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T S Acott

Publications and source records attributed to T S Acott.

At least 37 records · Page 2Linked to original sources

Early changes in matrix metalloproteinases and inhibitors after in vitro laser treatment to the trabecular meshwork.

Extracellular matrix turnover in the trabecular meshwork may play a role in regulating aqueous humor outflow. Laser trabeculoplasty is a common treatment for open-angle glaucoma. The mechanism of this treatment is not understood. We investigated changes in the levels and expression of the matrix metalloproteinases and their tissue inhibitors (TIMPs) in this tissue using cultured human anterior segment explants and standard clinical-parameter laser treatment. Medium gelatinase A activity levels are relatively high for sham-treated controls and are not changed dramatically following laser treatment. Medium gelatinase B and stromelysin activity levels are low in sham-treated explants and increase significantly by 24 h after treatment. TIMP1 levels, as assessed by immunoblots of Western transfers, are initially low. However, by 24 h TIMP1 levels have increased significantly. Using semi-quantitative reverse transcription and the polymerase chain reaction, mRNA levels of stromelysin, gelatinase B and TIMP1 are shown to increase after laser treatment, while gelatinase A and TIMP2 remain relatively constant. The increases in trabecular stromelysin and gelatinase B in response to laser trabeculoplasty may have important implications for the mechanism of action of this treatment for open-angle glaucoma.

Adolescent↗

Regulation of the levels of human trabecular matrix metalloproteinases and inhibitor by interleukin-1 and dexamethasone.

PURPOSE: The regulation of the trabecular meshwork's extracellular matrix is poorly understood and may involve a family of secreted proteinases, the matrix metalloproteinases. Because the trabecular extracellular matrix has been hypothesized to affect intraocular pressure, an evaluation was made of the ability of two cellular modulators to change the levels of matrix metalloproteinases in the medium of human trabecular meshwork organ explant cultures. METHODS: Trabecular explant cultures were exposed to recombinant human interleukin-1 alpha, dexamethasone, or combinations thereof for 72 hours and the culture medium was collected for analysis. Levels of stromelysin, the 72 kD gelatinase A and the 92 kD gelatinase B enzyme activity in this culture medium were assayed by substrate gel electrophoresis (zymography). Stromelysin and the tissue inhibitor of metalloproteinases (TIMP1) media protein levels were analyzed using immunoblots of Western transfers. RESULTS: Culture medium of unstimulated explants contains significant levels of the 72 kD gelatinase A and only low levels of the 92 kD gelatinase B, stromelysin, and TIMP1. Interleukin-1 alpha produces a dose-dependent several-fold elevation of gelatinase B, stromelysin, and TIMP1 without changing gelatinase A levels. Dexamethasone produces no significant change in gelatinase A and only small increases in stromelysin, gelatinase B, and TIMP1. When added together, dexamethasone antagonizes the interleukin-1 alpha-induced increase of stromelysin, gelatinase B, and TIMP1 in a dose-dependent manner. CONCLUSION: These modulators may be useful in analyzing the roles of this enzyme family in normal trabecular homeostasis and perhaps in the etiology of glaucoma.

Aged↗

Interaction of the regulatory subunit (RII) of cAMP-dependent protein kinase with RII-anchoring proteins occurs through an amphipathic helix binding motif.

The type II cAMP-dependent protein kinase is localized to specific subcellular environments through the binding of the regulatory subunit (RII) dimer to RII-anchoring proteins. Computer-aided analysis of secondary structure, performed on four RII-anchoring protein sequences (the microtubule-associated protein 2, P150, and two thyroid proteins Ht 21 and Ht 31), has identified common regions of approximately 14 residues which display high probabilities of forming amphipathic helices. The potential amphipathic helix region of Ht 31 (Leu-Ile-Glu-Glu-Ala-Ala-Ser-Arg-Ile-Val-Asp-Ala-Val-Ile) lies between residues 494 and 507. A bacterially expressed 318-amino acid fragment, Ht 31 (418-736), containing the amphipathic helix region, was able to bind RII alpha. Site-directed mutagenesis designed to disrupt the secondary structure in the putative binding helix reduced binding dramatically. Specifically, substitution of proline for Ala-498 significantly diminished RII alpha binding, and similar mutation of Ile-502 or Ile-507 abolished interaction. Mutation of Ala-522 to proline, which is located outside the predicted amphipathic helix region, had no effect on RII alpha binding. These data suggest that anchoring proteins interact with RII alpha via an amphipathic helix binding motif.

A Kinase Anchor Proteins↗

Expression of matrix metalloproteinases and inhibitor by human trabecular meshwork.

Extracellular matrix (ECM) turnover and remodeling are initiated, at least in part, by the regulated secretion of members of a family of matrix metalloproteinases. Human and bovine trabecular mesh-work in culture secrete interstitial collagenase, both the 72- and the 92-kD forms of type IV collagenase (gelatinases) and stromelysin, and the tissue inhibitor of metalloproteinases (TIMP). These proteinases and TIMP were identified by immunoblotting western transfers from sodium dodecylsulfate-polyacrylamide gel electrophoresis (SDS-PAGE) using several specific antiprotein and antipeptide polyclonal antibodies. Gelatinase and stromelysin enzymatic activities were also analyzed by substrate SDS-PAGE, in which proteinase substrates were polymerized into the gels before electrophoresis to allow subsequent activity assays. These matrix metalloproteinases and TIMP are secreted at low basal levels into trabecular culture medium; their secretion levels are increased several-fold by treatment of the cultures with the phorbol mitogen. 12-O-tetradecanoylphorbol-13-acetate (TPA). Characteristics of the trabecular matrix metalloproteinases and TIMP are similar to those secreted by numerous other tissues, including the retinal pigment epithelium. These proteinases may serve an important role in the maintenance and regulation of the trabecular extracellular matrix and, subsequently, of the aqueous humor outflow pathway in normal and glaucomatous eyes.

Animals↗

The phosphorylation of a putative sperm microtubule-associated protein 2 (MAP2) is uniquely sensitive to regulation.

We have identified a bovine sperm phosphoprotein, pp255 (Mr = 255,000), which reacts strongly and specifically with an antibody to rat brain microtubule-associated protein 2 (MAP2). The phosphorylation state of this putative sperm MAP2 in intact bovine epididymal sperm is uniquely sensitive to regulation by intracellular pH (pHi), calcium, isobutyl-3-methylxanthine (MIX), H-8, and fluoride. Increasing pHi by approximately 0.4 units or exposure to calcium (0.1 microM with the ionophore A23187) or to the protein kinase inhibitor, H-8, decreases sperm MAP2 phosphorylation. Decreasing sperm pHi or exposure to MIX or fluoride increases MAP2 phosphorylation. Numerous other detectable sperm phosphoproteins are either unresponsive to most of these modulators or are considerably less sensitive to them. This phosphoprotein co-sediments with the particulate sperm heads during subcellular fractionation, and is not detectable in other sperm fractions. Two-dimensional electrophoresis separates sperm MAP2 into multiple species, indicative of varying degrees of phosphorylation. Sperm MAP2 is phosphorylated on serine residues, changes electrophoretic mobility slightly on one-dimensional gels with changes in phosphorylation levels, and exhibits the highest specific radioactivity of any sperm phosphoprotein observed. The phosphorylation state of sperm MAP2 can be uncoupled from sperm motility levels under several conditions. The co-localization of sperm MAP2 with the head fraction and the unique sensitivity of its phosphorylation level to modulators, which are known to regulate capacitation and the acrosome reaction, suggest that sperm MAP2 phosphorylation may be an intermediate step in the regulation of one or both of these sperm processes.

1-Methyl-3-isobutylxanthine↗

Glycosaminoglycans of human trabecular meshwork in perfusion organ culture.

The synthetic profile of glycosaminoglycans (GAGs) of human trabecular meshwork in perfusion organ culture was studied in a series of 34 human eyes. The anterior segments of these eyes were cultured for periods of two to 28 days and received medium containing 3H-glucosamine and 35S-sulfate during the final 48 hours of culture. The meshwork was then dissected and the GAGs isolated and subjected to sequential enzyme digestion. Active labelling of hyaluronic acid, chondroitin sulfate, dermatan sulfate, keratan sulfate, and heparan sulfate was found in all time periods. Eyes cultured seven and 14 days had similar incorporation profiles to "fresh" eyes (cultured 48 hours to allow for labelling). Eyes cultured 21 days showed an increase in dermatan sulfate labelling and a slight decrease in keratan sulfate labelling when compared with "fresh" eyes. Light microscopic autoradiography confirmed the trabecular meshwork incorporation of the radiolabelled precursors at all time periods. Thus, the trabecular meshwork remains metabolically active and GAG synthetic profiles remain reasonably similar to fresh eyes for up to three weeks in a perfusion organ culture system. This system may serve as a model for future studies of human trabecular meshwork GAGs.

Adult↗

The effect of dexamethasone on glycosaminoglycans of human trabecular meshwork in perfusion organ culture.

The effect of dexamethasone treatment on glycosaminoglycans (GAG) in the human trabecular meshwork was studied by placing 20 pairs of eyes in perfusion organ culture. One eye received 550 nM dexamethasone in addition to culture medium; the fellow eye received culture medium only. 3H-glucosamine and 35S-sulfate were added to the medium for the final 48 hr of culture. The meshwork was then dissected, and the GAGs were isolated and subjected to sequential enzymatic degradation. Active labeling of hyaluronic acid, chondroitin sulfate, dermatan sulfate, keratan sulfate, and heparan sulfate was found in both control and steroid-treated eyes. Dexamethasone-treated eyes had an average 92% increase in the 3H-glucosamine incorporation rate in the undigestible GAG residue fraction after 14-21 days treatment (20.6% versus 10.7%, P = 0.03). This change was not apparent in eyes treated for 7 days. In this preliminary study, dexamethasone appeared to cause a time-dependent increase in the undigestible GAG incorporation profile in human trabecular meshwork.

Adult↗

Expression of matrix metalloproteinases and inhibitor by human retinal pigment epithelium.

Extracellular matrix turnover is initiated, at least in part, by the regulated secretion of members of a family of matrix metalloproteinases. The authors show that interstitial collagenase, stromelysin, two gelatinases (the 72-kD and 92-kD type IV collagenases), and the tissue inhibitor of metalloproteinases (TIMP) are secreted into the culture medium of human retinal pigment epithelium (RPE). These enzymes and their inhibitor were identified by probing immunoblots of western transfers with specific polyclonal antibodies that were made against these proteins or against peptides containing unique sequences from these proteins. Stromelysin and the gelatinases are also active against substrates that are polymerized into polyacrylamide gel before electrophoresis and require metal ions (probably zinc and/or calcium) for activity. The phorbol mitogen, 12-tetradecanoylphorbol-13-acetate, differentially increases the levels of these metalloproteinases and TIMP found in retinal pigment epithelium culture medium with stromelysin and the 92-kD type IV collagenase responding most strongly and TIMP actually decreasing in certain cases. Additional changes in metalloproteinase profiles are observed after approximately 20 passage of several RPE lines in culture. Modulation of extracellular matrix turnover by changing RPE secretion of these matrix metalloproteinases and their TIMP, may play a central role in the normal function and in the pathology of the retina.

Blotting, Western↗

Trabecular repopulation by anterior trabecular meshwork cells after laser trabeculoplasty.

To study further the transient increase in trabecular cell division within the first two days after laser trabeculoplasty in human corneoscleral explant organ cultures, we used a pulse-chase protocol in which immediately after laser treatment 3H-thymidine was added to the culture medium for 48 hours (the pulse period). Fresh medium without radiolabel was then added for variable times (the chase period) before termination of the experiment. Autoradiography was used to follow changes in the regional distribution of the cells that divided during the pulse period and had 3H-thymidine-labeled DNA. Laser-treated explants, evaluated after a pulse with no chase, showed a fourfold increase in cell division (P less than .001) over nontreated controls. Nearly 60% of this cell division was localized to the anterior, nonfiltering region of the trabecular meshwork where it inserts into the cornea beneath Schwalbe's line. Trabecular cell division in other regions of the meshwork was not increased over controls at this time. After seven or 14 days of chase without radiolabel, the regional distribution of radiolabeled cells changed in laser-treated explants but not in controls. By 14 days, only 26% of the labeled cells remained in this anterior insert region, while 60% were found in the region of the burn sites. Macroautoradiography of whole explants corroborated these observations. Our data support the hypothesis that laser trabeculoplasty causes early cell division by a population of cells in the anterior meshwork; these new cells then migrate and repopulate the burn sites over the next few weeks.

Humans↗

Intracellular pH regulates bovine sperm motility and protein phosphorylation.

Bovine sperm in neat caudal epididymal fluid become motile in response to either pH elevation or dilution of the fluid. Buffers containing permeant weak acids at physiologic concentrations are able to mimic these effects of caudal fluid. These observations lead to the hypothesis that a pH-dependent epididymal fluid quiescence factor regulates bovine sperm motility by modulating sperm intracellular pH (pHi). Here we report that sperm pHi, measured with the fluorescent pH probe carboxyfluorescein, increases by approximately 0.4 units in response to either of these motility-initiating manipulations. At least 26 discrete phosphoprotein bands are distinguishable by sodium dodecylsulfate-polyacrylamide gel electrophoresis after incubation of intact caudal sperm with 32PO4. A prominent phosphoprotein, with Mr approximately 255,000 (pp255) and a relatively high specific radioactivity, is reversibly dephosphorylated in response to elevations in pHi that initiate sperm motility. Unlike most of the sperm phosphoproteins, the extraction of pp255 requires reducing agents. This phosphoprotein cosediments with the sperm heads but not the tail, midpiece, soluble, or plasma membrane fractions. No other pHi-dependent phosphorylation changes are apparent in gels of whole sperm extracts. However, subcellular fractionation allows the detection of increased phosphorylation of two plasma membrane phosphoproteins (Mr approximately 105,000 and 97,000) and decreased phosphorylation of another plasma membrane phosphoprotein (Mr approximately 120,000) in response to increasing pHi. This is the first report describing changes in endogenous phosphoproteins from intact motile and nonmotile bovine sperm that are regulated by pHi.

Animals↗

Trabecular cell division after argon laser trabeculoplasty.

The usefulness of argon laser trabeculoplasty (ALT) in the treatment of some patients with glaucoma has been established; yet, the mechanism of ALT is not understood. The hypothesis that the mechanism involves trabecular cell division was examined. Autoradiographic assessment of tritiated thymidine incorporation into trabecular cell DNA in a human corneoscleral explant organ culture system demonstrated a basal level of DNA replication that increased by 180% in the two days immediately after ALT. When labeling was initiated five days after ALT, DNA replication declined to 70% of the control level. The autoradiographic findings were confirmed using biochemical evaluation of tritiated thymidine incorporation into acid-precipitable macromolecules (DNA) in excised trabecular meshwork. One biologic response of the trabecular meshwork after laser trabeculoplasty is a change in the level of ongoing trabecular cell division.

Argon↗

Human trabecular meshwork organ culture: morphology and glycosaminoglycan synthesis.

Human corneoscleral explants were maintained for several weeks in defined, serum-free media. Trabecular cell vitality, as judged by vital stain exclusion, is high for at least one month. Trabecular ultrastructure, as compared to that of fresh eyes, first shows minor cellular and extracellular matrix degradation after 3 weeks in culture. The biosynthetic profiles of trabecular glycosaminoglycans (GAGs) change significantly by 3 weeks in culture. Eyes that are stored at 5 degrees C for up to 48 hr postmortem exhibit changes in trabecular ultrastructure and in GAG profiles; both characteristics return to normal by 7 days in culture. The incorporation pattern of 35S-sulfate and 3H-glucosamine into the GAGs of the trabecular meshwork (TM) is distinct from corneal or scleral incorporation. The relative incorporation of 3H-glucosamine into trabecular GAGs, as determined by sequential enzymatic degradation, is: 22.3% hyaluronic acid (HA), 27.9% chondroitin sulfate (CS), 21.3% dermatan sulfate (DS), 5.9% keratan sulfate (KS), 17.7% heparan sulfate (HS) and 4.9% unidentified material. The relative incorporation of 35S-sulfate into trabecular GAGs is: 0% HA, 32.9% CS, 34.8% DS, 7.7% KS, 13.8% HS and 11.1% into unidentified material. This profile is in good agreement with the profile that was previously obtained for human and nonhuman primate meshworks prior to culture. We conclude that corneoscleral explant organ culture is a useful tool for extracellular matrix studies within a time window from 7 to at least 14 days in culture.

Aged↗

Effects of pH, lactate, and viscoelastic drag on sperm motility: a species comparison.

Little or no motility is observed when sperm from 5 mammalian species are incubated in vitro in their cauda epididymal fluid (CEF). We examined the effects of pH, lactate, and viscoelastic drag on sperm motility to determine whether these factors are responsible for this inhibition of motility. The pHs of CEF from bull, dog, rat, guinea pig, and hamster were 5.8, 6.2, 6.9, 6.9, and 7.2, respectively. The lactate concentration of epididymal semen collected from anesthetized animals ranged from 0.6 to 0.9, but increased almost 10-fold in samples from rats or dogs when measured 2 h postmortem. Increasing the pH of CEF to 7.0 resulted in the initiation of full motility for bull and dog sperm. Suspensions of sperm in buffer at various pHs (from 4.0 to 7.6) produced a sigmoidal motility curve for all species. All species, including bull and dog, showed almost full motility in buffer at a pH equal to the pH of their own CEF. Motility of bull and dog sperm showed greater inhibition with decreasing pH when suspended in CEF instead of buffer. The addition of 15 mM lactate, which has been shown to lower sperm intracellular pH, shifted the motility versus pH curves of all species toward higher pH. In bull and dog the addition of lactate produced a motility profile that was indistinguishable from that in their own CEF. The viscoelastic drag of the CEF of only two species, rat and hamster, was sufficiently high to inhibit sperm motility. We conclude that the low pH of the CEF from bulls and dogs plus the presence of lactate is sufficient to cause inhibition of motility.(ABSTRACT TRUNCATED AT 250 WORDS)

Acid-Base Equilibrium↗

Trabecular meshwork glycosaminoglycans in human and cynomolgus monkey eye.

The glycosaminoglycans (GAGs) extractable from the trabecular meshworks (TM) of human and non-human primate eye have been analyzed by sequential enzymatic degradation and cellulose acetate electrophoresis. For comparison, similar extracts of the cornea, sclera, iris, and ciliary body have also been analyzed. The distribution of glycosaminoglycans in human and in cynomolgus monkey TMs are similar, although not identical. The human TM contains hyaluronic acid (HA), chondroitin-4-sulfate and/or 6-sulfate (CS), dermatan sulfate (DS), keratan sulfate (KS), heparan sulfate (HS), and an unidentified band of Alcian Blue staining material, which is resistant to the enzymes that we used. Based upon quantitation of the Alcian Blue staining intensities of extracted GAGs, which have been corrected by a relative dye-binding factor, the GAGs of the human TM include: 29.0% HA, 14.1% CS, 21.5% DS, 20.3% KS, and 15.0% HS. The cynomolgus monkey trabecular GAGs include: 12.8% HA, 14.3% CS, 15.2% DS, 42.1% KS, and 15.6% HS.

Animals↗

Argon laser trabeculoplasty. Studies of mechanism of action.

The effects of argon laser trabeculoplasty (LTP) on outflow facility, Schlemm's canal morphology, trabecular cellularity, and trabecular glycosaminoglycan composition were determined in 33 pairs of eye-bank human eyes. At two levels of intraocular pressure, measured outflow facility did not immediately drop in response to LTP. Schlemm's canal distention was observed only at 40 mmHg intraocular pressure, where the canal normally tends to collapse. Trabecular cell density was reduced by about 40% in the eyes receiving laser treatment. The organ cultured trabecular meshworks in response to LTP altered their incorporation of 35S-sulfate, compared to controls, suggesting a change in the synthesis or turnover of the extracellular matrix of the trabeculum after trabeculoplasty. At least three potential mechanisms were identified in response to laser trabeculoplasty, including some mechanical distortion of the trabeculum at high intraocular pressures. We also hypothesize that laser trabeculoplasty dislodges some trabecular cells and may stimulate the remaining cells to renew more active synthesis and/or turnover of the trabecular extracellular matrix.

Cell Count↗

Inhibition of bovine spermatozoa by caudal epididymal fluid: I. Studies of a sperm motility quiescence factor.

Spermatozoa from all portions of the bovine epididymis are essentially quiescent when examined in vitro without dilution. However, sperm from the caudal epididymis, particularly the distal portion, develop full motility when they are diluted into seminal plasma or simple isotonic buffers. Dilution of the sperm into neat cauda epididymal fluid (CE fluid) does not result in the initiation of motility. The initiation of motility upon dilution into buffers is complete within 10-20 min, while the inhibition induced by CE fluid is nearly instantaneous. CE fluid concentration, but not sperm concentration, controls sperm motility. Therefore, an inhibitory component of this fluid, but not sperm-sperm interactions, is responsible for the inhibition. CE sperm, which have been diluted into isotonic buffers and are consequently motile, become quiescent when resuspended in CE fluid; thus, this process is fully reversible. No elevations in sperm cyclic AMP levels can be detected concomitant with the induction of motility but high concentrations of cyclic AMP phosphodiesterase inhibitors can overcome the quiescence induced by CE fluid. The inhibitors of CE sperm motility reported for other species, e.g., the high-viscosity mucin, immobilin ; carnitine; calcium; or glycerylphosphorylcholine , do not appear to be of importance in the bovine caudal epididymis. The quiescence produced by bovine CE fluid is strongly dependent upon the extracellular pH; i.e., motility is inhibited at pH 5.5 but not at pH 7.6.

3',5'-Cyclic-AMP Phosphodiesterases↗

Inhibition of bovine spermatozoa by caudal epididymal fluid: II. Interaction of pH and a quiescence factor.

Previous studies (Carr and Acott , 1984) indicate that bovine sperm are maintained in a quiescent state in the caudal epididymis (CE) by a pH-dependent inhibitory factor. Here, we have determined that the pH of bovine CE fluid and of CE semen is approximately 5.8, and that the motility of CE sperm in undiluted CE fluid increases as the pH is elevated. Therefore, the acidity of CE fluid may play a physiological role in the maintenance of sperm quiescence. The changes in sperm motility, in response to changes in the pH of CE fluid, are reversible and rapid. Dilution of CE fluid with buffers at either pH 5.5 or 7.6 produces a much slower initiation of motility. In buffer a significantly lower pH is required to inhibit sperm motility than is required in CE fluid. The apparent pKs for inhibition are 5.3 in buffer and 6.6 in CE fluid. However, the motility of sperm in buffers that contain lactate, shows a pH dependence similar to sperm in CE fluid. That is, lactate inactivates sperm in buffer at pH 5.5 but not at pH 7.6. Lactate, and several other permeant weak acids, have previously been shown to reduce the intracellular pH of bovine sperm and many other types of cells. We show that these permeant weak acids, but not impermeant weak acids, reversibly reduce CE sperm motility in buffer at pH 5.5 but not at pH 7.6. Weak bases, which have previously been shown to elevate intracellular pH, initiate sperm motility in CE fluid. These results suggest that intracellular pH can regulate CE sperm motility and may be the intracellular messenger for the pH-dependent quiescence factor. Although sperm cyclic AMP levels have been previously correlated with motility stimulation, cyclic AMP levels do not change when the pH of CE fluid is elevated, even though full motility is initiated.

Ammonium Chloride↗

Movement characteristics of bovine epididymal spermatozoa: effects of forward motility protein and epididymal maturation.

Movement characteristics of untreated bovine caudal epididymal spermatozoa were compared by high-speed cinemicrography with those of theophylline-activated caput epididymal spermatozoa with and without added forward motility protein (FMP). Comparison of individual movement characteristics clearly established the importance of FMP in converting the nonprogressive motility of theophylline-activated caput sperm into the progressive swimming of mature caudal sperm. Although the total or curvilinear distance traveled in 1 sec by theophylline-activated caput sperm was not changed by the addition of FMP, the linear progression was doubled and the percentage of progressively motile sperm was tripled by this protein. Untreated caudal sperm were 80% motile and theophylline-activated caput sperm were nearly 50% motile; the percentage of motile sperm that were progressive was the same for theophylline-activated caput sperm with FMP and for untreated caudal sperm. Caput sperm without FMP roll infrequently, if at all, but caput sperm with FMP and caudal sperm roll at 4.7 Hz. The beat frequency increases significantly with the addition of FMP and is even higher for caudal sperm. The hydrodynamic power output rises concomitantly with the beat frequency. Perhaps the most striking difference between caput sperm without FMP and those with it is in the swimming paths they follow. Caput sperm without FMP exhibit frequent reversals in direction, or yawing of the sperm heads as they loop back and cross over their tails in an apparently very flexible bending. Their average swimming paths are circles. Caput sperm with FMP and caudal sperm do not show this behavior, but swim in average paths which are linear. The minimum radius of curvature of the tail of caput sperm without FMP is much smaller than that for the other two cell types. These studies clarify the role of FMP in epididymal development of sperm motility.

Animals↗