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Biomedical subjects

J W Gordon

Publications and source records attributed to J W Gordon.

At least 37 records · Page 2Linked to original sources

A novel functional role for apolipoprotein B in male infertility in heterozygous apolipoprotein B knockout mice.

Male infertility, affecting as many as 10% of the adult population, is an extremely prevalent disorder. In most cases, the cause of the condition is unknown, and genetic factors that might affect male fertility, other than some sequences on the Y chromosome, have not been identified. We report here that male mice heterozygous for a targeted mutation of the apolipoprotein B (apo B) gene exhibit severely compromised fertility. Sperm from these mice failed to fertilize eggs both in vivo and in vitro. However, these sperm were able to fertilize eggs once the zona pellucida was removed but displayed persistent abnormal binding to the egg after fertilization. In vitro fertilization-related and other experiments revealed reduced sperm motility, survival time, and sperm count also contributed to the infertility phenotype. Recognition of the infertility phenotype led to the identification of apo B mRNA in the testes and epididymides of normal mice, and these transcripts were substantially reduced in the affected animals. Moreover, when the genomic sequence encoding human apo B was introduced into these animals, normal fertility was restored. These findings suggest that this genetic locus may have an important impact on male fertility and identify a previously unrecognized function for apo B.

Animals↗

Quantitative immunocytochemical analysis of the spinal cord in G86R superoxide dismutase transgenic mice: neurochemical correlates of selective vulnerability.

Transgenic mice with a G86R mutation in the mouse superoxide dismutase (SOD-1) gene, which corresponds to a mutation that has been observed in familial amyotrophic lateral sclerosis (ALS), display progressive loss of motor function and provide a valuable model of ALS. The pathology in the spinal cords of these mice was evaluated to determine whether there are chemically identified populations of neurons that are either highly vulnerable or resistant to degeneration. Qualitatively, there were phosphorylated neurofilament protein (NFP)-immunoreactive inclusions and a pronounced loss of motoneurons in the ventral horn of the spinal cord without the presence of vacuoles that has been reported in other SOD-1 transgenic mice. Neuron counts from SOD-1 and control spinal cords revealed that the percentage loss of NFP-, choline acetyltransferase (ChAT)-, and calretinin (CR)-immunoreactive neurons was greater than the percentage loss of total neurons, suggesting that these neuronal groups are particularly vulnerable in SOD-1 transgenic mice. In contrast, calbindin-containing neurons did not degenerate significantly and represent a protected population of neurons. Quantitative double-labeling experiments suggested that the vulnerability of ChAT- and CR-immunoreactive neurons was due primarily to the presence of NFP within a subset of these neurons, which degenerated preferentially to ChAT- and CR-immunoreactive neurons that did not colocalize with NFP. Our findings suggest that NFP, which has been demonstrated previously to be involved mechanistically in motoneuron degeneration, may also be important in the mechanism of degeneration that is initiated by the SOD-1 mutation.

Animals↗

Development of a microchamber which spontaneously selects high-quality sperm for use in in vitro fertilization or micromanipulation.

BACKGROUND: A microchamber has been developed which allows motile sperm to swim from a central loading site to peripheral sidewells. The sidewells are designed such that oocytes may be placed within them for in vitro fertilization (IVF) or sperm may be harvested from them for use in standard IVF or micromanipulation. Because only motile sperm can reach the sidewells, the microchamber can select relatively high-quality sperm from a crude preparation. Moreover the steep walls of the sidewells create the potential to trap sperm. OBJECTIVE: The present study was under taken to compare sperm in the sidewells to those found in randomly sampled regions of microchamber after various periods of incubation. RESULTS: We find that the sidewells concentrate motile sperm and that a higher percentage of sperm removed from sidewells is acrosome reacted. Motile sperm from oligospermic patients can be harvested from microchamber sidewells for use in micromanipulation after loading the microchamber with unprocessed specimens. Results suggest that this microchamber could be used to enhance sperm:egg interaction in IVF or to harvest sperm for micromanipulation.

Acrosome↗

Birth of normal mice after removal of the supernumerary male pronucleus from polyspermic zygotes.

Each year, world wide, tens of thousands of zygotes derived from the in-vitro insemination of human oocytes undergo polyspermic fertilization. These embryos must presently be discarded because it has never been demonstrated in any mammal that polyspermic zygotes can develop normally to term after removal of the supernumerary male pronucleus. Our study was undertaken to test the developmental potential of polyspermic zygotes corrected by micromanipulation. Mouse oocytes were inseminated zona-free, and polyspermic zygotes were manipulated so as to remove one of the two male pronuclei. Surviving embryos were then observed for further development in vitro and after transfer into pseudopregnant females. Of 58 zygotes manipulated, 18 developed to the blastocyst stage and were transferred. Five animals (two male and three females) were born. The agouti coat colour marker confirmed the genotypes of the gametes. All five animals developed to normal-appearing adults, and all five produced at least 10 normal offspring. One adult founder animal was karyotyped and found to have a normal chromosome complement. These results demonstrate for the first time that a mammalian egg that has undergone polyspermic fertilization can develop normally after restoration of the diploid state by micromanipulation. Accordingly, the results provide impetus for attempting to rescue polyspermic human embryos.

Animals↗

Constitutive activation of phototransduction by K296E opsin is not a cause of photoreceptor degeneration.

The missense mutation Lys-296-->Glu (K296E) in the rhodopsin gene produces an opsin with no chromophore binding site and therefore is not activated by light. Nevertheless, the mutant opsin constitutively activates transducin in vitro and causes photoreceptor degeneration in vivo, possibly by continuously activating the phototransduction cascade, analogous to constant exposure to environmental light. We studied the K296E mutation in eight lines of transgenic mice. Each line developed photoreceptor degeneration with the rate of degeneration increasing monotonically as the ratio of mutant:wild-type opsin mRNA increased. At no time in the course of degeneration was there endogenous light adaptation in the retina as measured by the electroretinogram. The mutant opsin was found to be invariably phosphorylated and stably bound to arrestin. Light-independent activation of transducin was demonstrated only after the removal of arrestin and dephosphorylation of K296E opsin. Thus, K296E opsin in vivo does not activate the phototransduction cascade because it is shut off by photoreceptor inactivation mechanisms. Our data show that the K296E mutation does not cause photoreceptor degeneration by continuous activation of phototransduction.

Animals↗

Transgenic mice expressing an altered murine superoxide dismutase gene provide an animal model of amyotrophic lateral sclerosis.

Amyotrophic lateral sclerosis is a progressive neurodegenerative disorder primarily involving motoneurons. A subset of individuals with familial autosomal dominant forms of the disease have mutations of the copper/zinc superoxide dismutase (Cu/Zn SOD, SOD-1) gene, which encodes a ubiquitously expressed enzyme that plays a key role in oxygen free radical scavenging. This observation suggests that altered or reduced SOD-1 activity may play a role in the neurodegenerative process. To explore this possibility further, we have introduced a mutation into the mouse SOD-1 gene that corresponds to one of the changes found in the human gene in familial amyotrophic lateral sclerosis. Integration and expression of this mouse gene in transgenic mice was identified by the presence of a unique restriction enzyme site in the transgene coding sequence generated by introduction of the mutation. We report here that high expression of this altered gene in the central nervous systems of transgenic mice is associated with an age-related rapidly progressive decline of motor function accompanied by degenerative changes of motoneurons within the spinal cord, brain stem, and neocortex. These findings indicate a causative relationship between altered SOD activity and motoneuron degeneration. Moreover, biochemical studies indicate normal levels of total SOD activity in transgenic mouse tissues, results that indicate that the neurodegenerative disorder does not result from a diminution of activity and, as such, represents a dominant "gain of function" mutation.

Age Factors↗

Failed fertilization in vitro: second day micromanipulation of oocytes versus reinsemination.

OBJECTIVE: To compare routine reinsemination with 2nd day micromanipulation in patients with poor day 1 fertilization. DESIGN: A retrospective review of patient records. SETTING: The Mount Sinai Medical Center Assisted Reproductive Technologies Program. PARTICIPANTS: Patients undergoing IVF-ET who had poor fertilization (< 35%) with standard insemination and underwent second day reinsemination of oocytes (group I, n = 84) compared with patients who underwent 2nd day micromanipulation with subzonal insemination (group II, n = 12). MAIN OUTCOME MEASURES: Fertilization rate, cleavage rate, number of embryo transfers, and pregnancy rate. RESULTS: Fertilization rate and cleavage rate were significantly higher in group II patients. Pregnancies per transfer were similar between groups I (3/21, 14.3%) and II (0/9, 0%). Second day fertilization was possible in 9 of 12 group II patients, and fertilization rate was higher than day 1 in all nine, however, only 50% achieved cleavage, and none achieved pregnancy. CONCLUSIONS: Although micromanipulating oocytes that fail to fertilize may identify occult male factor infertility, may help the clinician plan future cycles, and may result in fertilization and even transfer of embryos in some cycles, there were no pregnancies in our series, and, for now, the clinical efficacy of this procedure remains in question.

Cleavage Stage, Ovum↗

Penetration of hamster oocytes by human sperm in an in vitro fertilization microchamber after insemination with unprocessed semen.

OBJECTIVE: To determine if unprocessed human spermatozoa could capacitate in an IVF microchamber. DESIGN: Semen was loaded into an IVF microchamber with zona-free hamster oocytes, and a hamster penetration test was performed. SETTING: Medical School basic research laboratory. PATIENTS: Men who provided sperm for other laboratory tests. INTERVENTIONS: None. MAIN OUTCOME MEASURES: Penetration of zona-free hamster oocytes by human sperm. RESULTS: In 12 of 19 sperm samples, hamster egg penetration was detected. In most negative cases other measures of sperm function suggested that the SPA might be compromised. CONCLUSIONS: Positive hamster oocyte penetration after loading of unprocessed semen into an IVF microchamber indicates that the chamber supports sperm capacitation. Use of such microchambers thus might reduce or eliminate many steps in sperm processing.

Animals↗

Delayed morbidity and mortality of albumin/SV40 T-antigen transgenic mice after insertion of an alpha-fetoprotein/herpes virus thymidine kinase transgene and treatment with ganciclovir.

The alpha-fetoprotein (AFP) gene is normally expressed in fetal liver and transcriptionally silent in adult tissues, but can be abnormally reactivated in hepatocellular carcinoma (HCC). We linked 7.6 kb of 5'-flanking DNA from the mouse AFP gene to the herpes simplex virus (HSV) thymidine kinase gene (tk), and a line of transgenic mice was produced that expressed TK in a pattern similar to endogenous AFP. When these AFP/tk transgenic mice were crossed to another transgenic line that develops multifocal HCC due to expression of a SV40 large T-antigen transgene under regulation of the albumin promoter/enhancer complex, a significant delay of tumor progression could be achieved by administration of ganciclovir (GCV), a cytotoxic compound that is a substrate for phosphorylation by viral, but not mammalian, TK. Control animals carrying only the tk gene were unaffected by GCV treatment. These results illustrate the feasibility of prophylactic gene therapy for ablation of cancer, utilizing a strategy in which the tk gene is regulated by a promoter expected to be active only in tumor cells.

Albumins↗

Infertile couples with normal counts who require subzonal sperm insertion possess a fertility defect that affects zona pellucida penetration.

The results of subzonal sperm insertion (SUZI) have been retrospectively analysed in a subset of patients with normal sperm counts who were found to require SUZI because of poor or absent fertilization of zona-intact oocytes. This patient group is of particular interest because male factor-related infertility cannot be due to insufficient numbers of spermatozoa reaching the oocytes. Thus, failed fertilization can be attributed to deficiencies in one or more steps in the fertilization process, and SUZI provides a method of distinguishing defects of zona pellucida penetration from gamete fusion. A total of 26 such patients were treated identically to and concurrently with a much larger group of SUZI candidates who typically suffered from oligozoospermia, and fertilization results were compared. Fertilization rates after SUZI were higher in patients with normal counts than in oligozoospermic patients (51 and 26% respectively), indicating that the proportion of spermatozoa capable of fusing with the oocyte is the same or higher in the group with normal counts. In addition, nearly all SUZI procedures led to fertilization (23/26), with two out of three failed fertilizations occurring in cases where two or less oocytes were manipulated, results which further indicate that failed fertilization in these patients is not due to a defect at the level of gamete fusion. These findings suggest that infertility in these patients is based upon the inability of the spermatozoa to reach the oolemma and thus, that their fertility defect resides at the step of zona penetration.

Adult↗

Micromanipulation of gametes and embryos.

The procedures described in this chapter are applicable to problems of oogenesis, fertilization, and early development. Many important procedures have not been described (e.g., pronuclear exchange). However, nearly every experimental manipulation thus far published for the mouse either directly involves the techniques included here or is closely related to them. Therefore, if all of the skills outlined in this chapter are successfully mastered, it should be possible to adapt that knowledge to most or all known experimental protocols. Successful establishment of micromanipulation is certain to have a significant and lasting positive impact on nearly any research program in mammalian development.

Animals↗