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Biomedical subjects

M Huber

Publications and source records attributed to M Huber.

At least 19 recordsLinked to original sources

A novel dinucleotide mutation in keratin 10 in the annular epidermolytic ichthyosis variant of bullous congenital ichthyosiform erythroderma.

Annular epidermolytic ichthyosis has recently been delineated as a distinct clinical phenotype within the spectrum of epidermolytic keratinization disorders. The pattern of inheritance of the disorder is consistent with an autosomal dominant mode of transmission. Here we report a second incidence of this disorder in a family with two affected generations. The proband suffered from bullous ichthyosis and had bouts of disease activity associated with the development of numerous annular and polycyclic erythematous, hyperkeratotic plaques on the trunk and the proximal extremities. Histologic examination showed the typical pathology of epidermolytic hyperkeratosis, and ultrastructural analysis revealed abnormal keratin filament networks and tonofilament clumping with a perinuclear distribution. Molecular analysis revealed a novel tandem CG to GA 2-bp mutation in the same allele of keratin 10 in affected individuals, resulting in an arginine to glutamate substitution at residue 83 (R83E) of the 2B helical segment. We conclude that annular epidermolytic ichthyosis should be considered a variant of bullous congenital ichthyosiform erythroderma.

Adult

Missense mutations in keratin 17 cause either pachyonychia congenita type 2 or a phenotype resembling steatocystoma multiplex.

Pachyonychia congenita (PC) is a group of autosomal dominant ectodermal dysplasias in which the main phenotypic characteristic is hypertrophic nail dystrophy. In the Jackson-Lawler form (PC-2), pachyonychia is accompanied by multiple pilosebaceous cysts, natal teeth, and hair abnormalities. By direct sequencing of genomic PCR products, we report heterozygous K17 missense mutations in the same conserved protein motif in a further five PC-2 families (K17 N92S in one familial and three sporadic cases; K17 Y98D in one familial case) confirming that mutations in this gene are a common cause of PC-2. We also show heterozygous missense mutations in K17 (N92H and R94H) in two families diagnosed as steatocystoma multiplex. Mild nail defects were observed in some but not all of these patients on clinical re-evaluation of these families. All the K17 mutations reported here were shown to co-segregate with the disease in the pedigrees analyzed and were excluded from 100 unaffected, unrelated chromosomes by restriction enzyme analysis of K17 genomic PCR products. We conclude that phenotypic variation is observed with K17 mutations, as is the case with other keratin disorders.

Cysts

Tyrosine phosphorylation events during coxsackievirus B3 replication.

In order to study cellular and viral determinants of pathogenicity, interactions between coxsackievirus B3 (CVB3) replication and cellular protein tyrosine phosphorylation were investigated. During CVB3 infection of HeLa cells, distinct proteins become phosphorylated on tyrosine residues, as detected by the use of antiphosphotyrosine Western blotting. Two proteins of 48 and 200 kDa showed enhanced tyrosine phosphorylation 4 to 5 h postinfection (p.i.), although virus-induced inhibition of cellular protein synthesis had already occurred 3 to 4 h p.i. Subcellular fractionation experiments revealed distinct localization of tyrosine-phosphorylated proteins of 48 and 200 kDa in the cytosol and membrane fractions of infected cells, respectively. In addition, in Vero cells infected with CVB3, echovirus (EV)11, or EV12, increased tyrosine phosphorylation of a 200-kDa protein was detected 6 h p.i. Herbimycin A, a specific inhibitor of Src-like protein tyrosine kinases, was shown to inhibit virus-induced tyrosine phosphorylations and to reduce the production of progeny virions. In contrast, in cells treated with the inhibitors staurosporine and calphostin C, the synthesis of progeny virions was not affected. Immunoprecipitation experiments suggested that the tyrosine-phosphorylated 200-kDa protein in CVB3-infected cells is of cellular origin. In summary, these investigations have begun to unravel the effect of CVB3 as well as EV11 and EV12 replication on cellular tyrosine phosphorylation and support the importance of tyrosine phosphorylation events for effective virus replication. Such cellular phosphorylation events triggered in the course of enterovirus infection may enhance virus replication.

Animals

Production of a novel polyketide through the construction of a hybrid polyketide synthase.

The lactone rings of the polyketides platenolide and tylactone are synthesized by condensation of acetate-, proprionate-, and butyrate-derived precursors. A hybrid tylactone/platenolide synthase was constructed to determine if the choice of substrate is programmed by the polyketide synthase and to ascertain if a substrate different than that normally used in the first step of platenolide synthesis could be incorporated into the final polyketide. In this work, we report the successful incorporation of a propionate in place of the acetate normally used in the first step of platenolide synthesis. This result demonstrates that polyketide synthases choose a particular substrate at defined steps and provides strong evidence that substrate choice is programmed by the acyl transferase domain of a large, multifunctional polyketide synthase.

Acyl Coenzyme A

2,2'-Dithiobis(N-ethyl-spermine-5-carboxamide) is a high affinity, membrane-impermeant antagonist of the mammalian polyamine transport system.

We have synthesized 2,2'-dithiobis(N-ethyl-spermine-5-carboxamide) (DESC), its thiol monomer (MESC), and the mixed MESC-cysteamine disulfide (DEASC) as potential inhibitors of polyamine transport in mammalian cells. DESC was the most potent antagonist of spermine transport in ZR-75-1 human breast cancer cells, with Ki values of 5. 0 +/- 0.7, 80 +/- 31, and 16 +/- 3 microM for DESC, MESC, and DEASC, respectively. DESC also strongly blocked putrescine and spermidine uptake in ZR-75-1 cells (Ki = 1.6 +/- 0.5 and 2.7 +/- 1.1 microM, respectively). While DESC and MESC were purely competitive inhibitors of putrescine transport, DEASC was a mixed competitive/noncompetitive antagonist. Remarkably, DESC was virtually impermeant in ZR-75-1 cells despite its low Ki toward polyamine transport. The marked difference in affinity between DESC and MESC was essentially due to the tail-to-tail juxtaposition of two spermine-like structures, suggesting that dimeric ligands of the polyamine transporter might simultaneously interact with more than one binding site. While DESC strongly decreased the initial rate of [3H]spermidine transport, even a 40-fold molar excess of antagonist could not completely abolish intracellular spermidine accumulation. Moreover, as little as 0.3 microM spermidine fully restored growth in ZR-75-1 cells treated with an inhibitor of polyamine biosynthesis in the presence of 50 microM DESC, thus emphasizing the importance of uptake of trace amounts of exogenous polyamines. Thus, reducing the exogenous supply of polyamines with a potent competitive inhibitor may be kinetically inadequate to block replenishment of the polyamine pool in polyamine-depleted tumor cells that display high transport capacity. These results demonstrate that polyamine analogues cross-linked into a dimeric structure such as DESC interact with high affinity with the mammalian polyamine carrier without being used as substrates. These novel properties provide a framework for the design of specific irreversible inhibitors of the polyamine transporter, which should present advantages over competitive antagonists for an efficient blockade of polyamine transport in tumor cells.

Animals

Growth-independent induction of spermidine transport by IL-4 and IL-13 in ZR-75-1 human breast cancer cells.

Polyamine transport is strongly induced by insulin and estradiol (E2) in ZR-75-1 human breast cancer cells. Because signal transduction mechanisms of insulin and interleukin-4 (IL-4) partly overlap, we have compared the ability of these agents as well as that of interleukin-13 (IL-13), a cytokine that often mimics IL-4, to modulate spermidine transport in these cells. In the presence of E2, insulin increased DNA content and the rate of [3H]spermidine uptake by 2.1- and 3.7-fold, respectively, after an 8-day incubation, whereas the sole addition of IL-4 caused a quantitatively similar induction of [3H]spermidine uptake while leaving cell growth unaffected. No comparable induction of spermidine transport was observed with interleukins-1 alpha and -6, and the effect of IL-4 was not additive to that elicited by insulin plus E2. IL-4 and IL-13 stimulated [3H]spermidine uptake to a comparable extent, with half-maximal effects observed at 80 and 400 pg/ml, respectively. Interferon-gamma inhibited IL-4- and IL-13-dependent spermidine uptake to a much greater extent than basal or insulin-induced transport of the polyamine. IL-4 and IL-13 increased the Vmax and K(m) of [3H]spermidine uptake by about 4- and 2.5-fold, respectively. Na(+)-dependent amino acid uptake was increased by insulin but not by IL-4 or IL-13, indicating that the cytokines do not induce a general increase in membrane transport activity. IL-4 and IL-13 did not interfere with feedback inhibition of polyamine uptake, and only modestly decreased polyamine content after prolonged incubation, suggesting that these cytokines stimulate spermidine uptake by increasing total transport capacity rather than by repressing and endogenous inhibitor.

Biological Transport

Understanding the P1' specificity of the matrix metalloproteinases: effect of S1' pocket mutations in matrilysin and stromelysin-1.

Matrilysin (MAT) prefers leucine over residues that have aromatic side chains at the P1' position of peptide and protein substrates, while stromelysin (HFS) has a broader specificity. The X-ray structures of these enzymes show that their respective S1' subsites differ primarily due to the amino acids present at positions 214 and 215. To examine the role that these residues play in determining P1' specificity, the amino acids at these positions in matrilysin have been replaced by those found in stromelysin (MAT: Y214L, MAT:A215V, and MAT:Y214L/A215V). The specificity and activity of MAT:A215V are similar to those of wild type matrilysin. Both MAT:Y214L and MAT:Y214L/A215V, however, have P1' specificities that are more similar to stromelysin than matrilysin. Specifically, these enzymes exhibit an 8- to 9-fold reduction in kcat/KM toward a peptide substrate with Leu in subsite P1' relative to wild type matrilysin. This is predominantly the result of an approximate 5-fold decrease in kcat. The KM values only partially increase toward the value observed for stromelysin. Studies of the pre-steady-state reaction of wild type and mutant matrilysin with substrates with Leu and Tyr residues in the P1' position confirm that the KM values for these reactions reflect KD values for substrate binding. Thus, replacement of a single tyrosine residue in the S1' pocket of matrilysin by leucine alters its P1' specificity to resemble that of stromelysin. In contrast, alteration of the S1' subsite of stromelysin (HFS:L214Y/V215A) to resemble matrilysin increases activity (i.e., higher kcat/KM) toward peptide substrates with both leucine and residues with aromatic side chains in the P1' position with only a partial increase in specificity for Leu. These increases in activity are the result of decreases in the KM values for these reactions.

Amino Acid Sequence

[Prognosis of depression].

Contrary to classical psychopathological assessment of the phenomenology of depressive states, modern diagnosis tools like the DSM-III-R or DSM-IV rely upon the distinction between major depression, dysthymia and depressive symptoms during the course of other psychiatric diseases. Within each category, the degree of severity is determined and by using a multiaxial approach, different aspects of global social functioning, accompanying diseases, and characteristics of personality are assessed. Few long-term studies concerning outcome of the depressions exist. At least the following factors can be assumed to indicate a favorable outcome: minor extent of depressive symptoms at the beginning, no severe personality disorder, absence of psychotic symptoms, no alcohol dependency or major physical illness, reliable social background, intellectual functions not being impaired, and skillful choice of antidepressant drug therapy regimes.

Depressive Disorder

Post-translational cooperativity of ornithine decarboxylase induction by estrogens and peptide growth factors in human breast cancer cells.

Mutual interactions between 17 beta-estradiol (E2) and insulin or insulin-like growth factor-I (IGF-1) in the regulation of ornithine decarboxylase (ODC) expression were examined in estrogen-responsive MCF-7 human breast cancer cells. Whereas E2 only retarded the rapid decay of ODC activity observed upon mitogen withdrawal, both insulin and IGF-1 led to a rapid (< 4 h), net increase in ODC activity that was mediated, at least in part, through their cognate receptors. E2 synergistically potentiated the induction of ODC by IGF-1, resulting in a 170-fold elevation of enzyme activity after 48 h, as compared with 23- and 70-fold increases caused by E2 and IGF-1 alone, respectively. Cooperativity was more pronounced at suboptimal peptide concentrations due to a decrease in the half-maximal concentration of insulin or IGF-1 required for ODC induction. Phorbol-12-myristate-13-acetate (PMA) also strongly induced ODC activity in a transient manner, and additively to the effect of IGF-1. IGF-1 and PMA additively increased ODC mRNA level, whereas E2 alone had no effect on ODC mRNA abundance. IGF-1 increased the half-life of ODC activity by 60%, whereas E2 or PMA alone had no significant effect on enzyme stability. On the other hand, the simultaneous addition of IGF-1 and either E2 or PMA cooperatively reduced ODC turnover, resulting in 3.5- and 2-fold increases, respectively, in the half-life of ODC activity. Thus, ODC expression in breast cancer cells is primarily regulated by tyrosine kinase- and protein kinase C-dependent pathways, whereas estrogens increase ODC activity through a novel type of synergistic interaction with growth factors that results in a decreased rate of enzyme turnover.

Breast Neoplasms

Use of a modified surgical approach to the right atrium for retrieval of heartworms in a dog.

A 2-year-old 2-kg female Maltese dog was referred for treatment of dirofilariosis and mild caval syndrome characterized by hemolysis and lethargy. Ultrasonography revealed worms within the caudal vena cava, right auricle, right ventricle, and pulmonary artery. Because of the mild clinical signs and small size of the dog, jugular venotomy was not performed, and treatment with sodium caparsolate was instituted. A markedly adverse reaction was noticed on initial injection, characterized by cardiac and respiratory arrest. Further treatment with sodium caparsolate was discontinued. Because of progression of the dog's condition surgical removal of heartworms was elected. A modified surgical approach to the right atrium was performed, using a cannula introduced through a pursestring placed in the wall of the right auricle. This technique allowed almost complete removal of heartworms with minimal blood loss. Postoperative ultrasonography revealed a single heart-worm remaining in the distal portion of the left pulmonary artery, but it was subsequently absorbed.

Animals

Domains of the measles virus N protein required for binding to P protein and self-assembly.

The nucleocapsid protein (N, 525 amino acids) of measles virus plays a central role in the replication of the viral genomic RNA. Its functions require interactions with itself and with other viral components. The N protein encapsidates genomic RNA, a function reflected in its ability to self-assemble into nucleocapsid-like particles in the absence of other viral proteins. The substrate for the packaging of nascent RNA during RNA replication is a complex between the N and phosphoprotein (P). The domains on the N protein that promote binding to P protein and self-assembly have been identified utilizing a series of N protein deletions. Two noncontiguous regions, amino acids 4-188 and 304-373 of N protein, are required for the formation of the soluble N-P complex, while deletion of amino acids 189-239 did not affect N-P binding. Amino acids 240-303 appear to be necessary for the stability of the protein. The N-terminal 398 amino acids are all required for the formation of organized nucleocapsid-like particles, since deletion of the central region from amino acids 189-373 completely abolished N-N interaction, and deletion of amino acids 4-188 and 374-492 caused the formation of unstructured aggregates.

Animals

Swelling of rat mesangial cells induces a Ca2+-dependent Cl- conductance.

Membrane voltage (Vm) and ion currents of rat mesangial cells in primary culture were measured with the patch-clamp technique in the fast whole-cell configuration. Vm was -44 +/- 1 mV (n = 138). A reduction of the osmolality from 290 to 190 mosmol/kg depolarized Vm from -44 +/- 1 to -29 +/- 1 mV (n = 118) and increased the inward and outward conductances (Gm) from 14 +/- 2 to 39 +/- 4 nS and 13 +/- 2 to 37 +/- 4 nS (n = 84), respectively. During the hypotonicity-induced depolarization the cell capacitance increased significantly from 33 +/- 3 to 42 +/- 4 pF (n = 40). The effect of hypotonic cell swelling on Vm was increased in a bath with a reduced extracellular Cl- of 32 mmol/l (by 71 +/- 4%, n = 23), indicating that a Cl- conductance was activated. The permselectivity of this conductance was I- > or = Br- > Cl-. The Vm response was not affected in the presence of a reduced extracellular Na+ of 5 mmol/l (n = 13) and was inhibited in a solution with reduced extracellular Ca2+ concentration (by 63 +/- 9%, n = 14). In microfluorescence measurements with the Ca2+-sensitive dye fura-2 hypotonic cell swelling induced a sustained increase of the intracellular Ca2+ activity, [Ca2+]i (n = 19). The increase of [Ca2+]i was completely inhibited when the extracellular solution was free of Ca2+. The Vm response to hypotonic cell swelling was not attenuated in the presence of the L-type Ca2+ channel blockers nicardipine (n = 5), nifedipine (n = 5) and verapamil (n = 5) (all at 1 micromol/l). The data indicate that in rat mesangial cells, osmotic swelling induces a Ca2+ influx from extracellular space. This Ca2+ influx activates a Cl- conductance resulting in a depolarization of Vm. The enhanced Cl- conductance may lead to KCl extrusion and hence regulatory volume decrease.

Animals

Acute ischemic stroke.

While case fatality rates in ischemic stroke tend to decline, the total number of strokes is expected to increase further in the future because of more people reaching a greater age. Acute ischemic stroke, usually caused by chronic arterial hypertension, in most cases is induced either by a sudden loss of perfusion pressure or by thromboembolism. Reduction of oxygen supply to brain tissue then leads to a cascade of biochemical reactions. Cell death finally occurs after massive Ca2+ influx into the cell and breakdown of the membranes. A rim of viable tissue called the penumbra often exists around a central necrotic core within the ischemic region. The tissue compartment may be brought back to function if perfusion is restored within a short time. Since some cytotoxic reactions within ischemic tissue are irreversible, current efforts in stroke therapy focus on measures to decrease cellular vulnerability. Restoring perfusion remains the first important therapeutic goal. A variety of compounds have been tested for cytoprotection, but none can yet be recommended for routine clinical use. General management of stroke patients in every case should be implemented for emergency assessment, since the first few hours after onset are crucial for the outcome.

Combined Modality Therapy

TCR- and IL-1-mediated co-stimulation reveals an IL-4-independent way of Th2 cell proliferation.

Previously, it has been shown that Th1 cells, when triggered solely via their TCR, are blocked from proliferation in response to IL-2. Herein, we describe a similar characteristic for Th2 cells in that immobilized mAb directed to the TCR blocked proliferation of Th2 cells in response to IL-4. This "proliferative block' was observed in all four Th2 cell clones tested, but not in a subline of one of the clones which has been cultured in vitro for several years. Addition of IL-1 neutralized the proliferative block in all four Th2 cell clones. Surprisingly, blocking experiments with sIL-4R and anti-IL-4 mAb revealed that in three out of four Th2 cell clones this effect of IL-1 was IL-4-independent and could also not be blocked by cyclosporin A (CsA). In contrast, the proliferation of one Th2 cell clone in response to the TCR- and IL-1-mediated signals was indeed inhibited by sIL-4R, anti-IL-4 mAb and CsA. Thus, our data illustrate that in addition to the well-known IL-4-dependent proliferation, there also exists an IL-4-independent, IL-1-mediated way of Th2 cell proliferation.

Animals

Permissive role of polyamines in the cooperative action of estrogens and insulin or insulin-like growth factor I on human breast cancer cell growth.

Polyamines have been proposed as specific mediators of estrogen action in breast cancer cells, but their exact role in this process is still controversial. As estrogens cooperatively interact with peptide growth factors in several hormonal responses, the involvement of polyamines in the synergistic effect of 17 beta-estradiol (E2) and insulin or insulin-like-growth factor I (IGF-I) on cell growth, polyamine pools, specific gene induction, and cell cycle progression was examined in estrogen-responsive MCF-7 and ZR-75-1 human breast cancer cells. Spermidine depletion induced by the ornithine decarboxylase inhibitor, alpha-difluoromethylornithine (DFMO), resulted in complete cytostasis and loss of mitogenic response to either E2 or insulin (or IGF-I). In contrast, a steroidal antiestrogen blocked the mitogenic effect of E2, but only partly interfered with the synergistic stimulation of estrogen action by insulin. Whereas antiestrogen-resistant growth in insulin-treated cells was halted by DFMO, the antiestrogen did not further inhibit growth upon prior polyamine depletion. E2 and either IGF-I or insulin induced early increases in putrescine and spermidine, but not spermine, contents in both MCF-7 and ZR-75-1 cells. Moreover, spermidine depletion and decarboxylated S-adenosylmethionine accumulation induced by DFMO required prior mitogenic stimulation by E2 and/or IGF-I. The antiestrogen alone had only a limited effect on polyamine and nucleoside pools. DFMO did not interfere with the coordinate induction of the estrogen- and growth factor-inducible pS2 messenger ribonucleic acid by E2 and insulin even after a 5-day treatment with the drug. On the other hand, DFMO depressed the cycling fraction of E2/IGF-I-stimulated MCF-7 cell population far more dramatically than the antiestrogen and to less than that noted in mitogen-deprived cells. However, in ZR-75-1 cells, which have a much lower spermidine/spermine ratio than MCF-7 cells, specific inhibition of spermine synthase selectively antagonized the effect of E2 compared with that of insulin. These data indicate that spermidine has a permissive role for macromolecular synthesis and cell cycle traverse, but does not qualify as a limiting factor in estrogen receptor-mediated events per se in breast cancer cells. Moreover, polyamine depletion is an efficient complementary strategy to block the mitogenic action of peptide growth factors, which is only partly antagonized by antiestrogens.

Base Sequence