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The combined action of two intercellular signaling pathways specifies three cell fates during vulval induction in C. elegans.

Each of the six C. elegans vulval precursor cells (VPCs) has three potential fates (1 degree, 2 degrees, or 3 degrees). The fate of each VPC depends on two types of signals: a graded inductive signal that acts at a distance and a short-range lateral signal among the VPCs. We describe interactions among mutations that cause different misspecifications of VPC fates. Particular combinations of mutations cause all six VPCs to have a single fate independent of their positions. Our results suggest that specification of the three VPC fates is accomplished by two binary decisions, each effected by one of the two signaling pathways. The gene lin-12 acts in the lateral signaling pathway and specifies 2 degrees. The "vulvaless" and "multivulva" genes act in the inductive signaling pathway and specify 1 degree independently of lin-12 and 2 degrees via lin-12. We describe a model for the regulatory circuitry underlying VPC determination that includes a role for lin-12 in both autocrine and paracrine VPC signaling.

Animals

Germ cell-Sertoli cell interactions. Studies of cyclic protein-2 in the seminiferous tubule.

This review briefly describes the discovery and isolation of a novel Sertoli cell product, cyclic protein-2, (CP-2) and the generation of an antiserum against this protein. Using this antiserum, we demonstrated a stage-specific change in the synthesis of CP-2 by Sertoli cells within intact seminiferous tubules; synthesis is maximal at stages VI and VIIa,b of the cycle and minimal at stage XII. That CP-2 is a product of Sertoli cells was confirmed by immunohistochemical analysis. Comparison of CP-2 and transferrin synthesis by immature (17-day) and mature (75-day) Sertoli cells within intact seminiferous tubules has documented a significant increase in the synthesis of both proteins during testicular maturation. It was noteworthy, however, that the increase in CP-2 synthesis was much greater than the increase in transferrin synthesis. These data in conjunction with previous comparisons of the stage-specific changes in CP-2 and transferrin synthesis and secretion led to the hypothesis that the synthesis of these two proteins is regulated by different cellular interactions. Examination of cultured Sertoli cells obtained from mature rats demonstrated that transferrin synthesis and secretion were stimulated by hormones and vitamins, whereas CP-2 synthesis and secretion were not significantly affected by the same factors. Therefore, these data demonstrate that hormonal regulation of transferrin synthesis by Sertoli cells differs from hormonal regulation of CP-2 synthesis. Indeed, our data suggest that CP-2 synthesis is not directly regulated by hormones and vitamins. Finally, we demonstrated that when Sertoli cells are separated from germ cells and the Sertoli cells placed in culture, the age-dependent increase in CP-2 synthesis, noted with cultured tubules, is lost. In contrast, significantly more transferrin is synthesized by primary cultures of Sertoli cells obtained from old animals than from young animals. Taken together, all of these data indicate that the regulation of CP-2 synthesis and secretion by the Sertoli cell is unique and is primarily stimulated by paracrine signals or direct cell contact with the germ cells. Which of these mechanisms of cell-cell communication in the testis is important to regulation of CP-2 synthesis by Sertoli cells is unknown. Neither do we know which spermatogenic cell type provides this stimulus. These issues can now be addressed, however, because we have developed the protocols for isolating and culturing Sertoli cells from mature rat testes.

Age Factors

Distribution of the wingless gene product in Drosophila embryos: a protein involved in cell-cell communication.

wingless, a segment polarity gene required in every segment for the normal development of the Drosophila embryo, encodes a cysteine-rich protein with a signal peptide. A polyclonal antiserum localizes the wingless protein in approximately the same region of the embryo as the wingless mRNA. The pattern of antigen localization changes rapidly during development. In the extended germband stage, stripes of wingless staining are present in the trunk region just anterior to the parasegment boundary; wingless-expressing cells abut engrailed-expressing cells across that boundary. wingless antigen is seen both inside and outside the cell by electron microscopy: inside the cell, in small membrane-bound vesicles and in multivesicular bodies; outside the cell, close to or on the plasma membrane and associated with material in the intercellular space. The multivesicular bodies containing the wingless protein are occasionally found in engrailed-positive cells, suggesting that the wingless protein behaves as a paracrine signal.

Animals

The mouse Wnt-1 gene can act via a paracrine mechanism in transformation of mammary epithelial cells.

The mouse Wnt-1 gene plays an essential role in fetal brain development and can contribute to tumorigenesis when activated aberrantly in the mammary gland. The gene encodes secretory glycoproteins associated with the extracellular or pericellular matrix, and it has been proposed that Wnt-1, as well as its Drosophila homolog wingless, may function in intercellular signalling. We show here that fibroblasts expressing Wnt-1 protein, although not transformed themselves, are able to elicit morphological transformation of neighboring C57MG mammary epithelial cells in coculture experiments. Heparin inhibits this effect, possibly by displacing Wnt-1 protein from its normal site of action. Our results indicate that the Wnt-1 gene can act via a paracrine mechanism in cell culture and strongly support the notion that in vivo the gene may function in cell-to-cell communication.

Animals

Conceptus-mediated integrity of endometrial epithelial cells and maintenance of relaxin synthesis in pregnant rabbits: effects of unilateral oviduct ligation.

A previous study indicated rabbit endometrial relaxin synthesis is stimulated by blastocyst (Lee VH, Fields PA, Biol Reprod 1990; 40:737-745). To evaluate this hypothesis, unilateral oviduct ligations were placed (A) at the oviduct isthmus on Day 1 post-copulation and (B), in a separate group of rabbits, at the infundibulum before copulation. Blastocysts migrate into and implant in the uterine horn contralateral to the ligated oviduct only (conceptus-bearing uterus). The uterine horn ipsilateral to the ligated oviduct will be referred to as the non-conceptus-bearing uterus. Uteri and ovaries were removed on Days 4-28 of pregnancy and were evaluated for relaxin using guinea pig anti-porcine relaxin serum and avidin-biotin light microscopy immunohistochemistry. Results were identical for both models. Blastocysts first attach to the antimesometrial uterine surface by Day 7 post-copulation. Implantation on the mesometrial surface occurs on Days 8-11. Relaxin was observed in antimesometrial endometrial glands of both conceptus and non-conceptus-bearing uteri on Days 4-7 of pregnancy. Beyond Day 7, relaxin was observed in antimesometrial and mesometrial endometrial glandular and luminal epithelial cells at implantation sites of the conceptus-bearing uterus only. Relaxin was not found between implantation sites. Endometrial epithelial cells of the non-conceptus-bearing uterus were regressing by Day 9. These data indicate a conceptus-mediated maintenance of endometrial epithelial cells. Furthermore, the data suggest a paracrine maintenance of epithelial cell integrity and relaxin synthesis since these parameters are preserved only in the conceptus-bearing uterus. Cell-cell communication between conceptus and endometrium appears to be specific since endometrium between implantation sites does not contain relaxin. Uterine tissue from pseudopregnant rabbits (Days 1-16) was evaluated. Relaxin was observed in the antimesometrial glands on Day 7 only. Like the endometrium in the ligation model, endometrial epithelial cells of the pseudopregnant rabbit uterus were regressing by Day 9. These results indicate that pregnancy is not required for, but may enhance, relaxin synthesis. In addition, endometrial epithelial cells regress in the absence of pregnancy. Regression of endometrial epithelial cells on Day 9 suggests that maternal recognition of pregnancy occurs during the preimplantation period (Days 4-8).

Animals

Control of production of insulin-like growth factor I by pig Leydig and Sertoli cells cultured alone or together. Cell-cell interactions.

The production of insulin-like growth factor I (IGF-I) by pig Leydig cells and pig Sertoli cells cultured alone or together was investigated. Human chorionic gonadotropin (hCG) and basic fibroblast growth factor (FGF) stimulate in a dose-dependent manner IGF-I production by Leydig cells. At maximal concentrations the effects of both factors were almost additive. Insulin at micromolar concentrations enhanced IGF-I production and potentiated the effects of hCG and FGF. The secretion of IGF-I by Sertoli cells was stimulated by FSH and FGF. Under basal conditions, the production of IGF-I by the coculture was similar to the addition of the production by each cell cultured alone. In contrast, in the presence of hCG, FSH or FGF, the production of IGF-I by the coculture largely exceeded that expected from the monocultures. Moreover, stimulation of the coculture with both hCG and FSH resulted in a further increase in IGF-I production. These results indicate that Leydig as well as Sertoli cells secrete IGF-I and that the secretion of both cell types is stimulated by the corresponding gonadotropin. In addition, they indicate that Leydig-Sertoli interactions play a role in the control of IGF-I production, supporting the contention that this growth factor plays an important role in the paracrine and autocrine control of testicular functions.

Animals

In vivo paracrine interaction between urokinase and its receptor: effect on tumor cell invasion.

Numerous studies have linked the production of increased levels of urokinase type plasminogen activator (uPA) with the malignant phenotype. It has also been shown that a specific cell surface receptor can bind uPA through a domain distinct and distant from the proteolytic domain. In an in vivo model of invasion, consisting of experimentally modified chorioallantoic membrane (CAM) of a chick embryo, only cells that concurrently expressed both uPA and a receptor for uPA, and in which the receptor was saturated with uPA, were efficient in invasion. To test whether uPA produced by one cell can, in a paracrine fashion, affect the invasive capacity of a receptor-expressing cell, we transfected LB6 mouse cells with human uPA (LB6[uPA]), or human uPA-receptor cDNA (LB6[uPAR]). LB6(uPA) cells released into the medium 1-2 Ploug units of human uPA per 10(6) cells in 24 h. The LB6(uPAR) cells expressed on their surface approximately 12,000 high affinity (Kd 1.7 x 10(-10) M uPA binding sites per cell. Unlabeled LB6(uPA) and 125-IUdR-labeled LB6(uPAR) cells were coinoculated onto experimentally wounded and resealed CAMs and their invasion was compared to that of homologous mixtures of labeled and unlabeled LB6(uPAR) or LB6(uPA) cells. Concurrent presence of both cell types in the CAMs resulted in a 1.8-fold increase of invasion of the uPA-receptor expressing cells. A four-fold stimulation of invasion was observed when cells were cocultured in vitro, prior to in vivo inoculation. Enhancement of invasion was prevented in both sets of experiments by treatment with specific antihuman uPA antibodies, indicating that uPA was the main mediator of the invasion-enhancing, paracrine effect on the receptor-expressing cells.

Animals

Paracrine growth stimulation of androgen-responsive Shionogi Carcinoma 115 by its autonomous subline (Chiba Subline 2).

Shionogi Carcinoma 115 cells (SC 115 cells) and Chiba Subline 2 cells (CS 2 cells) are clones of an androgen-responsive mouse tumor cell line and its autonomous subline, respectively. Since it was reported that the growth of cells from SC 115 was regulated by an androgen-induced fibroblast growth factor (FGF)-like peptide (1), the present study was aimed at examining whether a similar growth factor was secreted by CS 2 cells in the absence of testosterone. Although SC 115 cells did not grow in the serum-free medium without androgens, SC 115 cells could proliferate in mixed culture with CS 2 cells, suggesting stimulation of SC 115 cells by CS 2 cells. It was shown that CS 2 cells secreted a growth factor without the influence of testosterone, and this factor promoted the growth of SC 115 and CS 2 cells, as well as that of BALB/3T3 cells. The factor was partially purified from serum-free conditioned medium obtained from cultures of CS 2 cells. It showed an affinity for heparin, stability to heat and acid treatments, a decrease in activity when anti-basic FGF antibody was added to cultures, and an estimated molecular weight of approximately 50,000. Therefore, the factor seemed to have the nature of an FGF-like peptide. It was concluded that, in the absence of testosterone, CS 2 cells produced an FGF-like growth factor which controlled the growth of both CS 2 cells and parent SC 115 cells, in autocrine and paracrine manners, respectively.

Animals

Autocrine models of B-lymphocyte growth. I. Role of cell contact and soluble factors in T-independent B-cell responses.

The requirements for triggering human B cells to DNA synthesis by T-independent polyclonal activators were examined. Optimal S phase entry of purified resting B cells infected with Epstein-Barr virus (EBV) or confronted with killed particles of Staphylococcus aureus Cowan Strain I (SAC) required a high density of cells in culture. Experiments varying culture vessel geometry and culture volumes revealed that the initial limiting quantity was a soluble activity generated in the B-cell cultures. A parallel observation was noted in the requirements for the sustained growth of EBV-transformed lymphoblasts. Autostimulatory soluble factors harvested from such cultures were able to augment DNA synthesis in low density cultures of resting cells triggered by EBV or SAC. Below a critical cell number, however, soluble factors by themselves, were not sufficient either for supporting primary B-cell responses or for maintaining the proliferation of transformed lymphoblasts. By employing conditions which encouraged cell contact it was found that a second, non-harvestable factor requiring cell proximity for its action was also necessary to promote B-cell growth. The implications of these findings for autocrine and paracrine models of B-cell activation are discussed.

B-Lymphocytes

Transforming growth factor beta gene expression and action in the seminiferous tubule: peritubular cell-Sertoli cell interactions.

The potential role of transforming growth factor beta (TGF beta) as a mediator of cell-cell interactions within the seminiferous tubule was investigated through an examination of the local production and action of TGF beta. Sertoli cells and peritubular (myoid) cells were isolated and cultured under serum-free conditions. Secreted proteins from Sertoli cells and peritubular cells were found to contain a component that bound to TGF beta receptors in RRA. Reverse-phase chromatography of Sertoli cell and peritubular cell secreted proteins fractionated a protein with similar biochemical properties as TGF beta 1. This fractionated protein also contained TGF beta bioactivity in its ability to inhibit growth of an epidermal growth factor-dependent cell line. Both peritubular cells and Sertoli cells contained a 2.4 kilobase mRNA species that hybridized in a Northern blot analysis with a TGF beta 1 cDNA probe. TGF beta 1 gene expression was not detected in freshly isolated germ cells. TGF beta 1 alone was not found to influence Sertoli cell nor peritubular cell proliferation with cells isolated from a midpubertal stage of development. The effects of hormones and TGF beta on Sertoli cell differentiation and function were assessed through an examination of transferrin production by Sertoli cells. TGF beta 1 had no effect on transferrin production nor the ability of hormones to influence transferrin production. The presence of peritubular cells in a coculture with Sertoli cells also did not affect the inability of TGF beta 1 to act on Sertoli cells. Although Sertoli cell function did not appear to be influenced by TGF beta 1, peritubular cells responded to TGF beta 1 through an increase in the production of a number of radiolabeled secreted proteins. TGF beta 1 also had relatively rapid effects on peritubular cell migration and the promotion of colony formation in culture. Cocultures of Sertoli cells and peritubular cells responded to TGF beta 1 by the formation of large cell clusters with ball-like structures. Data indicate that TGF beta may have an important role in influencing the differentiation and migration of peritubular cells. Observations demonstrate the local production of TGF beta within the seminiferous tubule by Sertoli cells and peritubular cells and suggest that TGF beta may have a role as a paracrine-autocrine factor involved in the maintenance of testicular function.

Animals

Paracrine regulation of lung maturation.

Although there is much yet to be learned about the regulation of fetal lung maturation, the study of this process has yielded much information that may serve as a paradigm for the understanding of fetal growth regulation in general. Two particularly interesting fetal adjustments of general regulatory phenomena have emerged: the ability of local tissue metabolism to anatomically or temporally isolate endocrine effects and the role of paracrine factors in coordinating the responses of different cells in complex organs.

Animals

Human trophoblast-endometrial interactions in an in vitro suspension culture system.

We developed an in vitro suspension co-culture system to examine the interaction of 1st, 2nd and 3rd trimester purified cytotrophoblasts with human endometrium. Endometrium explants were added to cytotrophoblast cell suspensions and placed on an angled gyrating platform in a 37 degrees C incubator. When endometrium was cultured alone it was able to remain viable for up to 3 days. When trophoblasts were cultured alone, they formed small and large aggregates, and occasionally spherical shells with hollow centers. When trophoblasts and endometrium were cultured together, the trophoblasts adhered to the exposed stromal surfaces of the tissue fragments. The surface epithelium was not receptive to trophoblast attachment except in one experiment when day 19 endometrium was used for the co-incubation, suggesting that surface attachment is usually restricted. A common finding was the presence of an acellular zone in the endometrium only adjacent to the attached trophoblasts. We speculate that this zone may be caused by proteolysis and resynthesis of ECM proteins by the trophoblasts. Based on our results, this in vitro suspension should prove useful for examining those factors which: (1) induce endometrial permissiveness, (2) promote paracrine effects on the endometrium, and (3) facilitate human trophoblast invasion.

Cell Communication

Stage- and cell-specific gene expression and hormone regulation of the seminiferous epithelium.

The regulation of spermatogenesis seems to involve complex cell interactions in the testis. Little is known about these cellular communication events. Advances in molecular technology and cell or cell group separation methods have made it possible to analyze function of defined spermatogenic and Sertoli cells, thereby giving some insights into the paracrine regulation of spermatogenesis. In this review we will describe how seminiferous tubule segments with distinct cell associations can be rapidly isolated and how the cell composition can be modified by high-energy X-irradiation. Results of the recent studies performed using these techniques will be briefly summarized. Spermatogenic cells at defined stages of their development can be isolated in living condition for morphological and biochemical studies by the transillumination technique. For accurate identification of the stages of the seminiferous epithelial cycle, phase contrast microscopy of live cell squashes has been used. The criteria described by Leblond and Clermont (Am. NY Acad. Sci., 55:548-573, 1952) can be used for accurate recognition of most of the stages of the cycle. However, stages I and II and substages of VII that are important in several studies are difficult to distinguish. Therefore, in addition to the morphology of early spermatids, development of the flagella at step 16 of spermiogenesis and the changing morphology of the cytoplasmic lobes (residual bodies) at stage VII of the cycle were used as criteria for rapid identification and isolation (preparative) of the seminiferous tubule segments. Expression of nucleoprotein and heat shock protein 70-related protein genes was analyzed with Northern blot, slot blot, and in situ hybridization techniques in accurately staged seminiferous tubules. Accurate stage-dependent timing of the onset of transcription, followed by storage and disappearance of the messages was demonstrated. The chromatoid body (cb) has been proposed to have a specific function in storage of the long-lived mRNAs in the spermatids. It is an actively moving cytoplasmic organelle that interacts with Golgi complex during formation of the acrosomic system. The chromatoid body is apparently also dependent on cytoplasmic microtubules, since its movements are inhibited and its structure becomes abnormal in the presence of vincristin, an inhibitor of tubulin polymerization. Follicle-stimulating hormone (FSH) is an important regulator of Sertoli cell function. Since both basal and FSH-dependent cyclic AMP (cAMP) production by seminiferous tubules showed marked stage dependency, Sertoli cells are apparently influenced by spermatogenic cells. Thus, Sertoli cell function varies cyclically depending on the stage of the seminiferous epithelial cycle to provide an optimal microenvironment for spermatogenesis.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Neonatal gonocytes co-cultured with Sertoli cells on a laminin-containing matrix resume mitosis and elongate.

We co-cultured gonocytes and Sertoli cells isolated on the day of birth and observed the appearance, 1 and 3 days after the start of culture, of gonocytes that had developed cellular processes and that were labeled by [3H]thymidine, respectively. These events occurred in the absence of hormones, etc. and with a time course very similar to that seen in vivo. In other incubations, we found that the presence of laminin in the underlying substrate was critical in promoting proliferation and elongation of gonocytes. These observations strongly suggest that interactions between gonocytes and other testicular cells/factors in the co-cultures promote maturation of these germ cells in vitro, and thus provide new evidence to support the concept that paracrine mechanisms are important during testicular development as well as in adults.

Animals

Glucagon and insulin secretion by dispersed islet cells: possible paracrine relationships.

The ability of dispersed islet cells in a perifusion system to secret glucagon and insulin in response to physiologic stimuli was investigated. Normal hamster islets were isolated by collagenase digestion and the cells dispersed by sequential digestion with collagenase and trypsin. Following a 50-min period of equilibrium in buffer with high glucose concentrations (5.0 mg/ml), glucagon secretion was stimulated by glucopenia and subsequently, inhibited by increasing the concentration of glucose. The responsiveness to glucose inhibition was significantly less in dispersed islet cells than in intact islets. However, the dispersed islet cells showed significantly greater response to arginine. Glucagon secretion by dispersed islet cells was stimulated to tolbutamide and epinephrine but somatostatin had no effect. Dispersed islet cell preparations did not augment insulin secretion in response to glucose but did secrete more insulin in response to arginine. Intact islets secreted insulin in response to glucose but not arginine. We conclude that A cells in cell suspension do not need direct contact or an intact intra-islet environment in order to respond to glucose, arginine, epinephrine, or tolbutamide but the extent of response may be influenced by paracrine effects. However, paracrine relationships may be important in determining the response of B cells to secretagogues.

Animals

[Interaction between neuron and glia in the culture system].

Neuron and glia in culture produce varied trophic factors including extracellular matrix, growth factor cell adhesion factor, and cell growth inhibitory factor, and further secrete them into the culture medium. These factors are classified into two kinds of factors in the view-point of mechanism of action, an autocrine factor with the self-production and -stimulation, and a paracrine factor with the adjacent cell stimulation through the extracellular space but not via the blood stream. In the central nervous system, these trophic factors produced by both neuron and glia are thought to regulate the cell growth and differentiation of those cells by autocrine or paracrine system, and support the function of the central nervous system.

Animals

Somatostatin cells in rat antral mucosa: qualitative and quantitative ultrastructural analyses in different states of gastric acid secretion.

In the gastrointestinal tract somatostatin is localized in endocrine cells and in neurons. The antral somatostatin (D-) cell shares features of both cell types. The activity of the antral D-cell is regulated by intragastric pH. Therefore different states of gastric acidity were induced experimentally in order to study D-cell morphology at the electron microscopical level. The morphological findings were related to measurements of plasma and tissue concentrations of the peptide. The D-cell is characterized by extensive membrane interdigitations with neighbouring cells. Changes in the activity of antral D-cells are reflected by an increase in cytoplasmic secretory granule density and a shift of secretory granules towards basal cell processes. Direct endocrine cell contacts at the level of the perikarya were rarely observed. The intracellular distribution of secretory granules suggests that cell communication is more likely to take place at the level of the strongly immunoreactive cytoplasmic processes. No evidence for endocrine or exocrine (luminar) secretion was observed morphologically. This is in agreement with the concept of paracrine secretion of the antral D-cell.

Animals