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J Pohlenz

Publications and source records attributed to J Pohlenz.

At least 37 records · Page 2Linked to original sources

A novel point mutation in cluster 3 of the thyroid hormone receptor beta gene (P247L) causing mild resistance to thyroid hormone.

Resistance to thyroid hormone (RTH), a syndrome characterized by variable tissue hyposensitivity to thyroid hormone (TH), is linked to mutations in the thyroid hormone receptor (TR) beta gene. We report a new family with a heretofore unreported mutation, P247L. The proposita, a 31-year-old female, presented with goiter and palpitations. RTH was suspected because of elevated serum free thyroxine (FT4) level with a normal thyrotropin (TSH). Sequencing the TRbeta gene revealed a mutation causing replacement of a proline at position 247 with leucine. Seven family members were heterozygous for the mutation, two of whom also had evidence of autoimmune thyroid disease. The mutant TRbeta had a Ka for triiodothyronine (T3) 30% that of the wild-type TRbeta, approximately a threefold reduction in T3-induced transactivation and a low level dominant negative activity when tested with a positively regulated reporter gene. In vivo sensitivity to TH was evaluated in three affected subjects by measurement of the responses to graded doses of levotriiodothyronine (LT3). Peak TSH responses to TRH were reduced and were not completely suppressed at even the highest dose of LT3, (0.9, 0.2, and 0.2, compared to < 0.01 microU/mL in unaffected controls), confirming pituitary resistance to TH in all three subjects. In contrast, peripheral tissues responded variably to LT3: serum cholesterol decreased in all by 15%-25%, serum creatine kinase decreased by 15% in two subjects and increased 35% in another, but serum ferritin and sex hormone-binding globulin increased in only one of the three affected individuals that were tested. Basal metabolic rate and sleeping pulse did not change in three and two individuals, respectively. Hyporesponsiveness to exogenous TH established the clinical diagnosis of RTH in one member of the family with a mutant TRbeta but normal tests of thyroid function at baseline. Three affected subjects had an axis I diagnosis of major depression but had Wechsler Intelligence Scale for Children, III (WISC-III) full-scale IQs (FSIQs) in the normal range. This novel TRbeta mutation is associated with a realtively mild RTH. Results of responses to LT3 underscore the variable phenotype of RTH.

Adolescent↗

Improved radioimmunoassay for measurement of mouse thyrotropin in serum: strain differences in thyrotropin concentration and thyrotroph sensitivity to thyroid hormone.

We report an improved heterologous radioimmunoassay (RIA) for the measurement of thyrotropin (TSH) in mouse serum. The assay components are: antirat thyrotropin (rTSH) serum from the National Hormone and Pituitary Program, a commercial [125I]-labeled rTSH and mouse thyrotropin (mTSH) serum standards produced by dilution of a serum pool from hypothyroid mice with high TSH with a serum pool from mice treated with excess levothyroxine (LT4) (mTSH-0). Sensitivity was increased by reducing the amount of antibody and tracer and by taking advantage of the disequilibrium technique. Accuracy was greatly improved by the preparation of mouse serum TSH standards. TSH in serial dilutions of individual mice with high TSH of different etiologies paralleled the mTSH standard curve but not that of rTSH or a crude mouse TSH/luteinizing hormone (LH) reference preparation. The high-mTSH-serum standard contained 20 mU TSH per milliliter, measured in a bioassay utilizing a cell line stably transfected with human TSH receptor cDNA, and a relative TSH concentration of 40 ng/mL. The sensitivity of the RIA is 0.01 to 0.02 ng/mL, depending on the quality of the tracer and the preparation of mTSH-0 serum. The intra-assay and interassay coefficients of variations were, respectively: 16% and 27% at 0.04 ng/mL; 6.3% and 8.2% at 0.4 ng/mL; 5.4% and 9.8% at 1.7 ng/mL; 10% and 24% at 4.0 ng/mL. The mean TSH concentration in serum of 60-80-day-old male mice was four-fold higher than that in females of the same age. The assay was able to distinguish differences in serum TSH concentrations in five different strains of mice. Baseline serum TSH concentrations (mean +/- SD) of 70-day-old male mice were: 0.143 +/- 0.065 ng/mL in the CD-1 strain; 0.229 +/- 0.042 ng/mL in C57BL/6 mice; 0.084 +/- 0.017 ng/mL in SWR/J mice; 0.133 +/- 0.057 ng/mL in NOD SCID mice, and 0.266 +/- 0.122 ng/mL in FVB mice. Mean serum thyroxine (T4) concentrations were also significantly different among the mouse strains but did not correlate with the serum TSH level. Administration of levotriiodothyronine (LT3) suppressed the serum TSH to a greater degree in mice with higher baseline TSH values. Suppression of the thyroidal radioiodide uptake with LT3 correlated with that of serum TSH.

Animals↗

Five new families with resistance to thyroid hormone not caused by mutations in the thyroid hormone receptor beta gene.

Resistance to thyroid hormone (RTH) is a syndrome of variable tissue hyposensitivity to TH. In 191 families, the RTH phenotype has been linked to mutations located in the ligand-binding or hinge domains of the TH receptor (TR) beta gene. The defective TRbeta molecules interfere with the function of the normal TRs to produce dominantly inherited RTH. Of the 65 families with RTH studied in our laboratory, 59 had mutations in the mutagenic region of the TRbeta gene that encompasses exons 7-10. Isolation of a TRbeta PAC (P1 derived artificial chromosome) clone provided the intronic sequences necessary to amplify and sequence the entire TRbeta gene from genomic DNA. Not a single nucleotide substitution, deletion, or insertion was found in all coding and noncoding TRbeta1- and TRbeta2-specific and common exons of the five families with RTH reported herein. Furthermore, linkage analysis using polymorphic markers excluded involvement of the TRbeta and TRalpha genes in two and three of the five families, respectively. The phenotype of RTH in patients without TRbeta gene defects was not different from that in patients with RTH due to TRbeta gene mutations in terms of clinical presentation and reduced responsiveness of the pituitary and peripheral tissues to TH. However, the degree of thyrotroph hyposensitivity to TH appeared to be among the more severe, similar to that of patients with mutant TRbetas that have more than 50-fold reduction of T3 binding affinity and strong dominant negative effect. In these five families and another with non-TRalpha/non-TRbeta RTH, previously identified in our laboratory, evidence for dominant inheritance was secured in two families, and the appearance of a new defect or recessive inheritance was found in the remaining four families. RTH without a structural TRbeta defect occurs in about 10% of families expressing the classic phenotype of TH hyposensitivity, and TRbeta and TRalpha gene involvement has been excluded in 5%. We postulate that a cofactor that interacts with TR is potentially responsible for the manifestation of RTH in these families. As affected subjects are not infertile, the high prevalence of putative neomutations and the low rate of transmission in this non-TR form of RTH may be due to reduced survival of embryos harboring the defect.

Adult↗

[Borna disease in cattle (consensus report)].

Short survey on definition, occurrence, cause, importance, pathogenesis, clinical findings, course, postmortal lesions, treatment, prevention and eradication of Borna disease in cattle.

Animals↗

Total serum bile acid concentrations in dairy cows with fatty liver and liver failure.

In forty-five Holstein Frisian dairy cows (1-6 weeks post partum; mean age: 5.1 +/- 1.2 years) the serum total bile acid concentrations (SBA) were measured enzymatically. In all cows a left sided abomasal displacement was corrected surgically by right side laparotomy and omentopexy three days before investigation. The liver fat content was determined in all cows histologically. Liver failure was assumed if typical clinical signs (ataxia, general depression, recumbency or coma), an increased venous plasma ammonia level (> 35 mumol/l) and a decreased plasma amino acid index (< 4.0) were found. Cows without liver failure (N = 29) were grouped according to the liver fat content as cows with mild (N = 5), moderate (N = 19) or severe hepatosteatosis (N = 5). Histological examination of liver biopsies in cows with liver failure (N = 16) revealed in twelve cases a severe fatty liver and in four cases a hydropic degeneration of the liver tissue. Although in cows without liver failure mean SBA concentrations were higher in the group with moderate (47.3 +/- 30.9 mumol/l) or severe fatty liver (32.9 +/- 21.7 mumol/l) than in that with mild lipidosis (18.0 (16.8 mumol/l), differences were not significant. The mean SBA concentration in cows with liver failure (70.5 +/- 49.5 mumol/l) was only significantly (p < 0.05) increased compared to cows with uncomplicated mild hepatic lipidosis. In conclusion, the determination of SBA concentrations is of little value in the recognition of fatty liver or even liver failure due to the considerable variance of SBA concentrations in dairy cows.

Abomasum↗

Selective pituitary resistance to thyroid hormone produced by expression of a mutant thyroid hormone receptor beta gene in the pituitary gland of transgenic mice.

Resistance to thyroid hormone (RTH) has been subdivided into generalized resistance (GRTH) and pituitary resistance (PRTH) based on the clinical impression of absence or presence of thyrotoxicosis. However, due to lack of objective clinical and genetic criteria, the existence of PRTH as a distinct entity became controversial. To determine what the phenotype would be if RTH was confined to the pituitary, a transgenic mouse was developed in which expression of the mutant thyroid hormone receptor (TR) beta (G345R) was targeted to the pituitary thyrotrophs by placing it downstream of the mouse thyrotropin beta promoter. This construct exhibited an antagonistic effect on the thyroid hormone-dependent transactivation, mediated through the wild-type TRbeta1, only when cotransfected with the thyrotroph embryonic factor in a heterologous cell line. As expected the transgene was transcribed predominantly in the pituitary gland but not in liver. These mice showed a significant, though modest, increase in serum T4 concentration. A decrease in the serum cholesterol was observed in keeping with the selective tissue hyposensitivity to thyroid hormone.

Animals↗

Congenital hypothyroidism due to mutations in the sodium/iodide symporter. Identification of a nonsense mutation producing a downstream cryptic 3' splice site.

A 12-yr-old hypothyroid girl was diagnosed at birth as athyreotic because her thyroid gland could not be visualized by isotope scanning. Goiter development due to incomplete thyrotropin suppression, a thyroidal radioiodide uptake of < 1%, and a low saliva to plasma ratio of 2.5 suggested iodide (I-) transport defect. mRNA isolated from her thyroid gland and injected into Xenopus oocytes failed to increase I- transport. Sequencing of the entire Na+/I- symporter (NIS) cDNA revealed a C to G transversion of nucleotide (nt) 1146 in exon 6, resulting in a Gln 267 (CAG) to Glu (GAG) substitution. This missense mutation produces an NIS with undetectable I- transport activity when expressed in COS-7 cells. Although only this missense mutation was identified in thyroid and lymphocyte cDNA, genotyping revealed that the proposita and her unaffected brother and father were heterozygous for this mutation. However, amplification of cDNA with a primer specific for the wild-type nt 1146 yielded a sequence lacking 67 nt. Genomic DNA showed a C to G transversion of nt 1940, producing a stop codon as well as a new downstream cryptic 3' splice acceptor site in exon 13, responsible for the 67 nt deletion, frameshift, and premature stop predicting an NIS lacking 129 carboxy-terminal amino acids. This mutation was inherited from the mother and present in the unaffected sister. Thus, although the proposita is a compound heterozygote, because of the very low expression (< 2.5%) of one mutant allele, she is functionally hemizygous for an NIS without detectable bioactivity.

Alleles↗

Generalized AA-amyloidosis in Siberian tigers (Panthera tigris altaica) with predominant renal medullary amyloid deposition.

Generalized amyloidosis with predominant renal medullary amyloid deposition was found in four closely related Siberian tigers (Panthera tigris altaica) suffering from end stage kidney diseases. Only minimal to mild amounts of amyloid were deposited in various organs outside the kidneys with individually variable organ involvement. The Congo red staining affinity of amyloid deposits was sensitive to potassium permanganate oxidation. The deposits were further characterized as being of the amyloid-A (AA) type by immunohistochemistry using the mouse monoclonal antibody mc4 directed against a conserved region of the human AA-protein. A combination of immunohistochemistry and Congo red staining was much more sensitive for the diagnosis of amyloid deposits than Congo red staining alone. With this combination, even minimal amyloid deposits were detected that had been missed in the first reading using Congo-red-stained slides alone. Since no common primary cause was identified, the amyloidosis was classified as idiopathic generalized AA-amyloidosis with a potential familial predisposition.

Amyloidosis↗

Congenital central hypothyroidism due to a homozygous mutation in the thyrotropin beta-subunit gene follows an autosomal recessive inheritance.

A 5-month-old infant of nonconsanguineous parents had severe hypothyroidism. Undetectable serum levels of T3 and T4 in combination with an undetectable baseline TSH level led to the diagnosis of central hypothyroidism. Administration of TRH failed to increase serum TSH, but not PRL, confirming isolated TSH deficiency. Measurement of the TSH in serum with three different immunoassays that recognize different epitopes of the TSH molecule failed to detect TSH, suggesting an aberrant or absent TSH. Direct sequencing of the entire coding region of the human TSH beta-subunit gene revealed a homozygous single base pair deletion in codon 105, resulting in a frame shift with a premature stop at codon 114. The truncated TSH beta peptide lacks the terminal five amino acids. Furthermore, the cysteine in codon 105 that is believed to be important for the interaction of the TSH beta-subunit with the alpha-subunit, is replaced with a valine (C105V), supporting the theory of a conformational change in the TSH molecule. Genotyping confirmed that the proposita was homozygous for this mutation, whereas her unaffected parents, the paternal grand-mother, and the maternal grandfather were heterozygous. Thus, isolated TSH deficiency follows an autosomal recessive mode of inheritance in this kindred.

Amino Acid Sequence↗

[Measurement of glomerular filtration rate (GFR) after administration of iodine contrast medium with the Renalyzer PRX90 in healthy cats and cats with kidney diseases].

In the present study, the measurement of the glomerular filtration rate (GFR) in the cat with the aid of an iodine contrast medium clearance with the renalyzer PRX90 is introduced. Investigations on the accuracy of measurement showed that even repeated measurement of plasma samples after two days of storage at room temperature yielded reproducible clearance results. Also, partial dilution of the plasma sample (2 ml with 1 ml Aqua bidest.) to reduce the volume of blood withdrawn still produced reliable results. Further dilution of the plasma volume (1 ml with 2 ml Aqua bidest.) however did not allow for accurate measurements. A total of 59 cats of different age and sex were included in the study. 31 cats had healthy kidneys with urea and creatinine values within the reference range, unchanged urine findings and physiologic urine protein patterns (SDS-PAGE). These cats served as reference group. The GFR reference value ascertained for these animals was 2.1 ml/min/kg BW (mean = 3.45 ml/min/kg with s = +/- 1.0 ml/min/kg). 28 cats had elevated values of urea and creatinine in the blood, as well as partially changed urine findings. For further diagnosis of renal disease, separation of urine proteins was done with the SDS-PAGE in the PhastSystem, which in all cases yielded a pathologic urine protein pattern. In 11 cases the renal disease could be further confirmed by histological investigation. GFR in these patients was clearly lowered compared with healthy cats, with measured values between 0 and 1.8 ml/min/kg. It can be concluded that the renalyzer allows reliable determination of the GFR also in the cat. To what extent measurement of the GFR is also helpful to diagnose nephropathies in the stage of compensation needs to be further investigated. In cats with high grade uremia and a GFR below 1 ml/min however, an exact calculation is not possible, since the accuracy of measurement within this range is inadequate. Thus, in severe disease no correct assessment is possible, and no statement concerning prognosis can be made.

Animals↗

[Disseminated intravascular coagulation and hyperfibrinolysis in dogs with metastasizing mammary carcinoma].

The alterations of the haemostatic system (platelet count, activated partial thromboplastin time [APTT], thromboplastin time [standard test, modified test], thrombin time, fibrinogen concentration, activity of the coagulation factors II, V, VII, X, VIII:C, IX, XI, XII, of prekallikrein, high molecular weight kininogen, antithrombin III, protein C, plasminogen and alpha 2-plasmin inhibitor, concentration of soluble fibrin and fibrin(ogen) degradation products [FDP], resonance thrombogram) were described in seven dogs with haemorrhagic diathesis in consequence of an infiltrative, growing mammary carcinoma with multifocal invasion of lymphatic and blood vessels. In most of the cases metastases in different organs could be demonstrated. In every case a serious stage of disseminated intravascular coagulation and hyperfibrinolysis was existent. This was indicated by the distinctly increased concentration (p < 0.0001) of soluble fibrin (27.7 [16.0-79.2] micrograms/ml, median [minimum-maximum], reference range [RR.]: < 9.4 micrograms/ml) and FDP (340 [50-860] micrograms/ml, RR.: < 18 micrograms/ml) as well as a diminished plasma level of nearly all components of the coagulation and fibrinolytic system concerning especially the concentration of fibrinogen (0.16 [0.01-0.46] g/l, RR.: 1.17-3.09 g/l), the activity of factors V (30 [21-40]%, RR.: 75-158%) and VIII:C (9 [4-16]%, RR.: 72-136%) as well as the activity of protein C (8 [3-13]%, RR.: 68-139%) (each: p < 0.0001).

Animals↗

Hypothyroidism in a Brazilian kindred due to iodide trapping defect caused by a homozygous mutation in the sodium/iodide symporter gene.

A 36 year old man with a large goiter was suspected of having iodide (I-) transport defect based on low thyroidal and salivary gland radioiodide uptake. Thyroid surgery was performed, because thyroid cytology could not exclude a malignancy. Sequencing of the entire Na+/I- symporter (NIS) cDNA derived from thyroidal mRNA revealed a homozygous substitution of the normal cytosine in nucleotide (nt) 1163 with an adenine, resulting in a stop (TGA) at codon 272. This nonsense mutation produces a truncated NIS with undetectable I- transport activity when expressed into COS-7 cells. Genotyping confirmed that the propositus was homozygous for the mutation whereas his unaffected mother, son, and paternal aunt were heterozygous. This nt substitution was not detected in any of 50 normal individuals, ruling out a polymorphism. While the homozygous mutant NIS-272X causes congenital hypothyroidism, expression of one normal allele in the heterozygote (C272X) is sufficient to maintain active thyroidal I- uptake and function.

Adult↗

Modification of thyroid hormone and 9-cis retinoic acid signaling by overexpression of their cognate receptors using adenoviral vector.

Tissue responsiveness to a hormone is dependent on the amounts of its receptor expressed under physiological conditions. In the present report, we compared the magnitude of ligand-dependent transactivation mediated by two nuclear hormone receptors, thyroid hormone receptor beta (TR) and retinoid X receptor alpha (RXR), when overexpressed in a variety of cell lines. TR, RXR and reporter (luciferase) genes under the control of artificial hormone response elements were introduced into the cells using recombinant adenovirus (Ad) vectors, to ensure highly efficient gene delivery. Although the amounts of TR expressed were similar in the cell lines infected with Ad-TR, T3 dependent induction of reporter gene expression was significantly greater in HepG2 than in Cos7, GH3, or JEG3 cells, indicating that factors other than TR are limiting the responsiveness to T3. The enhanced response to 9-cis retinoic acid in cells overexpressing RXR was much greater in JEG3 than in HepG2 which had the highest responsiveness to T3 under TR overexpression. These results indicate that the factors affecting T3 responsiveness are not identical to those affecting the 9-cis retinoic acid responsiveness. On the other hand, overexpression of RXR in addition to TR resulted in a decrease in T3-responsiveness in all the cell lines tested, suggesting that some cofactors are common to TR and RXR.

Adenoviridae↗

Resistance to thyroid hormone in a family caused by a new point mutation L330S in the thyroid receptor (TR) beta gene.

Resistance to thyroid hormone (RTH) is an inherited defect manifesting as variable tissue hyporesponsiveness to thyroid hormone, usually caused by mutations in the thyroid hormone receptor beta (TR beta) gene. Up to now 78 mutations in this gene have been identified, mostly clustered in two regions located in exon 9 and 10. We describe a new point mutation replacing the normal thymidine-1274 with a cytosine that results in the substitution of the normal leucine-330 with a serine (L330S) in the receptor protein. This mutation was identified in an 11-year-old boy who presented with symptoms and signs suggestive of both hyperthyroidism and hypothyroidism. Interestingly a mutation in the same codon (L330F) has been previously described in a patient who presented with stigmata suggestive of thyrotoxicosis.

Child↗

Morphology of starch digestion in the horse.

Structure of starch in feed and chyme of horses (7 with a cannula at the caudal end of the jejunum and 2 with a cecal fistula) after feeding high starch diets (maize: whole, broken, ground, expanded and as silage, oats: whole, rolled or ground, rolled barley, raw potatoes, and tapioca) was investigated by light and electron microscopy. Structure of feed starch and morphology or starch degradation in the chyme corresponded to data on preileal starch digestibility which was investigated in a parallel study. Barriers for starch digestion in the gastrointestinal tract of the horse were structure of the plant storage organ, as for example, a tight connection between starch granules in maize gains as well as the structure of the starch granules itself. The highly digestible oat starch was degraded by exocorrosion around the grains, whereas in other, less digestible, starch types degradation occurred by endocorrosion via pin holes. The number and size of the pin holes increased with increasing preileal starch digestibility. The effect of various ways of decomposition on preileal digestibility increased with advanced destruction of the original starch structure. Expanding was most effective. The granules were destroyed completely and the starch became soluble. Simple examination by light microscopy is a fast method to evaluate the degree of starch decomposition in the feed.

Animals↗

Thyrotropin regulation by thyroid hormone in thyroid hormone receptor beta-deficient mice.

Thyroid hormone responsive genes can be both positively and negatively regulated by thyroid hormone. TSH is down-regulated by thyroid hormone and rises during thyroid hormone deprivation. Because both thyroid hormone receptor (TR) alpha and beta genes are expressed in the pituitary gland, it is unclear what the relative roles of TR alpha and TR beta are in TSH regulation. Experiments using over expression of artificial genes have yielded conflicting results. The TR beta knock-out mouse that lacks both TR beta1 and TR beta2 isoforms provides a model to examine the role of these receptors in TSH regulation. TR beta deficient (TR beta-/-) and wild-type (TR beta+/+) mice of the same strain were deprived of thyroid hormone by feeding them a low iodine diet containing propylthiouracil and were then treated with different doses of L-T3 and L-T4. Thyroid hormone deprivation rapidly increased the serum TSH level in both TR beta+/+ and TR beta-/- mice, reaching a similar level in the absence of thyroid hormone. In contrast, the decline of serum TSH by treatment with both L-T3 and L-T4 was severely blunted in TR beta-/- mice, and full suppression was not achieved with the maximal L-T3 dose of 25 microg/day x mouse. These data indicate that TR beta is not required for the up-regulation of TSH in thyroid hormone deficiency. However, although TR alpha alone can mediate thyroid hormone induced TSH suppression, TR beta enhances the sensitivity of TSH down-regulation and may be essential for the complete suppression of TSH.

Animals↗