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Biomedical subjects

M J FitzGerald

Publications and source records attributed to M J FitzGerald.

At least 19 recordsLinked to original sources

Pelvic digit: an uncommon developmental anomaly.

The radiological features of seven cases of pelvic digit discovered incidentally on plain radiographs are described and differentiation from other causes of new bone formation is discussed. Its recognition as a benign anomaly is important to avoid unnecessary investigation or intervention. An embryological theory of development of pelvic digit is proposed.

Adult↗

Differential effects of the widely expressed dMax splice variant of Max on E-box vs initiator element-mediated regulation by c-Myc.

dMax, a naturally occurring splice variant of the Myc binding protein Max, lacks the DNA binding basic region and helix 1 of the Helix-Loop-Helix domain; dMax interacts with c-Myc in vitro and in vivo, and inhibits E-box Myc site driven transcription in transient transfection assays. Here we have investigated the expression, function and interactions of dMax. RT/PCR analyses detected dmax mRNA in multiple tissues of the developing, newborn and adult mouse. Functionally, dMax reduced the ability of c-Myc to cooperate with the progression factor A-Myb to promote S phase entry of quiescent smooth muscle cells. In contrast, dMax failed to ablate inhibition of initiator element (Inr)-mediated transcription by c-Myc in Jurkat T cells. In in vitro protein:protein association assays, dMax interacted with c-Myc, N-Myc, L-Myc, Mad1, Mxi1, Mad3 and Mad4, but not with itself or wild-type Max. These interactions required an intact leucine zipper. Inhibition of E-box-mediated transactivation by induction of dMax overexpression resulted in apoptosis of WEHI 231 B cells. Thus, dMax is a widely expressed, naturally occurring protein, with the capacity to bind most members of the Myc/Max superfamily; dMax has little effect on Inr-mediated repression by c-Myc, but can significantly decrease E-box-mediated events promoting proliferation and cell survival.

Animals↗

Inhibition of NF-kappa B activity induces apoptosis in murine hepatocytes.

Recently we have demonstrated that inhibition of the nuclear factor (NF)-kappa B/Rel family of transcription factors induces apoptosis of B cells. Interestingly, mice lacking the relA gene encoding the p65 subunit of NF-kappa B exhibit embryonic lethality at days 15 to 16 of gestation, accompanied by massive destruction of liver via apoptosis. To determine whether p65 protein plays a direct role in hepatocyte survival, we employed a nontransformed murine hepatocyte (NMH) cell line, which maintains to a high degree the differentiated hepatocyte phenotype. Exponentially growing NMH cells were found to possess a constitutive level of functional classical (p50/p65) NF-kappa B as assayed by electrophoretic mobility shift analysis, antibody supershift, and transient transfection assays. Treatment of NMH cells with the proteasome inhibitor lactacystin, which prevents degradation of the NF-kappa B inhibitor proteins I kappa B, induced apoptosis. Direct inhibition of the endogenous NF-kappa B activity by microinjection of NMH cells with purified specific inhibitor I kappa B-alpha-glutathione-S-transferase fusion protein or an antibody against p65 protein induced apoptosis. These findings suggest that expression of NF-kappa B/Rel activity in murine hepatocytes acts directly to promote survival of these cells and suggest that apoptosis observed in hepatocytes of mice lacking relA is a direct effect of p65 deficiency.

Acetylcysteine↗

Nuclear factor-kappaB/Rel blocks transforming growth factor beta1-induced apoptosis of murine hepatocyte cell lines.

Treatment of hepatocytes with transforming growth factor beta1 (TGF-beta1) induces growth arrest, which is followed by extensive cell death by apoptosis. Previously, we found that TGF-beta1 down-modulates nuclear factor (NF)-kappaB/Rel activity in murine B cell lymphomas, inducing apoptosis. Furthermore, p65 (RelA)-deficient mice died during gestation due to apoptosis of liver cells. Here we have explored the effects of TGF-beta1 on hepatocytes, using two untransformed murine hepatocyte cell lines, AML-12 and NMH, which constitutively express classical NF-kappaB. TGF-beta1 treatment caused increased NF-kappaB binding that was followed by a dramatic decrease in NF-kappaB levels that preceded apoptosis. Ectopic c-Rel expression ablated apoptosis induced by TGF-beta1. The down-regulation in NF-kappaB activity correlated with elevated IkappaB-alpha expression due to hypophosphorylation and increased IkappaB-alpha protein stability. Thus, NF-kappaB factor expression acts directly to promote liver cell survival. Furthermore, these findings characterize a novel signaling pathway for TGF-beta1 in epithelial cells involving down-regulation of NF-kappaB/Rel factors activity through posttranslational modification of IkappaB-alpha protein.

Animals↗

Inhibition of NF-kappaB/Rel induces apoptosis of murine B cells.

Apoptosis of the WEHI 231 immature B cell lymphoma line following membrane interaction with an antibody against the surface IgM chains (anti-IgM) is preceded by dramatic changes in Nuclear Factor-kappaB (NF-kappaB)/ Rel binding activities. An early transient increase in NF-kappaB/Rel binding is followed by a significant decrease in intensity below basal levels. Here we have explored the role of these changes in Rel-related factors in B cell apoptosis. Treatment of WEH1 231 cells with N-tosyl-L-phenylalanine chloromethyl ketone (TPCK), a protease inhibitor which prevents degradation of the inhibitor of NF-kappaB (IkappaB)-alpha, or with low doses of pyrrolidinedithiocarbamate (PDTC) selectively inhibited NF-kappaB/Rel factor binding and induced apoptosis. Bcl-XL expression protected WEHI 231 cells from apoptosis induced by these agents. Microinjection of WEHI 231 cells with either IkappaB-alpha-GST protein or a c-Rel affinity-purified antibody induced apoptosis. Ectopic c-Rel expression ablated apoptosis induced by TPCK or anti-IgM. Treatment of BALENLM 17 and A20 B lymphoma cells or normal murine splenic B lymphocytes with either TPCK or PDTC also resulted in apoptosis. These findings indicate that the drop in NF-kappaB/Rel binding following anti-IgM treatment activates apoptosis of WEHI 231 cells; furthermore, they implicate the NF-kappaB/Rel family in control of apoptosis of normal and transformed B cells.

Animals↗

Inhibition of c-myc expression induces apoptosis of WEHI 231 murine B cells.

Treatment of WEHI 231 immature B-lymphoma cells with an antibody against their surface immunoglobulin (anti-Ig) induces apoptosis and has been studied extensively as a model of B-cell tolerance. Anti-Ig treatment of exponentially growing WEHI 231 cells results in an early transient increase in c-myc expression that is followed by a decline to below basal levels; this decrease in c-myc expression immediately precedes the induction of cell death. Here we have modulated NF-kappaB/Rel factor activity, which regulates the rate of c-myc gene transcription, to determine whether the increase or decrease in c-Myc-levels mediates apoptosis in WEHI 231 cells. Addition of the serine/threonine protease inhibitor N-tosyl-L-phenylalanine chloromethyl ketone (TPCK), which blocks the normally rapid turnover of the specific inhibitor of NF-kappaB/Rel IkappaBalpha in these cells, caused a drop in Rel-related factor binding. TPCK treatment resulted in decreased c-myc expression, preventing the usual increase seen following anti-Ig treatment. Whereas inhibition of the induction of c-myc expression mediated by anti-Ig failed to block apoptosis, reduction of c-myc expression in exponentially growing WEHI 231 cells induced apoptosis even in the absence of anti-Ig treatment. In WEHI 231 clones ectopically expressing c-Myc, apoptosis induced by treatment with TPCK or anti-Ig was significantly diminished and cells continued to proliferate. Furthermore, apoptosis of WEHI 231 cells ensued following enhanced expression of Mad1, which has been found to reduce functional c-Myc levels. These results indicate that the decline in c-myc expression resulting from the drop in NF-kappaB/Rel binding leads to activation of apoptosis of WEHI 231 B cells.

Animals↗

Rapid DNA binding by nuclear factor kappa B in hepatocytes at the start of liver regeneration.

Liver regeneration after two-thirds partial hepatectomy (PH) is a process in which quiescent, fully differentiated hepatocytes rapidly reenter the cell cycle and eventually divide until the original liver mass is restored. Although the exact nature of the growth-initiating signals is unknown, enhanced expression of growth-related genes has been detected during the first hour after operation. This suggests that activation of transcriptional and posttranscriptional regulatory factors is likely to be a very early event in liver regeneration. Here we report the rapid, transient induction of DNA binding by nuclear factor (NF)-kappa B (p50/p65 heterodimer) and p50 homodimers within 30 min after PH. We also detected binding of post-hepatectomy factor. NF-kappa B binding peaks at 1 h after PH before declining and is not induced by sham operation. Liver cell separation studies indicated that the binding activation occurs in hepatocytes, a conclusion further supported by cell culture studies using the hepatocyte cell line AML-12. Furthermore, studies with the liver epithelial cell line LE-6 indicated that these DNA-binding activities are mitogen inducible. One-third hepatectomy, a procedure which primes hepatocytes to respond to growth factors, also induced NF-kappa B binding. We also found that tumor necrosis factor alpha, which may be involved in the control of liver regeneration, rapidly induced NF-kappa B DNA-binding activities in intact animals, similar to those induced by PH. These results suggest that NF-kappa B binding may play a role in making hepatocytes competent to proliferate.

Animals↗

Innervation of the tylotrich-touch dome complexes in rat skin: changing patterns during postnatal development.

The tylotrich-touch dome complexes of the rat were studied in detail at thoracic level, with two objectives: to follow the pattern of innervation of the individual complexes from birth to maturity and to determine the extent of overlap of the segmental nerves supplying them. Techniques included light and electron microscopy and histological observations following section of intercostal nerves. The touch domes were nearly always supplied from a single stem axon; as expected, their terminals increased in number in association with the differentiation of target Merkel cells from the epidermis. In general, they were supplied from the nearest segmental nerves. The tylotrich follicles were each supplied by several stem fibres. The number of palisade terminals applied to the epithelial root sheaths reached a maximum during the 2nd and 3rd postnatal weeks and declined during the following 2 wk. This overshoot can be regarded as another example of hyperinnervation found in the juvenile peripheral nervous system. During the period of decline, the stem fibres extended their territory, resulting in considerable overlap of the territories of the segmental nerves. By the beginning of the 8th week, overlap was relatively scanty, with an irregular distribution.

Animals↗

Transforming growth factor-alpha expression during liver regeneration after partial hepatectomy and toxic injury, and potential interactions between transforming growth factor-alpha and hepatocyte growth factor.

Transforming growth factor-alpha and hepatocyte growth factor are important stimulators of hepatocyte proliferation. In this series of experiments we sought to measure the expression of transforming growth factor-alpha mRNA by hepatocytes in response to toxic liver injury produced by carbon tetrachloride or galactosamine and to perform a more detailed analysis of transforming growth factor-alpha expression after partial hepatectomy. We also explored the interactions of transforming growth factor-alpha and hepatocyte growth factor in their effects on hepatocytes in vitro and tested the ability of these factors to stimulate endogenous transforming growth factor-alpha production by hepatocytes. In previous work we have used oligonucleotide probes to measure transforming growth factor-alpha mRNA expression after partial hepatectomy. In this study we used a rat transforming growth factor-alpha cDNA probe and found that the level of liver transforming growth factor-alpha mRNA increases 4 hr after partial hepatectomy, shows peak expression at 18 hr and returns to the normal level by 36 to 48 hr. Measurement of the corresponding peptide in the liver by means of radioimmunoassay shows that the level of transforming growth factor-alpha rises by 12 hr, peaks at 24 hr and remains significantly increased at 48 hr compared with the levels in sham-operated rats. Carbon tetrachloride and galactosamine are known to produce different patterns of acute liver injury, with maximal hepatocyte DNA synthesis at 48 hr and 5 days, respectively. After carbon tetrachloride administration the profiles of the transforming growth factor-alpha and hepatocyte growth factor mRNA expression are similar, each showing two peaks: the first at 12 hr and the second at 48 hr. In contrast, after galactosamine-induced liver injury the expression patterns of transforming growth factor-alpha and hepatocyte growth factor mRNAs differ: hepatocyte growth factor shows a major peak at 24 hr, with a smaller increase at 5 days, whereas transforming growth factor-alpha begins to increase after 2 days, with a single peak occurring at 5 days. In primary hepatocyte cultures, transforming growth factor-alpha and hepatocyte growth factor appear to have complementary effects. The maximal hepatocyte nuclear labeling index induced by hepatocyte growth factor was 42%; the addition of transforming growth factor-alpha increased this to 74%. Exogenous transforming growth factor-alpha, but not hepatocyte growth factor, stimulates the production of the transforming growth factor-alpha peptide by hepatocytes.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Experimental histological evidence for a dual motor pathway from the hypoglossal nucleus to lingual muscles in the guinea pig.

By combining the results of retrograde cell labelling with those of anterograde degeneration after nerve sectioning, it was shown that some axons from the most caudal neurones of the hypoglossal nucleus emerge in the first cervical nerve and join the hypoglossal nerve in the neck. These indirect hypoglossal axons are distributed to the intrinsic muscles of the tongue. The observed collaboration between the hypoglossal and first cervical nerves in supplying the lingual muscles has a plausible basis of explanation in phylogeny.

Animals↗

Fibre composition of the hypoglossal nerve in the rat.

The fibre composition of the hypoglossal nerve of the rat has been investigated by means of (a) retrograde neuronal labelling following application of fluorescent dyes to the XII nerve and/or to the ansa cervicalis, lingual nerve and facial nerve; and (b) anterograde fibre degeneration in silver-impregnated sections of the tongue following interruption of one or more of these nerves. A search for neuromuscular spindles was carried out in coronal paraffin sections of eight control tongues. The ansa cervicalis was found to make three significant contributions to the distal XII trunk: one set of axons originated in the medial subnucleus of the ventral tier of the XII nucleus and contributed to the motor innervation of intrinsic lingual muscles: a second set originated in the lateral subnucleus of the ventral tier and contributed to the motor innervation of the posterior part of the geniohyoid muscle. A third set, having cell bodies in the two uppermost cervical ganglia, provided proprioceptive afferents to the tongue and geniohyoid. A small number of somata in the caudal end of the facial nucleus contributed axons to the XII nerve prior to its emergence from the medulla oblongata. The salivatory nucleus (pons) also contributed pre-emergence fibres, which supplied autonomic ganglia destined for the supply of small arteries in the tongue. The fibre composition of the XII trunk was completed by an afferent contribution from the jugulo-nodose ganglion complex of the vagus nerve, and by sympathetic fibres from the superior cervical ganglion. In control material, eight neuromuscular spindles were detected in five out of eight tongues. Six occupied the longitudinalis inferior, one the hyoglossus, and one the genioglossus. All eight were close to the surface of the tongue base.

Amidines↗

Spontaneous complete clefting of the palates in a mouse fetus: a study by scanning electron microscopy and serial section reconstruction.

A 15 day mouse fetus having spontaneous complete clefting of the primary and secondary palates was studied in comparison with its normal litter mates and with normal 14 day fetuses. Specimens were studied by scanning electron microscopy at various stages of microdissection, by light microscopy of thin serial sections and by serial section reconstruction of the anterior chondrocranium of the clefted specimen and one of its normal litter mates. Differentiation of tooth and bone tissue was slightly retarded in the clefted fetus but paranasal and oral landmarks, though distorted, were present. The clefted fetus had a smaller angle between cranial base and nasal capsule and a marked discontinuity between the primary and secondary palates. Cell surfaces on the medial edge of the secondary palate in the clefted fetus resembled cell surfaces of oral areas that do not normally fuse, i.e. they are polygonial, flat and bear few surface projections in contrast to the normal 14 day condition where these cells are spindle shaped, convex and have many microvilli. The observations support the concepts that clefting of the secondary palate is consequential to clefting of the primary palate, that maldevelopment of neural crest mesenchyme is not necessarily a contributing factor, that clefting of the primary and secondary palates is associated with a shorter anterior-posterior dimension of the head and that when fusion of palatal shelves fails to occur the cells of the medial edges modulate in the direction of a generalized type of surface epithelium.

Animals↗

The innervation of hyperplastic epidermis in the mouse: a light microscopic study.

The innervation of the skin of hairless mice has been studied following induction of epidermal hyperplasia by physical and chemical methods. Physical stimuli comprised ultraviolet irradiation, heat, wounding, and friction. Effective chemicals included benzene, carbon tetrachloride, chloroform, creosote, formaldehyde, hexadecane, hydrobromic acid, sodium lauryl sulfate, and turpentine. Epidermal hyperplasia, however produced, was associated with growth of sensory nerve fibers into the outer part of the epidermis. Following a single 10-min exposure to an ultraviolet sunalmp at 40 cm, the nerves extended into the epidermis within 24 hr and disappeared during the second week as the epidermis reverted to its normal thickness. Repeated irradiation (until tumors appeared) was accompanied by persistent hyperplasia and neural invasion. Of 32 papillomas examined, intraepithelial nerves were found in 28. The presence and location of nerves in the tumor epithelium were related to the incorporation of tactile hair disc epithelium. The hyperplastic regenerative epithelium at the margins of skin ulcers were also invaded by nerves which sometimes followed the migrating epithelium across the ulcer floor. Since the regenerative epithelium was not directly treated, it was concluded that the proliferation of nervous tissue in response to skin injury was the result of the hyperplasia per se, regardless of the method used to produce it.

Acids↗