraffin-embedded tissue from 16 women with Warthin's tumor. Of the 16 cases analyzed, 7 were heterozygous for the HUMARA polymorphism and informative. The epithelial components of the tumors from the 7 cases were microdissected under the light microscope, and were subjected to extraction of DNA and HUMARA analysis. Using a permanent aqueous mounting medium during microdissection, we succeeded in reducing the rate of contamination by lymphocytes in the samples to less than 10%. All 7 cases showed patterns of polyclonal proliferation in the HUMARA analysis. Our results showed the nonclonal nature of Warthin's tumor, suggesting that Warthin's tumor is a non-neoplastic tumor-like condition. HUM PATHOL 31:1377-1380.

Adenolymphoma↗

Molecular clonal analysis of recurrent bladder cancer.

In order to select the optimum therapy for patients at risk of recurrent bladder cancer, it is necessary to know the pathway of recurrence development. However, the origin of recurrent bladder cancer is controversially discussed. Therefore, the aim of our study was to define the clonal origin of recurrent tumors of the bladder using molecular genetic markers. Thirty cases with recurrent bladder cancer (1-4 recurrences per case) were investigated by microsatellite analysis using 4 markers for chromosome 9. PCR was performed according to standard protocols followed by gel electrophoresis and automated analysis using an automated DNA-Sequencer (LI-QOR). In 25 of 30 cases, loss of heterozygosity (LOH) occurred in at least 1 tumor. Identical LOH was detected in 20 cases. In all these cases the same allele was affected. Different LOH patterns were found in 4 cases showing LOH in only 1 tumor and in 1 case with alterations of different markers. In 5 cases, no alterations were detected using these markers. Our results show that the majority of bladder cancer recurrences are characterized by monoclonal origin. These data indicate that recurrence is caused by cell dissemination from the original tumor. For that reason, an early instillation therapy should be performed after transurethral resection.

Chromosomes, Human, Pair 9↗

Clonal analysis of patterns of growth, stem cell activity, and cell movement during the development and maintenance of the murine corneal epithelium.

Patterns of growth and cell movement in the developing and adult corneal epithelium were investigated by analysing clonal patches of LacZ-expressing cells in chimeric and X-inactivation mosaic mice. It was found that cell proliferation throughout the basal corneal epithelium during embryogenesis and early postnatal life creates a disordered mosaic pattern of LacZ(+) clones that contrasts with patterns of proliferation and striping produced during the later embryonic stages of retinal pigmented epithelium development. The early mosaic pattern in the corneal epithelium is replaced in the first 12 postnatal weeks by an ordered pattern of radial stripes or sectors that reflects migration without mixing of the progeny of clones of limbal stem cells. In contrast to previous assumptions, it was found that maturation of the activity of limbal stem cells and the pattern of migration of their progeny are delayed for several weeks postnatally. No evidence was found for immigration of the progeny of stem cells until the 5th postnatal week. There are approximately 100 clones of limbal stem cells initially, and clones are lost during postnatal life. Our studies provide a new assay for limbal and corneal defects in mutant mice.

Animals↗

Location of stem cells of human hair follicles by clonal analysis.

We have examined the growth capacity of keratinocytes isolated from human scalp hair follicles. Like the keratinocytes of glabrous epidermis, most of the colony-forming cells are classified as holoclones or meroclones when analyzed in a clonal assay. Some of them have extensive growth potential, as they are able to undergo at least 130 doublings. Therefore, the hair follicle, like the epidermis, contains keratinocytes with the expected property of stem cells: an extensive proliferative capacity permitting the generation of a large amount of epithelium. We have also examined the distribution of clonogenic keratinocytes within the hair follicle. Several hundred colony-forming cells are concentrated at a region below the midpoint of the follicle and outside the hair bulb. This region lies deeper than the site of insertion of the arrector pili muscle, which corresponds with the position of the bulge when the latter can be identified. In contrast, few colony-forming cells are present in the hair bulb, where most of the mitotic activity is observed during the active growth phase of the follicle. Paraclones, which are present both in the midregion and in the bulb of hair follicles, are unlikely to be the transient amplifying cells expected from kinetic studies.

Animals↗

Clonal analysis of the malignant properties of B16 melanoma cells treated with the DNA hypomethylating agent 5-azacytidine.

The role of DNA methylation in the generation of tumor cell variants with altered growth behavior has been investigated. Cultures of the clonally heterogeneous B16 melanoma cell line and a clonal population (B16-CL) derived from it were treated with the DNA hypomethylating agent, 5-azacytidine (5-Aza-CR). The tumorigenic and metastatic properties of (sub)clones isolated from these cultures before and after drug treatment were assayed by injection via multiple routes into syngeneic C57BL/6 mice using a range of cell doses. The rate of tumor growth was monitored following intrafootpad (i.f.p.) injection and the tumor incidence was calculated from the frequency of tumor formation at i.f.p. and supraclavicular subcutaneous (s.c.) sites. Formation of both spontaneous (i.f.p., s.c. inoculations) and experimental (intravenous (i.v.) inoculation) metastatic potential was also investigated. The most consistent effect of 5-Aza-CR was the introduction of heterogeneity with respect to the tumorigenic phenotype. The effect of 5-Aza-CR treatment on metastatic behavior was variable. The majority of tumor cell variants that arose following 5-Aza-CR treatment displayed decreased malignant potential and reduced DNA methylation levels relative to untreated control cells, but the correlation was not absolute. The decreases in DNA methylation levels induced by 5-Aza-CR were unstable and began to rebound within 1 week of drug treatment. The results of the current study indicate that although 5-Aza-CR can introduce significant shifts in the malignant properties of treated cells, the direction and magnitude of the induced alterations are not predictable and are influenced by a variety of experimental parameters including the starting tumor cell population, route of tumor cell inoculation, and the drug treatment protocol. In addition, because DNA methylation levels can rebound rapidly (days) it is difficult to correlate changes in this parameter with the observed alterations in malignancy, which can only be assessed in long-term biological assays (weeks).

Animals↗

Clonal analysis of lymphocytes from tumor, peripheral blood, and nontumorous kidney in primary renal cell carcinoma.

The immunological properties of lymphocytes from tumor, peripheral blood (PBL), and nontumorous kidney from 16 patients with renal cell carcinoma were characterized at the clonal level with respect to their clonogenic efficiency, phenotypic expression, and cytotoxicity against autologous and allogenic tumor cells. The objectives were to delineate: (a) the quantitative differences in the immunological properties of tumor-infiltrating lymphocytes (TIL) from patient to patient; and (b) the qualitative differences in immunological properties between TIL and lymphocytes from peripheral blood or nontumorous kidney from a single patient. A total of 926 clones were characterized for phenotype expression, and 465 clones were characterized for cytotoxicity. The clonogenic efficiency of TIL varied with individuals: high in one patient; relatively high to moderate in seven patients; low in seven patients, and extremely low in the remaining one patient. The levels of autologous tumor cell lysis by TIL clones also varied with individuals. More than one-third of the TIL clones established in 4 of 13 patients displayed significant (greater than or equal to 10%) lysis against autologous tumor cells, and in each of the four patients the average percentage of lysis in the total TIL clones was higher than 10%. In two patients, 5 of 26 or 3 of 13 TIL clones were cytotoxic, but averages of percentage of lysis in the total clones were less than 10%. One 1 or 2 TIL clones of 10-27 total clones were cytotoxic in each of 4 patients, while no cytotoxic TIL clones were found in the remaining 3 patients. Clonogenic efficiency did not correlate with the level of cytotoxicity, and TIL from no tumors displayed both high proliferation and high cytotoxicity at the clonal level. In a majority of patients (12 of 13), most cytotoxic TIL clones against autologous tumor cells also lysed allogenic tumor cells. In contrast, TIL clones lysed only autologous tumor cells in the remaining one patient (patient 2). The clonogenic efficiency of TIL was lower than that of PBL in 6 of 12 patients, while the opposite was true in the remaining 6 patients. The level of cytotoxicity in the PBL clones of these 12 patients primarily correlated with that of the TIL clones. With one exception (patient 2), most cytotoxic PBL clones against autologous tumor cells also lysed allogenic targets in a majority of patients. CD4+CD8-T-cell clones (70-85%) predominated in all patients regardless of the different lymphocyte sources.(ABSTRACT TRUNCATED AT 400 WORDS)

Antigens, CD↗

Clonal analysis of B cells in the osteoarthritis synovium.

OBJECTIVES: Cellular and humoral immunity to collagen and cartilage proteoglycan were shown in patients with osteoarthritis (OA). Inflammatory infiltration containing T and B lymphocytes and macrophages, which are HLA-DR positive, is often seen in the synovial membrane of patients with OA. An analysis of the DNA restriction enzyme patterns of T lymphocytes from the OA synovium showed an oligoclonal pattern of T cell receptor beta chain gene rearrangements. No similar studies of B cell clonality have previously been performed. This study aimed at determining the clonal characteristics of the B cells in the OA synovium. METHODS: A reverse transcriptase-polymerase chain reaction of the immunoglobulin transcripts of B cells in the synovial membranes from six patients with OA was performed and the products were analysed by a single strand conformation polymorphism analysis. RESULTS: Several dominant bands were seen in all samples and some of the dominant bands were common among the two or three separate regions of each synovial sample. CONCLUSION: Infiltrated B cells are oligoclonal, and an antigen driven immune response may play a part in the progression of the disease process in OA.

B-Lymphocytes↗

Clonal analysis of the relationships between mechanosensory cells and the neurons that innervate them in the chicken ear.

In vertebrates, hair-cell-bearing mechanosensory organs and the neurons that innervate them share a common placodal origin. In the inner ear, the peripheral neurons for both auditory and vestibular systems emigrate from the otic placode as neuroblasts, and divide, differentiate and innervate only one of six to eight distinct sensory organs. How these neurons find their correct target is unknown, although one suggestion is that they synapse with clonally related cells. To test this idea for both the middle and inner ears of chicken embryos, lineage analysis was initiated at the time of neuroblast delamination by labeling progenitors with replication-defective retroviruses. The vast majority (89%) of clones were restricted to a single anatomical subdivision of the sensory periphery or its associated ganglia, indicating limited clonal dispersion. Among the remaining clones, we found evidence of a shared neurosensory lineage in the middle ear. Likewise, in the inner ear, neurons could be related to cells of the otic epithelium, although the latter cells were not widely distributed. Rather, they were restricted to a region in or near the utricular macula. None of the other seven sensory organs was related to the ganglion neurons, suggesting that a common lineage between neurons and their targets is not a general mechanism of establishing synaptic connections in the inner ear. This conclusion is further strengthened by finding a shared lineage between the vestibular and acoustic ganglia, revealing the presence of a common progenitor for the two functional classes of neurons.

Animals↗

Clonal analysis suggests provirus expression in a subpopulation of human malignant trophoblast cells harbouring the human T cell lymphotropic virus type-I genome.

Previous studies have indicated that the villous trophoblast may be involved in intrauterine HTLV-I infection. Although the data furnished by our group (Liu et al., 1995) have demonstrated that the human trophoblast-derived malignant cell lines JAR and JEG-3 are susceptible to HTLV-I, the infection, even after thorough analysis, appeared to be limited to expression at the transcriptional level. In the present report, we sought to explore virus expression at the single cell level using eight clonally selected cell lines which were derived by limiting dilution from the previously infected parental cultures. Of the three cell lines JAR-H2, JAR-H3, and JEG-H3, all of which harboured full-length provirus, only in two (JAR-H2 and JEG-H3) were the virus-specific tax/rex and env transcripts demonstrated using RT-PCR. When compared with MT-2 cells, the detected steady-state levels of HTLV-I mRNA appeared to be lower by three orders of magnitude. Viral Tax protein displaying a typical intranuclear localization was found in 1-2% of JAR-H2 and JEG-H3 cells. Moreover, an altered phenotype characterized by multinucleated syncytia was observed in these cell cultures with the same frequency as Tax transactivator, implying a fusogenic activity of env protein. Infectious virus, however, could not be rescued from JAR-H2 or JEG-H3 clones by coculture with cord blood mononuclear cells. Our data suggest that trophoblast represents a susceptible, albeit a slightly permissive, host system for HTLV-I.

Base Sequence↗

Genetic requirement of epidermal and female germ line cells in Drosophila in the light of clonal analysis.

Whether the function of a gene is required in a given cell type is often determined through the analysis of clones homozygous for a mutant allele of the gene. The clones usually develop following X-ray induced mitotic recombination. The paper summarizes the conclusions of clonal analyses of different types of mutations in both the epidermis and the female germ line cells of Drosophila. Principles of the so called dominant female sterile technique -for the germ line and the follicle cells- and its use are summarized. Special attention is paid to the genetic requirement of the female germ line due to its fundamental function in the regulation of early embryogenesis.

Animals↗

Clonal analysis of immortalized renal proximal tubule cells: Na(+)/glucose cotransport system levels are maintained despite a decline in transport function.

Primary rabbit kidney proximal tubule (RPT) cells (S.D. Chung et al., 1982, J. Cell Biol. 95, 118-126) were transfected with the vector pRSV-T, which contains SV40 early region genes. After the third passage (when normal cells had stopped dividing), individual colonies formed in cultures transfected with pRSV-T. Clonal isolates (RPT-I cells) could be obtained in a simple and reproducible manner. Southern analysis of clone RPT-I8 indicated the presence of SV40 early region genes. Nuclear SV40 T was detected. After 23 passages, and subcloning, RPT-I8 (and subclones) was found to express renal proximal tubule markers to a similar extent, indicating that the phenotype was stable. Nevertheless, the activities of the Na(+)/glucose cotransport system, gamma-glutamyl transpeptidase and alkaline phosphatase, were reduced as compared with primary cultures. Western analysis indicated that the level of Na(+)/glucose cotransporters was maintained in RPT-I8 cells, when compared with intact proximal tubules and primary cultures. Thus, the reduction in alpha-MG uptake in RPT-I8 cells may be attributed to other types of cellular alterations, including changes in energy metabolism. Indeed, growth in glucose-free medium was not observed in RPT-I8 cell cultures, suggesting that unlike primary RPT cells (J. C. Chung et al., 1992, J. Cell. Physiol. 150, 243-250), the gluconeogenic pathway was not intact.

Alkaline Phosphatase↗