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75 result(s) for "Barlier, Anne"
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Modeling corticotroph deficiency with pituitary organoids supports the functional role of NFKB2 in human pituitary differentiation
Deficient Anterior pituitary with common Variable Immune Deficiency (DAVID) syndrome results from NFKB2 heterozygous mutations, causing adrenocorticotropic hormone deficiency (ACTHD) and primary hypogammaglobulinemia. While NFKB signaling plays a crucial role in the immune system, its connection to endocrine symptoms is unclear. We established a human disease model to investigate the role of NFKB2 in pituitary development by creating pituitary organoids from CRISPR/Cas9-edited human induced pluripotent stem cells (hiPSCs). Introducing homozygous TBX19 K146R/K146R missense pathogenic variant in hiPSC, an allele found in congenital isolated ACTHD, led to a strong reduction of corticotrophs number in pituitary organoids. Then, we characterized the development of organoids harboring NFKB2 D865G/D865G mutations found in DAVID patients. NFKB2 D865G/D865G mutation acted at different levels of development with mutant organoids displaying changes in the expression of genes involved on pituitary progenitor generation ( HESX1 , PITX1 , LHX3 ), hypothalamic secreted factors ( BMP4, FGF8, FGF10 ), epithelial-to-mesenchymal transition, lineage precursors development ( TBX19 , POU1F1 ) and corticotrophs terminal differentiation ( PCSK1, POMC ), and showed drastic reduction in the number of corticotrophs. Our results provide strong evidence for the direct role of NFKB2 mutations in the endocrine phenotype observed in patients leading to a new classification of a NFKB2 variant of previously unknown clinical significance as pathogenic in pituitary development.
Metabolome Profiling by HRMAS NMR Spectroscopy of Pheochromocytomas and Paragangliomas Detects SDH Deficiency: Clinical and Pathophysiological Implications
Succinate dehydrogenase gene (SDHx) mutations increase susceptibility to develop pheochromocytomas/paragangliomas (PHEOs/PGLs). In the present study, we evaluate the performance and clinical applications of 1H high-resolution magic angle spinning (HRMAS) nuclear magnetic resonance (NMR) spectroscopy–based global metabolomic profiling in a large series of PHEOs/PGLs of different genetic backgrounds. Eighty-seven PHEOs/PGLs (48 sporadic/23 SDHx/7 von Hippel-Lindau/5 REarranged during Transfection/3 neurofibromatosis type 1/1 hypoxia-inducible factor 2α), one SDHD variant of unknown significance, and two Carney triad (CTr)–related tumors were analyzed by HRMAS-NMR spectroscopy. Compared to sporadic, SDHx-related PHEOs/PGLs exhibit a specific metabolic signature characterized by increased levels of succinate (P < .0001), methionine (P = .002), glutamine (P = .002), and myoinositol (P < .0007) and decreased levels of glutamate (P < .0007), regardless of their location and catecholamine levels. Uniquely, ATP/ascorbate/glutathione was found to be associated with the secretory phenotype of PHEOs/PGLs, regardless of their genotype (P < .0007). The use of succinate as a single screening test retained excellent accuracy in distinguishing SDHx versus non–SDHx-related tumors (sensitivity/specificity: 100/100%). Moreover, the quantification of succinate could be considered a diagnostic alternative for assessing SDHx-related mutations of unknown pathogenicity. We were also able, for the first time, to uncover an SDH-like pattern in the two CTr-related PGLs. The present study demonstrates that HRMAS-NMR provides important information for SDHx-related PHEO/PGL characterization. Besides the high succinate–low glutamate hallmark, SDHx tumors also exhibit high values of methionine, a finding consistent with the hypermethylation pattern of these tumors. We also found important levels of glutamine, suggesting that glutamine metabolism might be involved in the pathogenesis of SDHx-related PHEOs/PGLs.
A New Specific Succinate-Glutamate Metabolomic Hallmark in Sdhx-Related Paragangliomas
Paragangliomas (PGLs) are frequently associated with germline mutations in genes involved in energy metabolism. The purpose of the present study was to assess whether the tumor metabolomic profile of patients with hereditary and apparently sporadic PGLs enables the distinction of different subtypes of tumors. Twenty-eight unrelated patients with a histological diagnosis of PGLs were included in the present study. Twelve had germline mutations in SDHx genes (5 SDHB, 7 SDHD), 6 VHL, and 10 were apparently sporadic. Intact tumor samples from these patients (one per patient) were evaluated with (1)H high-resolution magic angle spinning (HRMAS) NMR spectroscopy. SDHx-related tumors were characterized by an increase in succinate levels in comparison to other tumor subtypes (p = 0.0001 vs VHL and p = 0.000003 vs apparently sporadic). Furthermore, we found significantly lower values of glutamate in SDHx-related tumors compared to other subtypes (p = 0.0007 vs VHL and p = 0.003 vs apparently sporadic). Moreover, SDHx-tumors also exhibited lower values of ATP/ADP/AMP (p = 0.01) compared to VHL. VHL tumors were found to have the highest values of glutathione (GSH) compared to other tumors. Based on 4 metabolites (succinate, glutamate, GSH, and ATP/ADP/AMP), tumors were accurately distinguished from the other ones on both 3- and 2-class PLS-DA models. The present study shows that HRMAS NMR spectroscopy is a very promising method for investigating the metabolomic profile of various PGLs. The present data suggest the existence of a specific succinate-glutamate hallmark of SDHx PGLs. The relevance of such a metabolomic hallmark is expected to be very useful in designing novel treatment options as well as improving the diagnosis and follow-up of these tumors, including metastatic ones.
Identifying the Deleterious Effect of Rare LHX4 Allelic Variants, a Challenging Issue
LHX4 is a LIM homeodomain transcription factor involved in the early steps of pituitary ontogenesis. To date, 8 heterozygous LHX4 mutations have been reported as responsible of combined pituitary hormone deficiency (CPHD) in Humans. We identified 4 new LHX4 heterozygous allelic variants in patients with congenital hypopituitarism: W204X, delK242, N271S and Q346R. Our objective was to determine the role of LHX4 variants in patients' phenotypes. Heterologous HEK293T cells were transfected with plasmids encoding for wild-type or mutant LHX4. Protein expression was analysed by Western Blot, and DNA binding by electro-mobility shift assay experiments. Target promoters of LHX4 were cotransfected with wild type or mutant LHX4 to test the transactivating abilities of each variant. Our results show that the W204X mutation was associated with early GH and TSH deficiencies and later onset ACTH deficiency. It led to a truncated protein unable to bind to alpha-Gsu promoter binding consensus sequence. W204X was not able to activate target promoters in vitro. Cotransfection experiments did not favour a dominant negative effect. In contrast, all other mutants were able to bind the promoters and led to an activation similar as that observed with wild type LHX4, suggesting that they were likely polymorphisms. To conclude, our study underlines the need for functional in vitro studies to ascertain the role of rare allelic variants of LHX4 in disease phenotypes. It supports the causative role of the W204X mutation in CPHD and adds up childhood onset ACTH deficiency to the clinical spectrum of the various phenotypes related to LHX4 mutations.
Somatic gain-of-function HIF2A mutations in sporadic central nervous system hemangioblastomas
Central nervous system hemangioblastomas (CNS-HBs) occur sporadically or as a component of von Hippel–Lindau-VHL syndrome. CNS-HBs share some molecular similarities with pheochromocytomas/paragangliomas (PPGLs) and renal cell carcinomas (RCCs). Recently, hypoxia-inducible factors, particularly somatic HIF2A mutations, have been found to play an important role in the pathogenesis of PPGLs. Somatic mutations in HIF2A have been reported in PPGLs associated with polycythemia, which have been reported to also be present in patients with RCCs and HBs. However, whether CNS-HBs is associated with the presence of a HIF2A mutation is currently uknown. We analyzed somatic HIF2A and VHL mutations in a series of 28 sporadic CNS-HBs. We also investigated the expression of HIF target proteins and hypoxia-associated factor (HAF). Two sporadic CNS-HBs were found to have somatic HIF2A mutations. One tumor had 2 HIF2A missense mutations, one of which was previously described in a PPGL (c.1121 T>A, F374Y). The second patient had coexistence of somatic truncated mutations (c.1669 C>T, Q557*) in HIF2A together with a VHL mutation. Neither of the two patients had polycythemia at the time of diagnosis. We demonstrate that the novel truncated mutation in HIF2A (Q557*) affects HIF-2α prolyl hydroxylation with its reduced ubiquitination but intact transcriptional activity, resulting in an activating effect. Both CNS-HB samples showed positive expression of VEGFR2/CA9/Glut1 and HAF. Our data support the unique central role of the VHL/HIF-2α signaling pathway in the molecular pathogenesis of CNS-HBs and show for the first time the presence of HIF2A mutations in sporadic HB.
Prospective comparison of Ga-68-DOTATATE and F-18-FDOPA PET/CT in patients with various pheochromocytomas and paragangliomas with emphasis on sporadic cases
Purpose Pheochromocytomas/paragangliomas (PHEOs/PGLs) overexpress ă somatostatin receptors and recent studies have already shown excellent ă results in the localization of these tumors using Ga-68-labeled ă somatostatin analogs (Ga-68-DOTA-SSA), especially in patients with ă germline succinate dehydrogenase subunit B gene (SDHB) mutations and ă head and neck PGLs (HNPGLs). The value of Ga-68-DOTA-SSA has to be ă established in sporadic cases, including PHEOs. Thus, the aim of this ă study was to compare Ga-68-DOTATATE PET/CT, F-18-FDOPA PET/CT, and ă conventional imaging in patients with various PHEOs/PGLs with a special ă emphasis on sporadic cases, including those located in the adrenal ă gland. ă Design Ga-68-DOTATATE, F-18-FDOPA PET/CT, and conventional imaging ă (contrast-enhanced CT and MRI with MR angiography sequences) were ă prospectively performed in 30 patients (8 with SDHD mutations, 1 with a ă MAX mutation and 21 sporadic cases) with PHEO/PGL at initial diagnosis ă or relapse. ă Results The patient-based sensitivities were 93 % (28/30), 97 % ă (29/30), and 93 % (28/30) for Ga-68-DOTATATE PET/CT, F-18-FDOPA PET/CT, ă and conventional imaging, respectively. The lesion-based sensitivities ă were 93 % (43/46), 89 % (41/46), and 76 % (35/46) for Ga-68-DOTATATE ă PET/CT, F-18-FDOPA PET/CT, and conventional imaging respectively (p = ă 0.042). Ga-68-DOTATATE PET/CT detected a higher number of HNPGLs (30/30) ă than F-18-FDOPA PET/CT (26/30; p = 0.112) and conventional imaging ă (24/30; p = 0.024). Ga-68-DOTATATE PET/CT missed two PHEOs of a few ă millimeters in size and a large recurrent PHEO. One lesion was ă considered false-positive on Ga-68-DOTATATE PET/CT and corresponded to a ă typical focal lesion of fibrous dysplasia on MRI. Among the 11 lesions ă missed by conventional imaging, 7 were detected by conventional imaging ă with knowledge of the PET results (4 HNPGLs, 2 LNs, and 1 recurrent ă PHEO). ă Conclusion Ga-68-DOTATATE PET/CT is the most sensitive tool in the ă detection of HNPGLs, especially SDHD-related tumors, which may be very ă small and fail to concentrate sufficient F-18-FDOPA. The present study ă further expands the use of Ga-68-DOTATATE for all patients with HNPGLs, ă regardless of their genotype. Ga-68-DOTATATE PET/CT may be inferior to ă F-18-FDOPA PET/CT in the detection PHEOs.
Modeling corticotroph deficiency with pituitary organoids supports the functional role of NFKB2 in human pituitary differentiation
Deficient Anterior pituitary with common Variable Immune Deficiency (DAVID) syndrome results from NFKB2 heterozygous mutations, causing adrenocorticotropic hormone deficiency (ACTHD) and primary hypogammaglobulinemia. While NFKB signaling plays a crucial role in the immune system, its connection to endocrine symptoms is unclear. We established a human disease model to investigate the role of NFKB2 in pituitary development by creating pituitary organoids from CRISPR/Cas9-edited human induced pluripotent stem cells (hiPSCs). Introducing homozygous TBX19 K146R/K146R missense pathogenic variant in hiPSC, an allele found in congenital isolated ACTHD, led to a strong reduction of corticotrophs number in pituitary organoids. Then, we characterized the development of organoids harboring NFKB2 D865G/D865G mutations found in DAVID patients. NFKB2 D865G/D865G mutation acted at different levels of development with mutant organoids displaying changes in the expression of genes involved on pituitary progenitor generation ( HESX1 , PITX1 , LHX3 ), hypothalamic secreted factors ( BMP4, FGF8, FGF10 ), epithelial-to-mesenchymal transition, lineage precursors development ( TBX19 , POU1F1 ) and corticotrophs terminal differentiation ( PCSK1, POMC ), and showed drastic reduction in the number of corticotrophs. Our results provide strong evidence for the direct role of NFKB2 mutations in the endocrine phenotype observed in patients leading to a new classification of a NFKB2 variant of previously unknown clinical significance as pathogenic in pituitary development.
Hypoxia and the hypoxia inducible factor 1α activate protein kinase A by repressing RII beta subunit transcription
Overactivation of the cAMP signal transduction pathway plays a central role in the pathogenesis of endocrine tumors. Genetic aberrations leading to increased intracellular cAMP or directly affecting PKA subunit expression have been identified in inherited and sporadic endocrine tumors, but are rare indicating the presence of nongenomic pathological PKA activation. In the present study, we examined the impact of hypoxia on PKA activation using human growth hormone (GH)-secreting pituitary tumors as a model of an endocrine disease displaying PKA-CREB overactivation. We show that hypoxia activates PKA and enhances CREB transcriptional activity and subsequently GH oversecretion. This is due to a previously uncharacterized ability of HIF-1α to suppress the transcription of the PKA regulatory subunit 2B (PRKAR2B) by sequestering Sp1 from the PRKAR2B promoter. The present study reveals a novel mechanism through which the transcription factor HIF-1α transduces environmental signals directly onto PKA activity, without affecting intracellular cAMP concentrations. By identifying a point of interaction between the cellular microenvironment and intracellular enzyme activation, neoplastic, and nonneoplastic diseases involving overactivated PKA pathway may be more efficiently targeted.
MEN2-related pheochromocytoma: current state of knowledge, specific characteristics in MEN2B, and perspectives
Multiple endocrine neoplasia type 2 (MEN2) is a rare hereditary syndrome due to mutations of the proto-oncogene REarranged during Transfection (RET), defined by the association of medullary thyroid carcinoma (MTC) in almost 100% cases, and pheochromocytoma in roughly 50% (primary hyperparathyroidism can be seen in 10–20% of patients with MEN2A). Early thyroidectomy and the efficacy of novel tyrosine kinase inhibitors modified the natural history of MTC, with possibilities of cure or long-term control. The second main compound, pheochromocytoma, is reported with a variable penetrance, from 10 to 80% cases, depending on the mutation of RET. Pheochromocytoma constitutes the main disease to screen in patients with RET mutations. Pheochromocytoma clinical and biochemical diagnosis, as well as the way to treat it are thus crucial. This review will thus focus on the epidemiological specificities of MEN2-related pheochromocytoma, the genotype/phenotype relationship, the modern imaging modalities necessary to confirm the diagnosis in this hereditary context, as well as the optimal management and the possibilities of adrenal sparing surgery. Additional information will include the natural history of MEN2B-pheochromocytoma, the rare cases of malignant pheochromocytoma, and the factors that could modify the penetrance between individuals carrying the same mutation, especially in the same family.