Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “co-expression”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 325 records · Page 18Linked to original sources

Polycystic ovarian syndrome (PCOS) and recurrent spontaneous abortion (RSA) are associated with the PI3K-AKT pathway activation.

AIMS: We aimed to elucidate the mechanism leading to polycystic ovarian syndrome (PCOS) and recurrent spontaneous abortion (RSA). BACKGROUND: PCOS is an endocrine disorder. Patients with RSA also have a high incidence rate of PCOS, implying that PCOS and RSA may share the same pathological mechanism. OBJECTIVE: The single-cell RNA-seq datasets of PCOS (GSE168404 and GSE193123) and RSA GSE113790 and GSE178535) were downloaded from the Gene Expression Omnibus (GEO) database. METHODS: Datasets of PSCO and RSA patients were retrieved from the Gene Expression Omnibus (GEO) database. The "WGCNA" package was used to determine the module eigengenes associated with the PCOS and RSA phenotypes and the gene functions were analyzed using the "DAVID" database. The GSEA analysis was performed in "clusterProfiler" package, and key genes in the activated pathways were identified using the Kyoto Encyclopedia of Genes and Genomes (KEGG) analysis. Real-time quantitative PCR (RT-qPCR) was conducted to determine the mRNA level. Cell viability and apoptosis were measured by cell counting kit-8 (CCK-8) and flow cytometry, respectively. RESULTS: The modules related to PCOS and RSA were sectioned by weighted gene co-expression network analysis (WGCNA) and positive correlation modules of PCOS and RSA were all enriched in angiogenesis and Wnt pathways. The GSEA further revealed that these biological processes of angiogenesis, Wnt and regulation of cell cycle were significantly positively correlated with the PCOS and RSA phenotypes. The intersection of the positive correlation modules of PCOS and RSA contained 80 key genes, which were mainly enriched in kinase-related signal pathways and were significant high-expressed in the disease samples. Subsequently, visualization of these genes including PDGFC, GHR, PRLR and ITGA3 showed that these genes were associated with the PI3K-AKT signal pathway. Moreover, the experimental results showed that PRLR had a higher expression in KGN cells, and that knocking PRLR down suppressed cell viability and promoted apoptosis of KGN cells. CONCLUSION: This study revealed the common pathological mechanisms between PCOS and RSA and explored the role of the PI3K-AKT signaling pathway in the two diseases, providing a new direction for the clinical treatment of PCOS and RSA.

Humans↗

Regulation of immunoglobulin biosynthesis in the murine plasmacytoma MOPC 315.

We have examined certain aspects of IgG biosynthesis by constructing hybrids between MPC11 (gamma2b, kappa) and MOPC 315 (alpha,lambda2) that have lost the ability to synthesize one or the other heavy chain. Cells express the three chains in a stable fashion, and both autologous (parental) and heterologous (nonparental) H and L chain pairs form and are secreted. The alpha H chain was found in polymeric form when associated with the heterologous kappa L chain. The lambda2 L chain covalently assembled to the heterologous gamma2b H chain. Surprisingly, autologous pairing was always favored over heterologous pairing in vivo by 5 to 10:1 in terms of rate of assembly. Similar ratios were maintained in the secreted protein. These results suggest that co-expression of particular H and L chain pairs is predetermined. Evolution presumably operates to improve antigen recognition as well as rate of assembly of active molecules.

Animals↗

Vimentin expression in benign and malignant lesions in the human mammary gland.

The distribution pattern of vimentin in mammary gland lesions, including benign lesions (36 cases) and adenocarcinomas (40 cases), was studied with the use of a monoclonal antibody. In myoepithelial cells of mastopathy, the positive vimentin staining was seen in 6 cases (33.3%). Gynecomastia showed strong vimentin expression in myoepithelial cells. Fibroadenomas (14 cases) expressed positive vimentin staining in 8 cases (57.1%) with various staining intensities in myoepithelial cells. Lactating mammary gland tissue was positive for vimentin staining in narrow myoepithelium. In adenocarcinoma, positive reactions in tumor cells were found in 17 cases (41.2%) of solid tubular, 12 cases (33.3%) of papillo-tubular, and 11 cases (54.5%) of scirrhous carcinomas. The staining intensity for vimentin was weak in modified myoepithelial cells and neoplastic cells. Malignant cells in mammary carcinomas with vimentin reactivity usually expressed keratin staining; thus a co-expression of vimentin and keratin was found in mammary carcinomas.

Adenocarcinoma↗

Acute myelogenous leukemia with T-cell features.

From May 1985 to June 1990, 94 newly diagnosed cases of acute myelogenous leukemia (AML) were treated at the Institut Gustave-Roussy, of which four (4.3%) demonstrated mixed cell lineage. All these cases were morphologically and cytochemically considered as myelogenous leukemias according to the FAB classification. Immunophenotyping revealed in all four cases that the blast population had T-lymphoid (CD2, CD5, CD7 and cytoplasmic CD3) markers. In three of these cases, blast cells co-expressed myelogenous CD13 and CD33 markers. Cytogenetic analysis of the blast cells revealed a normal karyotype in all cases. The response to therapy has been poor. The two patients initially treated with a regimen usually used for AML did not achieve complete remission. By contrast, in three cases, complete remission was obtained with a drug combination used for lymphoblastic leukemia (in one case after failure of first line AML regimen). Only one patient remained disease-free for more than 18 months. We conclude that this form of leukemia is a distinct biological and clinical entity and may benefit form alternative therapy.

Adolescent↗

A truncated form of fibroblast growth factor receptor 1 inhibits signal transduction by multiple types of fibroblast growth factor receptor.

A truncated form of the type 1 fibroblast growth factor receptor (FGFR1) lacking most of its cytoplasmic domain was tested for its ability to inhibit signal transduction by each of three different wild-type FGFRs (FGFR1, 2, and 3). When the truncated FGFR1 was expressed in Xenopus oocytes in excess of each wild-type FGFR, mobilization of intracellular calcium mediated by the wild-type FGFRs was completely blocked. The truncated FGFR did not inhibit signal transduction by the co-expressed platelet-derived growth factor beta-receptor. A form of truncated FGFR1 which lacked the first immunoglobulin-like domain also inhibited signal transduction by wild-type FGFRs. Truncated FGFR formed complexes with wild-type FGFR in the presence of basic FGF in intact cells. These observations were consistent with the hypothesis that the truncated FGFR interacted with wild-type FGFRs to form nonfunctional heterodimers, thus eliminating the signaling by the wild-type FGFRs. The observation that signaling by multiple types of FGFR can be blocked by a single type of truncated FGFR suggests that the different types of FGFR can interact with each other in ligand-mediated complexes. These findings provide a molecular basis for inhibiting the actions of FGFs in vivo.

Animals↗

Activation and regulation of the insulin receptor kinase.

For the insulin receptor and the EGF receptor it is believed that ligand occupancy results in interactions within the heterotetrameric alpha 2 beta 2 insulin receptor or between monomeric EGF receptors. These interactions then activate the intracellular receptor tyrosine kinase which induces receptor autophosphorylation and phosphorylation of cellular substrates. In the present study we have approached the nature of this receptor activation and autophosphorylation. We have investigated whether these phenomena occur via an intra--or an intermolecular process. To this end the following receptor model system consisting of two receptors was co-expressed in NIH 3T3 cells: a kinase inactive human insulin receptor (HIR K1018A) and a chimeric (EIR) receptor corresponding to the extracellular and transmembrane domains of the human EGF receptor and the cytosolic domain of the human insulin receptor beta subunit. Using this system we found that stimulation of the cells with EGF induced tyrosine autophosphorylation of the EGF-insulin receptor chimera (150 kd) and tyrosine phosphorylation of the beta-subunit of the kinase-deficient insulin receptor (95 kd). The phosphopeptides of the autophosphorylated cytoplasmic domain of the EGF-insulin receptor chimera were comparable to those of the transphosphorylated beta subunit of the kinase-deficient insulin receptor and the wild type human insulin receptor. When immunoaffinity purified EGF-insulin receptor hybrids and kinase-deficient insulin receptors were used in a cell lysate phosphorylation assay, it was found that addition of EGF produced [32P]-labeling of both receptor species. In conclusion, we have shown that tyrosine transphosphorylation can occur between homologous receptor domains. This transphosphorylation and transactivation could be a possible mechanism for signal amplification.2+ domain could influence interactions between the receptor and cellular structures and, as such, play a key role in signal transduction.

Animals↗

Morphological and phenotypical changes in EBV positive lymphoblastoid cells infected by HIV-1.

Human Immunodeficiency Virus type 1 (HIV-1) infects CD4+ T lymphocytes and various other cell types, including B cells. Since HIV-1 seropositive individuals have high numbers of B cells carrying Epstein-Barr Virus (EBV), and are at high risk for development of EBV-associated lymphoproliferative diseases, we studied the mode of HIV-1 infection in four EBV-positive lymphoblastoid B-cell lines (LCLs) as well as some molecular and biological features of the B cells infected by both viruses. We found that LCL cells were successfully infected in vitro by HIV-1, despite the lack of CD4 antigen expression on the cell membrane. LCL cells displayed a persistent, productive, and non-cytopathic infection. Moreover, HIV-1 infection induced reactivation of EBV latent genomes in one cell line. Following HIV-1 infection, LCL cells showed a decrease in B-cell activation markers CD23 and CD39, and an increase in CD10 immature B-cell antigen. Not all cells in each LCL expressed HIV-1 antigens, but all CD10+ cells also co-expressed the HIV-1 envelope protein gp 120. Furthermore, HIV-1 infected LCL cells grew as disperse suspensions, and formed more agar colonies than control, non-HIV-1-infected LCLs. These findings raise the possibility that HIV-1 might play a role in EBV reactivation, and in B-cell lymphoma pathogenesis in AIDS patients.

Adenosine Triphosphatases↗

Expression of muscle genes in the mouse embryo.

Using isogene specific probes and in situ hybridization on sections, we have examined the expression of structural and regulatory genes in the mouse embryo during the formation of cardiac and skeletal muscle. The temporal and spatial information thus obtained about the onset of expression of muscle genes provides insight into the regulation of myogenesis in vivo. Actin and myosin sequences present in different compartments of the adult heart are initially all co-expressed in the cardiac tube (between 7-8 days). The process of spatial restriction to atrial or ventricular compartments of the heart takes place asynchronously later. In contrast, the onset of expression of actin and myosin genes in the first skeletal muscle, the myotome, which corresponds to the central compartment of the somite, as well as their subsequent down-regulation in different skeletal muscle masses, takes place very asynchronously. One might predict that factor(s) responsible for the transcriptional activation of these genes are present in sufficient quantity in the cardiac tube, whereas in skeletal muscle individual genes are responding to variable levels of factor(s). In fact the four myogenic regulatory sequences present in the mouse - MyoD1, myogenin, myf-5 and myf-6 - do show distinct patterns of expression during the development of skeletal muscle. None of these sequences have been detected in the heart. In the myotome there is no general correlation between the appearance of a particular myogenic sequence and the activation of a particular structural gene. A striking example of this is provided by the muscle isoform of creatine phosphokinase. We would propose that each muscle structural gene has a different threshold of activation, depending on the quantity and nature of the myogenic factor present. We have also examined the onset of expression of the X-linked dystrophin gene known to be expressed in adult heart and skeletal muscle. In the myotome dystrophin transcripts are first detected at the time when myosin heavy chains first accumulate and muscular contraction is initiated. In contrast in the cardiac tube dystrophin transcripts are not detected initially, at a time (from 8 days) when the heart contracts. This observation can be correlated with the pathology of the disease which points to a more essential role of dystrophin in skeletal muscle. No muscle structural gene examined is expressed in the somite prior to myotome formation. If the myogenic regulatory sequences are implicated in muscle cell determination then they should be expressed in the dermomyotome of the immature somite which gives rise to muscle precursor cells.(ABSTRACT TRUNCATED AT 400 WORDS)

Actins↗

Identification of IL-7-dependent bone marrow-derived Thy-1-B220- lymphoid cell clones that rearrange and express both Ig and T cell receptor genes.

Bone marrow stromal cell lines and lymphoid cell lines were co-established from the Whitlock-Witte type of long term liquid cultures of MRL/1 and C57BL/10 (B10) (Thy-1.1) bone marrow cells. The present study investigates the immunologic nature of parental and cloned lymphoid cell lines. Both strains of parental lines and their clones did not grow alone but proliferated on the monolayers of co-established parental stromal cell lines from a syngeneic or alternative strain. When various lymphokines or cytokines were tested for their capacity to support the growth of these lymphoid cell clones, only IL-7 could substitute for the growth-promoting function of stromal cells. These IL-7-dependent clones expressed neither Thy-1 nor B220 Ag. However, all of them from two strains were found to rearrange synchronously H chain of Ig as well as gamma chain of TCR genes. Some of the clones transcribed a mature size of IgH mRNA. Co-expression of mRNA for lambda 5 but not for IgL chain (kappa, lambda) genes resulted in the generation of cell surface mu chain in these clones. Other clones expressed a smaller size of IgH mRNA without exhibiting surface mu chain. Irrespective of the differences in IgH rearrangements and its mRNA expression, a mature size TCR gamma mRNA was detected in all of the clones. Thus, these results demonstrate the existence of untransformed (IL-7-dependent) immature lymphoid cells rearranging both Ig and TCR genes. Their unique features concerning cell surface markers (B220- mu+), specific growth factor requirement, and various modes of Ig/TCR gene rearrangements are discussed in the context of early lymphoid development.

Animals↗

Regulation of basal and luminal cell-specific cytokeratin expression in rat accessory sex organs. Evidence for a new class of androgen-repressed genes and insight into their pairwise control.

Co-expression of cytokeratin (CK) pairs has been found to be associated with specific epithelial cell types whose expressions are developmentally regulated. In the prostate, CK 8 and 18 have been identified as luminal cell-specific markers, and CK 5 and 15 have been identified as basal cell-specific markers. In this study, we report the cloning and sequencing of a full-length CK 8 cDNA (1.9 kilobases) from a rat ventral prostate (VP) cDNA library. Although the open reading frame shares 90% homology with mouse CK 8 sequences, nucleotide comparison revealed that rat CK 8 cDNA comprises a species-specific sequence on both 5' and 3' ends. The steady-state levels of CK 8 mRNA were elevated in VP, seminal vesicle (SV), and liver of a castrated rat but not in the other organs such as the coagulating gland, bladder, and thymus. Unlike the other androgen-repressed genes, elevated CK 8 mRNA levels persisted even after the glandular involution was completed, indicating that CK 8 is a new class of androgen-repressed gene. The regression of CK 8 expression may be androgen receptor-mediated, since androgen but not estrogen administration to castrated hosts repressed the CK 8 mRNA levels, and this effect can be antagonized by the simultaneous administration of an antiandrogen (4-hydroxyflutamide). Immunohistochemical staining of prostatic tissues reveals that the CK 8 filamentous structure is shifted reversibly from a uniform distribution to a predominantly basal surface upon androgen deprivation. We noted that the steady-state levels of CK 8 protein remain rather constant throughout the various hormonal treatment, and the steady-state levels of CK 8 mRNA and the rate of CK 8 protein synthesis are consistently elevated. These results suggest that the turnover rate of CK 8 protein may be elevated in the prostatic epithelium from the castrated host. Similarly, the steady-state levels of CK 15 and 18 mRNA in VP and SV are also repressed in an androgen-dependent manner. These data, taken together, indicate that pairwise control of luminal (and possibly basal) specific cytokeratin gene expression remains intact in both VP and SV tissues and that the levels of CK mRNAs expression are negatively regulated by androgen.

Amino Acid Sequence↗

Characterization of peripheral blood CD8/11b cells in bone marrow transplant recipients. III. Subsets of CD8/11b cells differentially regulate immunoglobulin production.

Recovering bone marrow transplant (BMT) recipients have 20-70% circulating lymphocytes which co-express CD8 and CD11b (normals = 5-15%). These CD8/11b cells comprise at least two subpopulations distinguished by their expression of CD3. The CD3+ CD8/11b cells are T lymphocytes which exhibit in vitro suppressor activity (Ts); the CD3- CD8/11b cells express CD16 and are natural killer (NK) cells. In this study, we investigated whether such cells influenced circulating levels of IgA and IgM in 18 BMT recipients who each had greater than 30% circulating CD8/11b cells. We observed that in all patients whose CD8/11b cells were Ts lymphocytes (7/7) IgM and IgA levels were less than 10% of normal. Among those patients whose CD8/11b cells were NK cells (n = 11), two groups were distinguished. In one group (n = 5), less than 35% of patient NK cells expressed CD57 and serum levels of IgM and IgA were less than 10% of normal. In the second group (n = 6) greater than 60% of the NK cells expressed CD57 and serum levels of IgM and IgA were normal. In summary, our data indicate that BMT recipients have at least three distinct subsets of CD8/11b lymphocyte populations which may differentially regulate IgM and IgA production in vivo.

Adolescent↗

Characterization of three T-lymphoid cell lines with distinct sensitivities to deoxyadenosine plus deoxycoformycin.

Three established human T-cell lines, HPB-MLT, HPB-ALL and PEER, were characterized and tested for their sensitivity to deoxyadenosine (dAdo) plus deoxycoformycin (dCoF). Phenotypic characterizations showed that all three cell lines had receptors for peanut agglutinin (PNA) and soybean agglutinin (SBA) while HPB-MLT and HPB-ALL, but not PEER, expressed the cortical thymocyte-specific marker, CD1. The majority of HPB-MLT cells (88%) expressed only CD4 but not CD8 antigen while most HPB-ALL cells (81%) co-expressed CD8 and CD4 antigens. PEER cells were negative for both CD8 and CD4. These three T cell lines showed differential sensitivity to dAdo plus dCoF in consequent tests. dAdo or dAdo plus dCoF (1 microM) had no effect on the growth, or DNA and RNA synthesis of HPB-MLT cells while the combination of dAdo and dCoF partially inhibited cellular growth and DNA and RNA synthesis of HPB-ALL cells. Further, the growth and DNA and RNA synthesis of PEER cells were strongly inhibited by the combination of dAdo and dCoF. This high sensitivity to dAdo plus dCoF reflected an immature phenotype of PEER cells despite its expression of CD3. Flow cytometric analysis of PEER cells demonstrated disappearance of the G2/M phase cells from the cell cycle after treatment with dAdo plus dCoF. Measurements of adenosine deaminase (ADA) and purine nucleoside phosphorylase (PNP) activities in all three cell lines, however, did not establish correlations between purine metabolizing enzyme activities and the differential sensitivities to dAdo plus dCoF. In sum, we report here three T-cell lines of different phenotypes that displayed significantly different sensitivities to dAdo plus dCoF which may facilitate investigations on the mechanisms of ADA deficiency.

Adenosine Deaminase↗

T-cell receptor-gamma delta association with lymphocyte populations in sheep intestinal mucosa.

T cells expressing T-cell receptor (TcR)-gamma delta and CD8 represent a significant population in mouse and chicken intra-epithelial lymphocytes (IEL) but represent a minor population in human IEL. We examined the TcR-gamma delta usage and co-expression of CD5, CD4, CD8 and major histocompatibility complex (MHC) class II on isolated sheep IEL and lamina propria lymphocytes (LPL), and compared them with the TcR-gamma delta + cells in peripheral blood, intestinal lymph and jejunal Peyer's patches (PP). There were a number of notable differences. TcR-gamma delta + cells comprised 18% of IEL and 10% of LPL. Among the population of TcR-gamma delta + IEL, 24% were CD8+ and 54% were CD5+, which contrasts with the TcR-gamma delta + cells in blood and intestinal lymph that were universally CD5+ CD4- CD8-. A notable feature of the IEL was the presence of distinct CD8+ and TcR-gamma delta + populations that lacked CD5. Also a high percentage of IEL and LPL were CD2+ and MHC class II+. Analysis of the expression of MHC class II on T-cell subsets, as an indicator of activation, showed that 60-95% of the various IEL and LPL subsets were MHC class II+ compared with only 5-40% in jejunal PP, lymph nodes, spleen and blood. Therefore, it is possible that the circulating TcR-gamma delta + and CD8+ cells that localize in the gut epithelium might become activated and stop the expression of CD5 under the influence of the local microenvironment. These cells appear not to emigrate while still expressing the TcR-gamma delta + (CD8+) CD5- MHC class II+ phenotype. Our data, together with those from other studies, show that there is much heterogeneity in the use of TcR-gamma delta and accessory T-cell molecules by IEL.

Animals↗

Differential regulatory effects of intercellular adhesion molecule-1 on costimulation by the CD28 counter-receptor B7.

Although ligation of the CD3/TCR complex initiates an activation signal in T cells, additional costimulatory signals generated during cell-to-cell interactions with APC transduced via ligation of CD11a/CD18 and CD28 by their specific counter-receptor intercellular adhesion molecule (ICAM)-1 and B7, respectively, are required for optimal T cell proliferation and cytokine synthesis. Using soluble IgC gamma 1 fusion proteins of these costimulatory counter-receptors, we have recently shown that unactivated resting CD4+ T cells and Ag-primed CD4+ T cells differ in their response to the costimulation by ICAM-1 and B7. Preferential proliferative responses of resting T and Ag-primed T cells to ICAM-1 and B7, respectively, prompted us to speculate that ICAM-1-induced signals may regulate coupling of the CD28 signaling pathway. Furthermore, both B7 and ICAM-1 are co-expressed on APC and thus, may co-regulate activation-driven maturation of T cells. In this study, we have examined regulatory effects of IgC gamma 1 fusion proteins of B7, ICAM-1, and ICAM-2 (a homologue of ICAM-1) on each other's costimulation. We first demonstrate that TCR-directed costimulation of resting CD4+ T cells with ICAM-1 (ICAM-1 priming) but not ICAM-2 induces increased responsiveness to B7. Priming of CD4+ T cells with ICAM-1 induced higher expression of both CD18 and CD28 than that with either B7 or ICAM-2. Cross-linking of CD28 induced faster and significantly higher cytoplasmic free calcium mobilization response in ICAM-1-primed CD4+ T cells than in resting, B7-primed, or ICAM-2-primed CD4+ T cells. B7 synergized with ICAM-1 but not ICAM-2 to augment proliferative responses of not only resting CD4+ T cells but also those that had been primed with either ICAM. Unlike resting or ICAM-2-primed CD4+ T cells, ICAM-1-primed CD4+ T cells efficiently proliferated in response to the synergistic costimulation of B7 and ICAM-2. In contrast, both ICAM-1 and ICAM-2 inhibit B7-driven proliferation of Ag-primed CD4+ T cells. Thus, B7 and ICAM-1 exert contrasting regulatory effects on the proliferation of CD4+ T cells depending on their state of activation-induced maturation.

Antigens, CD↗

Patterns of membrane CD45 isoform expression by leukaemic blasts and normal mature myeloid cells.

The membrane expression of CD45R isoforms by leukaemic blasts from 92 cases of acute myeloid (AML) and 12 cases of lymphoblastic leukaemia was analysed by single and two-colour flow cytometry. Compared to normal mature granulocytes, which invariably expressed UCHL1 (CD45RO) but not 2H4 (CD45RA), leukaemic myeloid blasts showed 2H4+ UCHL1- and 2H4- ++UCHL1- composite patterns of expression with the first of these phenotypes being associated in particular with the most immature AML subtype (M0). Similar analyses of blast cell fractions from monocytic AML variants, revealed wide variation in CD45R expression in cases of M4, whereas M5 leukaemias were typically 2H4+ ++UCHL1+ with minor 2H4- UCHL1- components. As most normal mature monocytes were also 2H4+ ++UCHL1+, this suggested that monocytic myeloid differentiation was primarily associated with the "acquisition" of UCHL1 and the development of 2H4/UCHL1 co-expressing cells. The expression of membrane CD45RA by leukaemic blasts is an abnormal characteristic and may be related to the maintenance of an undifferentiated state by malignant myeloid precursors.

Adult↗

Pattern of IL-1 receptor gene expression suggests role in noninflammatory processes.

The cytokine IL-1 can be elaborated by most nucleated cell types and exerts its pleiotropic effects on a variety of tissues through binding to its cognate receptor. Two forms of IL-1R, designated types I and II, have been identified. These proteins share limited amino acid identity but both bind IL-1 alpha and IL-1 beta. A large number of cell types have been shown to possess IL-1R in vitro, but few studies have addressed the question of in vivo expression. Using in situ hybridization in normal adult BALB/c mice, we have examined the tissue distributions of both IL-1R types. The results demonstrate that although lymphoid tissues in healthy animals express low or nondetectable levels of receptor transcript, nonlymphoid tissues constitutively express readily detectable levels of IL-1R mRNA. Thymus and spleen samples were largely negative for both IL-1R types I and II, whereas half of the lymph nodes examined expressed IL-1R type I. In nonlymphoid tissues, IL-1R type I transcript was detected in the dentate gyrus of the brain, endocrine pancreas, cardiac endothelium, epidermis, dermis, hair follicle epithelium, uterine serosa, vaginal stroma, vaginal squamous epithelium, developing oocytes, and granulosa cells of ruptured follicles. In contrast, the IL-1R type II probe hybridized to epidermis, dermis, and vaginal basal epithelium. The two types of IL-1R were rarely, if ever, co-expressed by the same cell. The distributional segregation of the receptor types and the expression of IL-1R in normal nonlymphoid tissues has broad implications for the role of IL-1 in homeostatic physiology.

Animals↗

Immunohistochemical study of high-grade endometrial stromal sarcoma. An autopsy report in comparison with carcinosarcoma, leiomyosarcoma and normal endometrium.

An autopsy case of high-grade endometrial stromal sarcoma (ESS) is reported. Immunohistochemical study of the ESS was done in comparison with carcinosarcoma (CS), leiomyosarcoma (LMS) and normal endometrium in the uterus in order to trace the origin of ESS, which is a point of some controversy. Co-expression of keratin and vimentin and/or desmin positivity in several elements of CS and LMS, and glandular or stromal tissues in normal endometrium made it difficult immunohistochemically to be certain of the origin of ESS.

Antigens↗

Whole genome duplication drives transcriptome reprogramming in response to drought in alfalfa.

Genome doubling did not enhance drought tolerance in alfalfa, but may set the stage for long-term adaptation to drought through a novel transcriptional landscape. Whole genome duplication (WGD) has been shown to enhance stress tolerance in plants. Cultivated alfalfa is autotetraploid, but diploid wild relatives are important sources of genetic variation for breeding. Investigating how WGD affects gene expression in stress conditions could provide better understanding for use of diploid genetic resources. In this work, we compared the drought response of neotetraploid plants obtained by bilateral sexual polyploidization with diploid full sibs, by measuring physiological and biochemical traits and RNA-seq. Without drought, 4x plants had lower photosynthetic potential than 2x plants per unit leaf area, but larger leaves allowed them to outperform the per leaf photosynthetic potential of 2x plants. Physiological and biochemical traits were significantly affected by drought in both 2x and 4x plants, but the differences between ploidies were small and nonsignificant. Proline levels were higher in 4x than 2x plants, both in control and drought conditions, indicating that larger cells with higher volume-to-surface ratio of 4x  plants require a higher osmolyte concentration. RNA-seq and gene network analyses showed that more genes were affected by drought at 4x than at 2x level, with downregulation of hundreds of genes involved in photosynthesis and stomatal movement at 4x level, suggesting that WGD made the 4x plants more responsive to drought. Genes involved in proline, phytormone and cell wall functions were also transcriptionally affected by drought in 4x plants. We conclude that WGD did not immediately enhance drought tolerance in alfalfa, but may set the stage for long-term adaptation to drought through a novel transcriptional landscape.

Medicago sativa↗