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Dolores J Lamb

Publications and source records attributed to Dolores J Lamb.

At least 19 recordsLinked to original sources

Non-invasive genetic diagnosis of male infertility using spermatozoal RNA: KLHL10 mutations in oligozoospermic patients impair homodimerization.

Infertility affects an estimated 7% of men worldwide, nearly a quarter of whom are diagnosed as idiopathic. The genetic etiologies of idiopathic male infertility are unknown, partly due to lack of simple diagnostic techniques. Moreover, the transmission risk of such genetic defects to offspring born from assisted reproductive techniques is increasingly becoming a concern for physicians and infertile couples. We explored the feasibility of obtaining full-length mRNAs from transcriptionally inert human spermatozoa in semen as a non-invasive diagnostic tool for identifying germline mutations in candidate infertility-associated genes. The efficacy of reverse-transcription PCR on spermatozoal RNA from infertile patients with wide-ranging sperm concentrations varied between 91 and 99% for multiple haploid germ cell-expressed genes. Using this methodology, we identified seven oligozoospermic patients with missense and splicing mutations in the germ cell-specific gene, KLHL10. Three of 270 (1.1%) severely oligozoospermic patients (<10(6) sperm/ml) harbor KLHL10 alterations that were absent in 394 controls and exhibited significant association (P=0.02). Two KLHL10 missense mutations (A313T and Q216P) resulted in impaired homodimerization with the wild-type protein in yeast interaction assays, suggesting a functional deficiency. This study demonstrates the utility of this approach for analysis of haploid germ cell-expressed genes regulating post-meiotic events including sperm maturation, motility and fertilization. The development of non-invasive techniques to analyze genetic defects of human spermatogenesis, previously possible only with invasive testis biopsies, provides important diagnostic and therapeutic implications for reproductive medicine.

Amino Acid Sequence↗

Is a genetic defect in Fkbp6 a common cause of azoospermia in humans?

FK506-binding protein 6 (Fkbp6) is a member of a gene family containing a prolyl isomerase/FK506-binding domain and tetratricopeptide protein-protein interaction domains. Recently, the targeted inactivation of Fkbp6 in mice has been observed to result in aspermic males and the absence of normal pachytene spermatocytes. The loss of Fkbp6 results in abnormal pairing and a misalignment of the homologous chromosomes, and in non-homologous partner switches and autosynapsis of the X chromosome cores in meiotic spermatocytes. In this study, we analyzed whether human FKBP6 gene defects might be associated with human azoospermia. We performed a mutation analysis in all the coding regions of the human FKBP6 gene in 19 patients with azoospermia resulting from meiotic arrest. The expression of the human FKBP6 gene was specific to the testis, and a novel polymorphism site, 245C --> G (Y60X) could be found in exon 3. Our findings suggest that the human FKBP6 gene might be imprinted in the testis based on an analysis using two polymorphism sites.

Amino Acid Sequence↗

Polymorphic alleles of the human MEI1 gene are associated with human azoospermia by meiotic arrest.

Genetic mechanisms are implicated as a cause of some male infertility, yet are poorly understood. Mouse meiotic mutant mei1 (meiosis defective 1) was isolated by a screening of infertile mice. Male mei1 mice have azoospermia due to meiotic arrest, and the mouse Mei1 gene is responsible for the mei1 phenotype. To investigate whether human MEI1 gene defects are associated with azoospermia by meiotic arrest, we isolated the human MEI1 cDNA based on the mouse Mei1 amino acid sequence. MEI1 is expressed specifically in the testis. Mutational analysis by direct sequencing of all MEI1 coding regions was performed in 27 men (13 European Americans, 13 Israeli and 1 Japanese) having azoospermia due to complete early meiotic arrest. This identified four novel, coding single-nucleotide-polymorphisms (cSNPs), i.e., SNP1 (T909G), SNP2 (A1582G), SNP3 (C1791A) and SNP4 (C2397T) in exons 4, 8, 9 and 14, respectively. Using these cSNPs, an association study was carried out between 26 non-Japanese patients with azoospermia and two sets of normal control men (61 normal European Americans and 60 Israelis). Consequently, SNP3 and SNP4 were shown to be associated with azoospermia among European Americans (P =0.0289 and P =0.0299 for genotype and allele frequencies at both the polymorphic sites, respectively), although no such association was observed among Israelis (P >0.05). Haplotype estimation revealed that the frequencies of SNP3-SNP4 (C-T), SNP3-SNP4 (A-C) and SNP3-SNP4 (A-T) were higher in the European American patients, and the frequency of SNP3-SNP4 (A-T) was also higher than in both control groups. These results suggest that MEI1 may play a role in meiosis during spermatogenesis, especially in European Americans.

Alleles↗

UTP14c is a recently acquired retrogene associated with spermatogenesis and fertility in man.

In the mouse, Utp14b is a retrogene transposed to an intron of Acsl3 (long-chain-fatty-acid coenzyme A ligase 3) on mouse chromosome 1. It represents a copy of Utp14a, a ubiquitously expressed, X-linked gene involved in 18S rRNA synthesis. The Utp14b is specifically expressed in male germ cells and, when mutated in the jsd (juvenile spermatogonial depletion) mouse, results in early spermatogenic arrest and male infertility. To understand the function and relevance of the orthologous human gene in testis pathology, we mapped transcripts and searched for mutations within the gene in infertile males. In humans, the strict ortholog of UTP14b has degenerated and is no longer functional. However, a second active retroposon, UTP14c, is found within a widely expressed, putative glycosyl transferase-containing gene, GT8, on human chromosome 13. Unlike mouse Utp14b, which is only expressed in the male germ line, human UTP14c is expressed in testis and ovary, which is consistent with having a gonad-specific function. To determine if UTP14c is functionally equivalent to mouse Utp14b and essential to spermatogenesis in humans, we screened DNA from 234 nonobstructive, azoospermic/severely oligospermic males and 208 proven-fertile controls for mutations within UTP14c. We identified a mutation in three unrelated patients that introduces an in-frame stop codon truncating the UTP14c protein near the carboxyl terminus. These data indicate that UTP14c may be functionally equivalent to mouse Utp14b and required for normal male fertility in humans. The novel evolution of retroposed UTP14 genes supports the hypothesis that retrogenes play an important role in evolution via regulation of male reproductive fitness.

Animals↗

Maintenance of spermatogenesis requires TAF4b, a gonad-specific subunit of TFIID.

The establishment and maintenance of spermatogenesis in mammals requires specialized networks of gene expression programs in the testis. The gonad-specific TAF4b component of TFIID (formerly TAF(II)105) is a transcriptional regulator enriched in the mouse testis. Herein we show that TAF4b is required for maintenance of spermatogenesis in the mouse. While young Taf4b-null males are initially fertile, Taf4b-null males become infertile by 3 mo of age and eventually exhibit seminiferous tubules devoid of germ cells. At birth, testes of Taf4b-null males appear histologically normal; however, at post-natal day 3 gonocyte proliferation is impaired and expression of spermatogonial stem cell markers c-Ret, Plzf, and Stra8 is reduced. Together, these data indicate that TAF4b is required for the precise expression of gene products essential for germ cell proliferation and suggest that TAF4b may be required for the regulation of spermatogonial stem cell specification and proliferation that is obligatory for normal spermatogenic maintenance in the adult.

Aging↗

Stem cells: implications for urology.

Stem cells are characterized by their potential immortality and are capable of self-renewal and differentiation. Stem cells are proposed to provide the potential to cure degenerative diseases and to give important clues regarding human development and aging. However, stem cell research has evoked enthusiasm and passionate debate regarding the ethics of their use in medicine and reproduction. In this article, the current understanding of the biology of stem cells, their application in urology, and some of the controversies regarding their use are discussed. Although the clinical application of stem cell technologies to urologic practice is likely to be well in the future, advances in this field hold great promise for the correction of a number of illnesses. Nevertheless, scientists and ethicists will continue to struggle with their ethical responsibilities to the patient and society.

Biomedical Research↗

A multicenter study evaluating the flowcytometric-based kit for semen analysis.

OBJECTIVE: To evaluate the precision and accuracy of a flowcytometric-based semen analysis kit and its application in four fertility centers, as compared with routine microscopic evaluation. DESIGN: A prospective comparative study. SETTING: Four fertility centers, located in Israel and the United States. PATIENT(S): Patients referred to fertility clinic for sperm evaluation. INTERVENTION(S): The precision of semen analysis by both methods was evaluated by inter- and intra-technician studies. The accuracy of the sperm counts obtained was assessed by counting a diluted sample and comparing the obtained results with the expected results according to the dilution factor. MAIN OUTCOME MEASURE(S): Sperm count, morphology, motility, viability, white cell count, antisperm antibodies. RESULT(S): The flowcytometric-based kit for semen analysis is more precise and accurate than the manual routine method. Smaller coefficient of variance (CV%) with results were obtained by the flowcytometric-based kit for all semen parameters as compared with the routine manual methods. Sperm density values determined by the flowcytometric-based kit correlated better with the dilution factor. The agreement rates between the flowcytometric and manual methods are sperm count 90%, motility 82%, vitality 70%, round cell counts 78%, and sperm bound antibodies 100%. CONCLUSION(S): Semen analysis by flowcytometric-based kit is advantageous because of improved precision and accuracy compared with the routine method. It provides similar clinical information to that obtained by routine method for sperm count, motility, and antisperm antibodies, and more accurate results for round cell counts (labeled all subclasses) and vitality.

Flow Cytometry↗

Challenges in prostate cancer research: animal models for nutritional studies of chemoprevention and disease progression.

Prostate cancer is the second leading cause of cancer-related death in the United States. The American Cancer Society estimates that there will be over 232,000 new cases of prostate cancer in 2005. Evidence suggests that diet can act as a chemopreventive agent to reduce the incidence of prostate cancer as well as to reduce the mortality of the disease. Epidemiologic studies suggest that diets rich in specific vitamins, grains, fruits, and vegetables may be associated with lower cancer rates than high-fat diets, yet the molecular bases for these positive nutritional actions are largely unknown. The interactions of diet in combination with genetic determinants of disease progression are unclear because prostate cancer is also a disease resulting from abnormal gene expression. Hence, the biology of normal prostate development and the mechanisms underlying the initiation, progression, and metastatic spread of prostate cancer must be understood at the molecular level to develop effective nutritional prevention and intervention strategies to control and treat this malignant disease. However, progress toward understanding the biology of prostate cancer and the development of new therapies has been hampered by the lack of in vivo model systems that adequately capitulate the spectrum of benign, latent, aggressive, and metastatic forms of the human disease. In this review we discuss the diverse animal models of prostate cancer available and their applicability for nutritional studies of cancer prevention.

Animal Nutritional Physiological Phenomena↗

Isolation and enrichment of murine spermatogonial stem cells using rhodamine 123 mitochondrial dye.

Stem cells possess enormous therapeutic potential in tissue replacement. To study stem cells further, they must be isolated. Techniques are available for enrichment and study of hematopoietic stems cells, but thus far, techniques for purification of spermatogonial stem cells have not been described. Enrichment techniques for hematopoietic stem cells include the use of fluorescence-activated cell sorter analysis with Hoechst 33342 and rhodamine 123 (Rho) dyes. Use of Hoechst dye to isolate spermatogonial stem cells has been unsuccessful in our laboratory, and our results have conflicted with those from other laboratories. Taking advantage of the differential staining of the Rho dye, we report a novel method to enrich murine spermatogonial stem cells. Testicular cells are harvested from cryptorchid ROSA26 male mice. Populations of these cells are then stained with the Hoechst and Rho dyes, allowing them to be sorted by flow cytometry into a side population (SP) of Hoechst low-intensity cells and populations of low (Rho(low)) or high (Rho(hi)) fluorescent intensity. Sterile recipients, W/W(v) mice, with an intrinsic germ cell deficiency were transplanted with the Hoechst SP cells, Rho(low), Rho(hi), and nonsorted donor cells. No spermatogonial stem cell colonies were derived from the Hoechst SP cells. The number of spermatogonial stem cell colonies from transplanted Rho(low) cells showed a 17- and 20-fold enrichment over those of Rho(hi) and nonsorted cells, respectively.

Animals↗

Interleukin-8 expression is increased in senescent prostatic epithelial cells and promotes the development of benign prostatic hyperplasia.

BACKGROUND: Benign prostatic hyperplasia (BPH) is an extremely common disease of older men characterized by increased growth of prostatic epithelial and stromal cells. Previously we showed that senescent epithelial cells accumulate in the prostate of aging men and secrete interleukin-1 alpha (IL-1 alpha). IL-8 is also present at increased levels in BPH tissues and induces expression of FGF2, a potent stromal growth factor. Therefore, we sought to determine if IL-8 is also expressed at increased levels by senescent epithelial cells and if this secreted IL-8 plays a role in the pathogenesis of BPH. METHODS: Expression of IL-8 in human BPH tissue and primary cultures of prostatic epithelial cells was analyzed using an enzyme-linked immunoabsorption assay (ELISA). Tissue senescence was assessed by a quantitative assay for senescence-associated beta galactosidase (SA-beta gal). Proliferation of primary and immortalized prostatic epithelial cells in response to IL-8 was determined by counting of cells at intervals after addition of IL-8. RESULTS: Expression of IL-8 is significantly increased in vitro when cultured prostatic epithelial cells undergo senescence. Quantitative assay of BPH tissue extracts revealed that tissue IL-8 levels are correlated with both SA-beta gal activity and prostate weight. IL-8 promotes proliferation of primary and immortalized prostatic epithelial cells in culture. CONCLUSIONS: Senescence of prostatic epithelial cells results in increased expression of IL-8, which can promote proliferation of non-senescent epithelial and stromal cells by direct and indirect mechanisms, and in this manner contributes to the increased tissue growth seen in BPH.

Cellular Senescence↗

The steroidogenic acute regulatory protein is expressed in steroidogenic cells of the day-old brain.

Although recent research has focused on the fundamental role(s) of steroids synthesized de novo in the brain on development, the mechanism by which production of these neurosteroids is regulated remains unclear. Steroid production in peripheral tissues is acutely regulated by the steroidogenic acute regulatory (StAR) protein, which mediates the rate-limiting step in steroid biosynthesis: the intramitochondrial delivery of cholesterol to cytochrome P450scc for conversion to steroid. We recently demonstrated that StAR is present in discrete cell types in the adult brain, suggesting that neurosteroid production is mediated by StAR. Nevertheless, little is known regarding the presence of StAR in the developing brain. In the present study, the presence of StAR and for the first time, its homolog, the putative cholesterol transport protein metastatic lymph node 64 (MLN64), were defined in the neonatal mouse brain using immunocytochemical techniques. Both StAR and MLN64 were found to be present in the brain with staining patterns characteristic to each protein, indicating the authenticity of StAR and MLN64 immunoreactivity. Furthermore, we found MLN64 to be expressed in the adult brain as well, apparently at higher levels than StAR. Importantly, StAR protein is present in cells that also express P450scc. These data suggest that, as with the adult, neurosteroid production during development occurs through a StAR-mediated pathway.

Animals↗

De novo testosterone production in luteinizing hormone receptor knockout mice after transplantation of leydig stem cells.

Mesenchymal stem cells or Leydig cell progenitors are rare and difficult to isolate from adult testes. The property of differential efflux of Hoechst 33342 dye by the multi-drug-like transporter enriches murine hematopoietic stem cells from bone marrow. Our work on testicular cell transplantation suggests that the "Hoechst dim" side population (SP) also contains Leydig stem cells or progenitors that proliferate and differentiate into mature functional Leydig cells. We harvested testicular cells from cryptorchid ROSA26 mice, stained them with Hoechst dye, and isolated the cell population that excludes the dye using flow cytometry. Mice with targeted deletion of the LH receptor (LHR) gene were used as the recipients of the transplanted cells. These mice are hypogonadal and infertile. Both testicular SP and non-SP cells were transplanted into the interstitium of the LHR knockout recipients' testes. Serial serum testosterone assays revealed a significant increase in the circulating testosterone levels and restoration of spermatogenesis in the LHR-knockout recipients transplanted with the SP cells compared with that of those transplanted with non-SP. A SP cell concentration- and time-dependent increase in circulating testosterone was observed. This demonstrates the successful transplantation of functional putative Leydig stem cells into a hypogonadal recipient. The increase in testosterone concentration indicates the de novo synthesis of androgen by the transplanted SP cells. This method offers a novel technique to isolate Leydig stem cells and to study Leydig cell development.

Animals↗

Association of preoperative plasma levels of vascular endothelial growth factor and soluble vascular cell adhesion molecule-1 with lymph node status and biochemical progression after radical prostatectomy.

PURPOSE: Angiogenesis is a critical process for cancer progression. We tested whether elevated circulating levels of the angiogenesis-related markers vascular endothelial growth factor (VEGF) and/or soluble vascular cell adhesion molecule-1 (sVCAM-1) are associated with prostate cancer diagnosis, stage, progression, and metastasis. PATIENTS AND METHODS: Plasma levels of VEGF and sVCAM-1 were measured on frozen, archival plasma obtained preoperatively from 215 consecutive patients who underwent radical prostatectomy for clinically localized disease, nine men with untreated prostate cancer metastatic to bones, and 40 healthy men without cancer. RESULTS: Plasma levels of both VEGF and sVCAM-1 were highest in patients with bone metastases (P <.001). VEGF levels were higher in patients with clinically localized disease than in healthy controls (P <.001). VEGF levels were elevated in patients with biopsy and final Gleason sum > or = 7 (P =.036 and P =.020, respectively) and extraprostatic extension (P =.047). Higher preoperative VEGF was independently associated with metastases to lymph nodes (P <.001). Both VEGF and sVCAM-1 were independently associated with biochemical progression after adjustment for the effects of standard preoperative features (P =.014 and P =.039, respectively). VEGF remained independently associated with biochemical progression after adjustment for standard postoperative features (P =.019). CONCLUSION: Plasma levels of VEGF increased incrementally from healthy controls to patients with clinically localized disease to patients with lymph node and skeletal metastases. Higher preoperative VEGF was independently associated with metastases to lymph nodes and biochemical progression after surgery in both pre- and postoperative models. Plasma sVCAM-1 was elevated in men with bone metastases and was associated with biochemical progression in a preoperative model.

Adult↗

Serum BPSA outperforms both total PSA and free PSA as a predictor of prostatic enlargement in men without prostate cancer.

OBJECTIVES: To determine whether the serum concentration of BPSA, a distinct form of free prostate-specific antigen (PSA) enriched in the nodular transition zone (TZ) tissue of benign prostatic hyperplasia (BPH), can predict TZ volume and diagnose BPH-associated prostatic enlargement in patients without prostate cancer. METHODS: We studied 91 consecutive patients without prostate cancer who underwent a 10-core or greater biopsy of the prostate. The associations between prostate volume, age, International Prostate Symptom Score, and serum concentrations of PSA, free PSA, and BPSA were evaluated by receiver operating characteristic curve and linear and binary logistic regression analyses. RESULTS: BPSA and free PSA showed stronger correlations with both age (BPSA = 0.38, free PSA = 0.40, PSA = 0.24) and TZ volume (BPSA = 0.67, free PSA = 0.64, PSA = 0.55) than did PSA. The percent free PSA had no statistically significant correlation with TZ volume (P = 0.08). Subtraction of BPSA from free PSA reduced its correlation with TZ volume to below that of PSA (from 0.64 to 0.48). Linear regression analyses showed that, unlike PSA, both BPSA and free PSA displayed an age-independent relationship to TZ volume. The receiver operating characteristic curve (for TZ greater than 30 cm3) and binary logistic regression analyses showed that BPSA (area under the curve = 0.844) outperformed both free PSA (area under the curve = 0.799) and PSA (area under the curve = 0.749) in its ability to predict clinically significant TZ enlargement. CONCLUSIONS: In patients without prostate cancer, the serum concentration of BPSA displayed an age-independent, log-linear relationship to TZ volume and was a better predictor of prostatic enlargement than either PSA or free PSA. BPSA may also predict clinical parameters of BPH and is under evaluation as a marker of BPH progression and response to therapy.

Adult↗

Azoospermia in patients heterozygous for a mutation in SYCP3.

BACKGROUND: Many cases of male infertility are diagnosed as idiopathic, reflecting poor understanding of the molecular defects underlying the abnormality. As more gene mutations causing male infertility in mice become known, there are improving prospects that knowledge about the genetic aetiology of human male infertility can be expanded. Sycp3 encodes a component of the synaptonemal complex. A null mutation of Sycp3 in mice causes azoospermia with meiotic arrest. We tested the hypothesis that mutation of the human testis-specific SYCP3 is associated with human non-obstructive azoospermia. METHODS: Human SYCP3 was isolated on the basis of homology between mouse Sycp3 cDNA and human genome sequences at the aminoacid level. Tissue-specific expression of SYCP3 was analysed by PCR of human cDNA. Samples of DNA from 19 azoospermic patients with maturation arrest and 75 normal fertile control men were screened for mutations in the SYCP3 gene by sequence analysis of the gene. The functional significance of the mutations found was analysed by a protein interaction study of the wild-type and truncated SYCP3 proteins. FINDINGS: We identified in two patients a 1 bp deletion (643delA) that results in a premature stop codon and truncation of the C-terminal, coiled-coil-forming region of the SYCP3 protein. The mutant protein showed greatly reduced interaction with the wild-type protein in vitro and interfered with SYCP3 fibre formation in cultured cells. INTERPRETATION: We suggest that SYCP3 has an essential meiotic function in human spermatogenesis that is compromised by the mutant protein via dominant negative interference.

Animals↗

Androgen receptor gene polyglutamine length is associated with testicular histology in infertile patients.

PURPOSE: Androgens and a functioning androgen receptor are required for normal spermatogenesis. The androgen receptor gene (AR) has a repetitive DNA sequence in exon 1 that encodes a polyglutamine tract. Within the normal polymorphic range this (CAG)(n) tract length is inversely related to the transcriptional activity of the androgen receptor. In a prospective analysis we determined the association of AR (CAG)(n) tract length with testicular histology in infertile males. MATERIALS AND METHODS: Blood DNA from 70 severely infertile patients without obstruction who were undergoing testicular biopsy was amplified by polymerase chain reaction targeting the AR (CAG)(n) tract. A total of 37, 15 and 18 men presented with the Sertoli-cell-only syndrome, maturation arrest and hypospermatogenesis, respectively. Blood DNA from 55 fertile men served as the control. Polymerase chain reaction amplified DNA was direct sequenced using a genetic analyzer. RESULTS: Median CAG repeat length was 22 (range 17 to 33) in infertile patients and 21 (range 8 to 27) in controls (p = 0.009), including 22 (range 17 to 30) in patients with the Sertoli-cell-only syndrome, 22 (range 18 to 28) in those with maturation arrest and 23 (19 to 33) in those with hypospermatogenesis. Statistical significance was noted for the hypospermatogenesis versus control groups (p = 0.039) but not for the groups with the Sertoli-cell-only syndrome or maturation arrest versus the control group (p = 0.054 and 0.591, respectively). CONCLUSIONS: Infertile males with testicular failure, particularly those with hypospermatogenesis, are more likely to have a longer androgen receptor polyglutamine tract than controls. Polymorphisms of the AR (CAG)(n) tract may contribute to spermatogenesis efficiency through a subtle modulatory effect on androgen receptor function.

Adult↗

Genetic disorders and infertility.

Many aspects of male fertility are influenced by genetics. Over 150 genes have been shown to be associated with infertility in mouse models, although translation of these findings to human male infertility has been slow. Nevertheless, it is likely that a significant number of these gene deletions may be associated with human infertility. There is much that we do not understand about the molecular basis of human male infertility; patients should be advised of this caveat. Genetic disorders in humans can lead to impaired spermatogenesis, defective sperm function, and defects in delivery of sperm. It is critical for the urologist who evaluates and treats infertile couples to have a working knowledge of these disorders. An understanding of the genetic basis of male infertility allows for the appropriate counseling of patients about treatment options and risks to their potential offspring.

Chromosomes, Human, Y↗