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Sökning: WFRF:(Scholl Ute)

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1.
  • Choi, Murim, et al. (författare)
  • K+ Channel Mutations in Adrenal Aldosterone-Producing Adenomas and Hereditary Hypertension
  • 2011
  • Ingår i: Science. - : American Association for the Advancement of Science (AAAS). - 0036-8075 .- 1095-9203. ; 331:6018, s. 768-772
  • Tidskriftsartikel (refereegranskat)abstract
    • Endocrine tumors such as aldosterone-producing adrenal adenomas (APAs), a cause of severe hypertension, feature constitutive hormone production and unrestrained cell proliferation; the mechanisms linking these events are unknown. We identify two recurrent somatic mutations in and near the selectivity filter of the potassium (K+) channel KCNJ5 that are present in 8 of 22 human APAs studied. Both produce increased sodium (Na+) conductance and cell depolarization, which in adrenal glomerulosa cells produces calcium (Ca2+) entry, the signal for aldosterone production and cell proliferation. Similarly, we identify an inherited KCNJ5 mutation that produces increased Na+ conductance in a Mendelian form of severe aldosteronism and massive bilateral adrenal hyperplasia. These findings explain pathogenesis in a subset of patients with severe hypertension and implicate loss of K+ channel selectivity in constitutive cell proliferation and hormone production.
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2.
  • Dutta, Ravi Kumar, 1983- (författare)
  • Genetic and molecular alterations in aldosterone producing adenomas
  • 2020
  • Doktorsavhandling (övrigt vetenskapligt/konstnärligt)abstract
    • Aldosterone producing tumors (APA, also known as Conn tumors) are adrenal tumors that overproduce aldosterone, a hormone that regulates the sodium levels in blood and contributes to blood pressure (BP) regulation. Excessive production of aldosterone causes hypertension and approximately 5-15% of hypertensive patients have hyperaldosteronism, known as primary aldosteronism (PA). Major causes of PA are bilateral adrenal hyperplasia (BAH) or aldosterone producing adenoma (APA) and about 30% of PA patients have APAs. In most cases, the disease is unilateral, in rare case bilateral. Patients with APA are often detected when they have elevated blood pressure (BP>160/100mmHg) or when BP cannot be controlled with drugs. Surgery dramatically normalizes or lowers BP in patients with APA.In this thesis, we first explored the mutation frequency in susceptibility genes in sporadic APAs. About 60% of APAs displayed complementary mutations in the KCNJ5, ATP1A1, ATP2B3, CTNNB1, CACNAID and CLCN2 genes (Paper I, II & III). Copy number variation analysis of 35 APAs identified amplification of chromosome 10q24.31 in two tumors, where CALHM1-3- genes encoding for potential calcium ion channels are located. Only CALHM2 is expressed in adrenals and sequencing of CALHM2 revealed three different heterozygous sequence variants; c.341_42delCT (CALHM2P114Rfs*12), c.286G>A (CALHM2A96T) and c.580G>A (CALHM2V194M) in 5 APAs. CALHM2 is expressed in the mitochondrial membranes and Ca2+ imaging revealed that CALHM2 has selection of another ion rather than Ca2+. The genetic variant CALHM2V194M converts CALHM2 into a non-selective channel and results in higher Ca2+ conductance in mitochondria. We further found that loss of CALHM2 function upregulates REELIN/LRP8 signaling activating β-catenin dependent transcription of target genes (Paper II). In Paper IV, we investigated Scandinavian APA cases (n=35) and Swedish controls (n=60) for GWAS and discovered a susceptibility locus on chromosome Xq13.3 in a 4 Mb region to be significantly associated with APAs. Significance level was still same after genotyping the sentinel SNP rs2224095 in a replication cohort of APAs (n=52) and controls (n=740). Sequencing of an adjacent gene of the sentinel SNP, MAGEE1, identified a rare variant in one APA, which is complementary to other mutations in our primary cohort. In Summary, our studies have increased the knowledge of molecular genetic events in APAs. The results may contribute to find future non-surgical treatments for APAs.  
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3.
  • Fonseca, Annabelle L, et al. (författare)
  • Comprehensive DNA methylation analysis of benign and malignant adrenocortical tumors
  • 2012
  • Ingår i: Genes, Chromosomes and Cancer. - : Wiley-Blackwell. - 1045-2257 .- 1098-2264. ; 51:10, s. 949-960
  • Tidskriftsartikel (refereegranskat)abstract
    • The molecular pathogenesis of benign and malignant adrenocortical tumors (ACT) is incompletely clarified. The role of DNA methylation in adrenocortical tumorigenesis has not been analyzed in an unbiased, systematic fashion. Using the Infinium HumanMethylation27 BeadChip, the DNA methylation levels of 27,578 CpG sites were investigated in bisulfite-modified DNA from 6 normal adrenocortical tissue samples, 27 adrenocortical adenomas (ACA), and 15 adrenocortical carcinomas (ACC). Genes involved in cell cycle regulation, apoptosis, and transcriptional regulation of known or putative importance in the development of adrenal tumors showed significant and frequent hypermethylation. Such genes included CDKN2A, GATA4, BCL2, DLEC1, HDAC10, PYCARD, and SCGB3A1/HIN1. Comparing benign versus malignant ACT, a total of 212 CpG islands were identified as significantly hypermethylated in ACC. Gene expression studies of selected hypermethylated genes (CDKN2A, GATA4, DLEC1, HDAC10, PYCARD, SCGB3A1/HIN1) in 6 normal and 16 neoplastic adrenocortical tissues (10 ACA and 6 ACC), displayed reduced gene expression in benign and malignant ACT versus normal adrenocortical tissue. Treatment with 5-aza-2-deoxycytidine of adrenocortical cancer H-295R cells increased expression of the hypermethylated genes CDKN2A, GATA4, DLEC1, HDAC10, PYCARD, and SCGB3A1/HIN1. In conclusion, the current study represents the first unbiased, quantitative, genome-wide study of adrenocortical tumor DNA methylation. Genes with altered DNA methylation patterns were identified of putative importance to benign and malignant adrenocortical tumor development.
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4.
  • Goh, Gerald, et al. (författare)
  • Recurrent activating mutation in PRKACA in cortisol-producing adrenal tumors
  • 2014
  • Ingår i: Nature Genetics. - : Springer Science and Business Media LLC. - 1061-4036 .- 1546-1718. ; 46:6, s. 613-617
  • Tidskriftsartikel (refereegranskat)abstract
    • Adrenal tumors autonomously producing cortisol cause Cushing's syndrome1, 2, 3, 4. We performed exome sequencing of 25 tumor-normal pairs and identified 2 subgroups. Eight tumors (including three carcinomas) had many somatic copy number variants (CNVs) with frequent deletion of CDC42 and CDKN2A, amplification of 5q31.2 and protein-altering mutations in TP53 and RB1. Seventeen tumors (all adenomas) had no somatic CNVs or TP53 or RB1 mutations. Six of these had known gain-of-function mutations in CTNNB1 (β-catenin)5, 6 or GNAS (Gαs)7, 8. Six others had somatic mutations in PRKACA (protein kinase A (PKA) catalytic subunit) resulting in a p.Leu206Arg substitution. Further sequencing identified this mutation in 13 of 63 tumors (35% of adenomas with overt Cushing's syndrome). PRKACA, GNAS and CTNNB1 mutations were mutually exclusive. Leu206 directly interacts with the regulatory subunit of PKA, PRKAR1A9, 10. Leu206Arg PRKACA loses PRKAR1A binding, increasing the phosphorylation of downstream targets. PKA activity induces cortisol production and cell proliferation11, 12, 13, 14, 15, providing a mechanism for tumor development. These findings define distinct mechanisms underlying adrenal cortisol-producing tumors.
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5.
  • Scholl, Ute I, et al. (författare)
  • Somatic and germline CACNA1D calcium channel mutations in aldosterone-producing adenomas and primary aldosteronism
  • 2013
  • Ingår i: Nature Genetics. - : Springer Science and Business Media LLC. - 1061-4036 .- 1546-1718. ; 45:9, s. 1050-1054
  • Tidskriftsartikel (refereegranskat)abstract
    • Adrenal aldosterone-producing adenomas (APAs) constitutively produce the salt-retaining hormone aldosterone and are a common cause of severe hypertension. Recurrent mutations in the potassium channel gene KCNJ5 that result in cell depolarization and Ca2+ influx cause ~40% of these tumors1. We identified 5 somatic mutations (4 altering Gly403 and 1 altering Ile770) in CACNA1D, encoding a voltage-gated calcium channel, among 43 APAs without mutated KCNJ5. The altered residues lie in the S6 segments that line the channel pore. Both alterations result in channel activation at less depolarized potentials; Gly403 alterations also impair channel inactivation. These effects are inferred to cause increased Ca2+ influx, which is a sufficient stimulus for aldosterone production and cell proliferation in adrenal glomerulosa2. We also identified de novo germline mutations at identical positions in two children with a previously undescribed syndrome featuring primary aldosteronism and neuromuscular abnormalities. These findings implicate gain-of-function Ca2+ channel mutations in APAs and primary aldosteronism.
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  • Resultat 1-5 av 5

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