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Characterization of mouse orthologue of ELOVL4: genomic organization and spatial and temporal expression.

Mutations in ELOVL4 are associated with dominant macular degeneration (adMD/STGD3). This gene is highly expressed in the retina and is conserved through evolution. Here we report the genomic organization of the mouse orthologue of ELOVL4 and its temporal and spatial expression. A significant amount of ELOVL4 mRNA expression is detected in the adult retina, brain, skin, testis, and lens. During development, expression is first noted at embryonic day 7 (E7). A significant level of the mRNA is observed both in brain and in eyes at postnatal day 1 (P1), after which levels decrease in the brain and increase in the retina until they stabilize at P30. ELOVL4 protein is evident in the ocular tissues by E10.5 and becomes restricted predominantly to the photoreceptor layer in the mature retina. These observations suggest that ELOVL4 may play an important role in embryonic development and in maintaining normal physiology of retina and brain at later stages of development.

Animals↗

Effects of 17alpha-ethynylestradiol in a partial life-cycle test with zebrafish (Danio rerio): effects on growth, gonads and female reproductive success.

In this study, the impact of an exposure of zebrafish embryos (Danio rerio) until 3 months post fertilization to 17alpha-ethynylestradiol (EE2: 0; 0,1; 1; 10; 25 ng/l) was evaluated for growth and development, gonad development and body vitellogenin (VTG) content. After a recovery period of 5 months, the female reproductive success was evaluated. The results demonstrated a significant reduction in total body length, body weight, whole body Ca and P content and an increase in morphological abnormalities for fish exposed to 25 ng/l EE2 as a function of exposure time. An increase in total body VTG content was observed for fish exposed for a period of 3 months down to levels of 1 ng/l EE2. At the age of 3 months, a dose-dependent increase of the number of fish with no macroscopic recognizable gonads was observed (up to 100% at 25 ng/l EE2). After a recovery period on clean tap water for 5 months, all fish had developed either ovaries or testis with a gonadosomatic index not different from control fish and the sex ratio was similar in EE2 treatment groups and controls. Nevertheless, a reduced number of spawning females and a reduced egg production were found for the female fish exposed to 10 or 25 ng/l EE2 for 3 months and which were allowed to recover for 5 months. Although the underlying mechanism could not be elucidated, these findings did indicate that the reproduction potential of fish populations might be disturbed by a long-term exposure to EE2 (> or =10 ng/l) from fertilization until sexual maturity.

Animals↗

NF-kappaB and TNF-alpha stimulate androgen receptor expression in Sertoli cells.

Germ cell development within the mammalian testis requires testosterone stimulation of somatic Sertoli cells via interaction with intracellular androgen receptors (AR). AR expression levels undergo marked changes during spermatogenesis suggesting that the modulation of AR expression is an important mechanism to regulate Sertoli cell responsiveness to testosterone. An analysis of the AR gene promoter revealed three kappaB enhancer elements that interacted with Sertoli cell p50 and RelA NF-kappaB proteins, and the overexpression of these NF-kappaB subunits in Sertoli cells stimulated AR promoter activity. Moreover, TNF-alpha, a secretory product of round spermatids, stimulated NF-kappaB binding to the AR promoter, induced AR promoter activity, and increased endogenous AR expression in primary cultures of Sertoli cells. Given the requirement of testosterone for spermatogenesis and the importance of AR in mediating Sertoli cell responsiveness to testosterone, the stimulation of AR expression by NF-kappaB and TNF-alpha may represent an important regulatory mechanism required to maintain efficient spermatogenesis.

Androgens↗

Molecular cloning and characterization of DMRT genes from the medaka Oryzias latipes and the platyfish Xiphophorus maculatus.

The DMRT genes constitute a family of genes, which possess a common motif called the DM domain. DMRT1 is considered to be involved in sex determination and/or sex differentiation, but not much information exists about the function of the other gene family members. We cloned DMRT genes of two important model fish species, the medaka, Oryzias latipes, and the platyfish, Xiphophorus maculatus. Based on sequence similarity and genomic structure with known DMRT genes, the gene from the medaka was identified as OlaDMRT4, and those from the platyfish as XmaDMRT2 and XmaDMRT4. OlaDMRT4 was assigned to the linkage group 18 (LG18) of the medaka by linkage analysis and fluorescence in situ hybridization. The earlier cloned medaka DMRT1, 2 and 3 genes form a cluster on LG9. Therefore, OlaDMRT4 does not belong to the DMRT gene cluster. In adult medaka fish, OlaDMRT4 is expressed in the brain, eyes, gill, kidney, as well as testis and ovary. During development, OlaDMRT4 exists as maternal transcripts, and is expressed until early larval stages. This pattern of expression differs from the other known medaka DMRT genes. Surprisingly it is also not the same as its putative tilapia ortholog (DMO). These differences in expression suggest that DMRT4 might fulfill divergent functions in different species.

Animals↗

Effects of exposure to 17alpha-ethinylestradiol during early development on sexual differentiation and induction of vitellogenin in zebrafish (Danio rerio).

To determine the critical stage of zebrafish development where exposure to xenoestrogens can affect sex ratio and vitellogenin induction, zebrafish (Danio rerio) were exposed to 17alpha-ethinylestradiol (actual concentration 15.4+/-1.4 ng EE2/l) during early development: from fertilisation to hatch; hatch to 10 days post hatch (dph); 10-20 dph; 20-30 dph; 20-40 dph; 20-60 dph; fertilisation to 25 dph; or hatch to 60 dph. Vitellogenin was measured in whole body homogenate 30 dph by ELISA and sex ratio was determined 60 dph by histological examination of the gonads. All exposure periods significantly induced vitellogenin synthesis and affected the sex differentiation leading to development of ovo-testis or complete feminisation of the exposed fish depending on exposure period. Complete sex reversal was obtained in groups exposed from 20 to 60 dph and hatch to 60 dph. The half-life for degradation of vitellogenin was calculated. Juvenile zebrafish were exposed to 15.4+/-1.4 ng EE2/l (actual concentration) from fertilisation to 25 dph and transferred to clean water, after which weekly measurements of vitellogenin concentration in whole body homogenate were performed until day 46 post hatch. The half-life of vitellogenin was 2.4 days.

Animals↗

The population age structure and reproductive biology of Gyrodactylus salaris Malmberg (Monogenea).

Gyrodactylus salaris has recently become a major pathogen of Atlantic Salmon (Salmo salar) in Norway. The survivorship, population age structure and pattern of insemination of G. salaris were studied to determine the extent to which this species reproduces sexually. The age-specific mortality schedule of G. salaris could be described by an exponential model but day to day variations were large, with an increase in mortality after each birth. Modelling population growth using the best fit mortality schedule indicated that, at stable age structure, 35% of the population would consist of newborn and pre-1st birth flukes. Using testis, penis and embryo development, pre-1st birth and immediately post-1st birth flukes could be unambiguously identified, and established infections were found to contain 35% pre-1st birth flukes, as predicted. The proportion of pre-1st birth flukes in newly established infections was significantly smaller, probably because of differences in the rate of transmission between newborn and older flukes. Gyrodactylus salaris is relatively long-lived, and more than 40% of the population may survive to give birth for the third time. As gyrodactylids are protogynous, and the first daughter is probably produced asexually, this long-lived strategy ensures that a large part of the G. salaris population possesses a functional male system, and that the asexually derived flukes are a smaller component of the total population in this species. Flukes with whorls of inseminated spermatozoa within the seminal receptacle were found in all age groups possessing a functional male system, and were interpreted as having been cross-inseminated.(ABSTRACT TRUNCATED AT 250 WORDS)

Age Factors↗

RNA truncation by premature polyadenylation attenuates human mobile element activity.

Long interspersed elements (LINE-1s, also called L1s) are the only active members of the autonomous, non-long terminal repeat (LTR) retrotransposon family, which reshapes mammalian genomes in many different ways. LINE-1 expression is low in most differentiated cells but high in some cancer cells, in testis and during embryonic development. To minimize the negative impact on their hosts' genomes, many mobile elements strategically limit their amplification potential, particularly in somatic cells. Here we show that the A-rich coding strand of the human LINE-1 contains multiple functional canonical and noncanonical polyadenylation (poly(A)) signals, resulting in truncation of full-length transcripts by premature polyadenylation. This attenuation lowers the rate of retrotransposition in assays using HeLa cells. It probably also increases the negative effects of LINE-1 insertions into genes.

Animals↗

Studies on sex-organ development. Changes in chromatin structure during spermatogenesis in maturing rooster testis as demonstrated by the initiation pattern of ribonucleic acid synthesis in vitro.

To probe the structural change in the genome of the differentiating germ cell of the maturing rooster testis, the chromatin from nuclei at various stages of differentiation were transcribed with prokaryotic RNA polymerase from Escherichia coli or with eukaryotic RNA polymerase II from wheat germ. The transcription was performed under conditions of blockage of RNA chain reinitiation in vitro with rifampicin or rifampicin AF/013. With the E. coli enzyme, the changes in (1) the titration curve for the enzyme-chromatin interaction, (2) the number of initiation sites, (3) the rate of elongation of RNA chains, and (4) the kinetics of the formation of stable initiation complexes revealed the unmasking of DNA in elongated spermatids and the masking of DNA in spermatozoa. In both cases the stability of the DNA duplex in the initiation region for RNA synthesis greatly increased. In contrast with the E. coli enzyme, the wheat-germ RNA polymerase II was relatively inefficient at transcribing chromatin of elongated spermatids. Such behaviour can be predicted if unmasked double-stranded DNA is present in elongated spermatids.

Animals↗

Effects of age and live weight on fat 5 alpha-androstenone levels in young boars fed two planes of nutrition.

The aim of the present experiment was to determine whether age, live weight, or a combination of both, was the most important factor influencing fat 5 alpha-androstenone levels in male pigs. Three groups of 50 boars each were fed either on a liberal plane of nutrition (CTRL group) or were restricted (SW and SA groups). Fat 5 alpha-androstenone was measured three times in each pig (on biopsies at two different times and at slaughter) at either the same live weight (SW) or at the same age (SA) as CTRL boars. In addition, the genital tract was dissected at slaughter. SW boars (aged 169 days) exhibited higher fat 5 alpha-androstenone levels than CTRL boars (aged 139 days) when the first biopsy was taken at 80 kg of live weight (1.2 vs 0.8 microgram/g; P less than 0.05). By the time of the second biopsy (100 kg of live weight) and at slaughter (125 kg) there was no significant difference between the SW and CTRL groups, although the SW were 43-55 days older than the CTRL. At all three measurement times, fat 5 alpha-androstenone was lower in SA than in CTRL boars which were 21-36 kg heavier (0.5 vs 0.8 micrograms/g at 139 days; 0.9 vs 1.3 micrograms/g at 160 days; 1.2 vs 2.0 micrograms/g at 185 days; P less than 0.001). Partial correlations between fat 5 alpha-androstenone and age were significant at the first biopsy, whereas partial correlations with live weight were significant at all three times of measurement. In SA boars weighing 90 kg there was a significant correlation between fat 5 alpha-androstenone and all the developmental traits of the genital tract. In SW and CTRL pigs weighing 125 kg, fat 5 alpha-androstenone was significantly correlated with accessory sex gland development but not with testis or epididymis weight. From the present data it is concluded that both age and live weight had a significant effect on fat 5 alpha-androstenone levels in young, light boars. In older, heavier boars, age had no effect per se but live weight still had a significant influence on 5 alpha-androstenone concentrations. In boars weighing 90 kg, fat 5 alpha-androstenone level depended on sexual maturity. When the animals were sexually mature at 125 kg of live weight, 5 alpha-androstenone level depended on the individual's potentiality for steroid production, which is probably under genetic control.

Adipose Tissue↗

Estrogens and falling sperm counts.

Extravagant claims have been made repeatedly in recent years that human sperm counts are falling and that global exposure to environmental estrogens are responsible. The basis for these two distinct claims is reviewed. The claims of falling human sperm output, reviving an old debate, are prompted by a paper by Carlsen et al. (1992). This meta-analysis, however, is marred by numerous flaws that invalidate its claims. Major defects include severe heterogeneity of component studies, rendering them unsuitable for aggregation, and defective data analysis based on arithmetic mean rather than median, which showed no significant changes over time. This debate is likely to remain unresolved until valid, representative population-based studies of human sperm output can be achieved. None have been reported, or seem feasible in the near future, and so alternative strategies, based on surrogate variables for human male fertility not requiring sperm counts, need to be developed and validated. The plausible hypothesis that prenatal estrogen exposure might influence development of the human testis through effects on Sertoli cell replication and sperm carrying capacity has, however, been conclusively refuted by studies of boys born to women exposed to high doses of oral diethylstilbestrol during pregnancy. Neither fertility nor sperm output were adversely influenced by massive maternal estrogen exposure during pregnancy, although minor urogenital malformations did occur. The still wider claims of deteriorating male reproductive health, notably changes in prevalence or incidence of hypospadias or cryptorchidism, also lack convincing population-based evidence, although cancer registry data indicate a gradual increase in testis cancer in some countries. In summary, the available evidence does not support claims of falling sperm counts or any general deterioration in male reproductive health. Population-based studies of valid surrogate variables for male fertility not requiring semen analysis are needed. If population-based evidence regarding male fertility or sperm output could be generated, it is highly unlikely that prenatal estrogen exposure could be a valid explanation of any deterioration as massive maternal exposure to oral estrogen has negligible effects on male fertility or sperm output.

Estrogens↗

The mouse Y chromosome interval necessary for spermatogonial proliferation is gene dense with syntenic homology to the human AZFa region.

The Delta Sxrb deletion interval of the mouse Y chromosome contains Spy, a spermatogenesis factor gene(s) whose expression is essential for the postnatal development of the mitotic germ cells, spermatogonia. The boundaries of Delta Sxrb are defined by the duplicated genes Zfy1 and Zfy2 and four further genes have previously been mapped within the interval: Ube1y and Smcy, linked with Zfy1 on a contig of 250 kb, and Dffry and Uty, which were unanchored. The interval was estimated to be >450 kb. In order to identify any further gene(s) that may underlie Spy, systematic exon trapping was performed on an extended contig, anchored on Zfy1, which covers 750 kb of the Delta Sxrb interval. Exons from two novel genes were isolated and placed together with Dffry and Uty on the contig in the order Dffry-Dby-Uty-Tspy-Eif2gammay-Smcy- Ube1y-Zfy1. All the genes, with the double exception of Tspy, are X-Y homologous and produce putatively functional, spliced transcripts. The tight linkage and order of Dffry, Dby and Uty was shown to be conserved in deletion intervals 5C/5D of the human Y chromosome by the construction of a contig of human PAC and YAC clones; this represents the first example of syntenic homology between Y chromosomes from two distinct mammalian orders. Interval 5C/5D contains the distal boundary of the AZFa interval, which, like Delta Sxrb, is believed to be necessary for spermatogonial development in the prepubertal testis. Our results therefore show that AZFa and Spy may be encoded by homologous genes.

Animals↗

Congenital hydrocephalus in hy3 mice is caused by a frameshift mutation in Hydin, a large novel gene.

The autosomal-recessive mutation hydrocephalus3 (hy3) results in lethal communicating hydrocephalus with perinatal onset. We recently described a hydrocephalus-inducing transgenic insertional mutation, OVE459, which represents a new allele of hy3. Direct cDNA selection performed on a wild-type mouse BAC clone spanning the OVE459 insertion locus on chromosome 8 led to the identification of two novel candidate genes, Hydin and Vac14. The transgene insertion resulted in a rearrangement of Hydin exons in OVE459 mice. Hydin consists of at least 86 exons spanning over 340 kb of genomic DNA. The full-length Hydin transcript is nearly 16 kb, encoding a putative 5099 amino acid protein. Northern analysis revealed a marked reduction of Hydin mRNA in both OVE459 and hy3 homozygotes relative to wild-type littermates. A single CG base-pair deletion in exon 15 of Hydin was discovered specifically in mice carrying the spontaneous hy3 mutant allele. This deletion creates a premature termination signal two codons downstream of the mutation, likely resulting in the loss of 89% of the full-length gene product. Within the neonatal brain, Hydin expression is confined to the ciliated ependymal cell layer lining the lateral, third and fourth ventricles. Other sites of Hydin expression include the ciliated epithelial cells lining the bronchi and oviduct, as well as in the developing spermatocytes in the testis. The Hydin gene product is not closely related to any previously identified protein, with the exception of a 314 amino acid domain with homology to caldesmon, an actin-binding protein, suggesting an interaction with the cytoskeleton.

Animals↗

Some social and medical characteristics of Army men with testicular cancer.

Risk of developing cancer of the testis was related to social and medical characteristics in a case-control study of men on active duty in the US Army, 1950-1970. Service records were obtained for 702 newly-diagnosed patients and 624 members of a systematic sample of unaffected servicemen. Risk ratios were computed for seminomas, tumors of other histologic types, and for all tumors combined. Respectively, these risk ratios were 0.3, 0.1 and 0.2 for blacks compared to whites, 1.5, 1.1 and 1.3 for Protestants compared to Catholics, and 1.5, 1.0 and 1.2 for the ever married compared to the never married. Risk increased regularly with duration of schooling for seminomas but not other types of tumors. Risk appeared relatively low for men from large sibships. Men from the North Central or Western parts of the country were at higher risk than those from the South or Northeast, a trend that was stronger for tumors other than seminomas. Observed changes in risk with respect to history of mumps and ABO blood group were small.

Adult↗

Surface glycoprotein changes in ram spermatozoa during epididymal maturation.

Three radiolabeling procedures were applied to ram spermatozoa obtained at three different stages of posttesticular development: on leaving the testis (testicular sperm); after epididymal transit (cauda epididymal sperm); and after exposure to accessory sex gland secretions (ejaculated sperm). The washed spermatozoa were subjected to three radiolabeling treatments: 1) galactose oxidase and sodium boro [3H]hydride (galactosyl and galactosaminyl residues); 2) sodium metaperiodate and NaBH4 (sialyl residues); and 3) chloroglycoluril and Na125 I (tyrosyl residues). High resolution sodium dodecyl sulfate (SDS) polyacrylamide gel electrophoretic analysis of the surface radiolabeling patterns confirms earlier studies in demonstrating an overall shift in the predominant labeled glycoproteins from the zone 78-115 kd in testicular spermatozoa to relatively low molecular weights of between 15 and 95 kd in cauda epididymal or ejaculated spermatozoa. Labeling procedures specific for glycoproteins and sialoglycoproteins revealed additional complexities in the surface transformation patterns of ram spermatozoa and suggest that cauda epididymal spermatozoa exposed to accessory sex gland secretions adsorb or produce a component of high molecular weight (approx. 350 kd).

Animals↗

Male infertility caused by epididymal dysfunction in transgenic mice expressing a dominant negative mutation of retinoic acid receptor alpha 1.

Retinoids are thought to be required for the normal development and maturation of a number of tissues, including most epithelia. The action of retinoids appears to be mediated through the binding to retinoic acid receptors (RARs) in the nucleus. The activity of retinoic acid can be inhibited in cells carrying dominant negative mutations of RAR alpha. We created transgenic mice expressing a dominant negative mutant of RAR alpha driven by the murine mammary tumor virus promoter. Expression of the transgene was evident in the epididymis and vas deferens in transgenic males. These males were either infertile or had reduced fertility, and the epithelium lining the ducts of the epididymis and vas deferens had undergone squamous metaplasia. Sperm developed normally in the testis but degenerated in the epididymis and vas deferens because inspissated ductal fluid blocked the normal passage of the sperm.

Animals↗

Development of the adult-type Leydig cell population in the rat is affected by neonatal thyroid hormone levels.

We have investigated the effects of neonatal-prepubertal changes in thyroid hormone levels on the early phases of adult-type Leydig cell development in the rat testis. Hypothyroidism was induced by adding 6-propyl-2-thiouracil (PTU) to the drinking water, while hyperthyroidism was induced by daily injections with triiodothyronine (T3). The proliferative activity of the Leydig cells in PTU-treated animals was not different from that in age-matched controls through the age of 16 days. Nevertheless, the percentage of Leydig cells (i.e., the proportion of Leydig cells among the total interstitial cell population) was approximately 83% and 67% lower at the ages of 12 and 16 days, respectively. The proliferative activity of the Leydig cells in the T3-treated animals compared to the controls was increased approximately 3-fold at the ages of 12 and 16 days. The percentage of Leydig cells in T3-treated animals was also considerably increased at these two ages (400% and 725%, respectively). Concomitantly, the percentage of peritubular cells was decreased, suggesting that the increase in the percentage of Leydig cells may at least partially be the result of differentiation of peritubularly located precursor cells. Plasma testosterone levels fluctuated considerably at these ages. Hence, injection of T3 during the neonatal-prepubertal period not only affects Sertoli cell proliferation and differentiation but also directly or indirectly affects the onset of the formation of the adult-type Leydig cell population and its function.

3-Hydroxysteroid Dehydrogenases↗

A novel N-terminal domain directs membrane localization of mouse testis-specific calpastatin.

Multiple isoforms of calpastatin have been identified with unique N-terminal regions followed by identical calpain inhibitory domains (II-IV). In many instances the isoforms are cell-type specific, although the precise functional differences among these N-terminal regions are largely unknown. Here we report a germ cell-specific isoform of calpastatin (tCAST) that consists of a novel N-terminal peptide of 40 amino acids (domain T) followed by domains II to IV of somatic calpastatin (sCAST). Domain T is responsible for membrane association of tCAST through a protein modification by myristylation. Mutation of the myristylation site eliminates membrane targeting. Unlike most of the isoforms of calpastatin that are generated through alternative RNA splicing or post-translational proteolysis, the testis-specific isoform is transcribed from an intronic promoter in haploid germ cells of the testis. The intronic promoter directs specific expression of a reporter transgene in developing germ cells of the mouse testis.

Animals↗