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1.
Biol Chem ; 402(4): 481-499, 2021 03 26.
Artigo em Inglês | MEDLINE | ID: mdl-33938178

RESUMO

Proteolytic processing of the amyloid precursor protein (APP) releases the APP intracellular domain (AICD) from the membrane. Bound to the APP adaptor protein Fe65 and the lysine acetyltransferase (KAT) Tip60, AICD translocates to the nucleus. Here, the complex forms spherical condensates at sites of endogenous target genes, termed AFT spots (AICD-Fe65-Tip60). We show that loss of Tip60 KAT activity prevents autoacetylation, reduces binding of Fe65 and abolishes Fe65-mediated stabilization of Tip60. Autoacetylation is a prerequisite for AFT spot formation, with KAT-deficient Tip60 retained together with Fe65 in speckles. We identify lysine residues 204 and 701 of Fe65 as acetylation targets of Tip60. We do not detect acetylation of AICD. Mutation of Fe65 K204 and K701 to glutamine, mimicking acetylation-induced charge neutralization, increases the transcriptional activity of Fe65 whereas Tip60 inhibition reduces it. The lysine deacetylase (KDAC) class III Sirt1 deacetylates Fe65 and pharmacological modulation of Sirt1 activity regulates Fe65 transcriptional activity. A second acetylation/deacetylation cycle, conducted by CBP and class I/II KDACs at different lysine residues, regulates stability of Fe65. This is the first report describing a role for acetylation in the regulation of Fe65 transcriptional activity, with Tip60 being the only KAT tested that supports AFT spot formation.


Assuntos
Proteínas Adaptadoras de Transdução de Sinal/metabolismo , Precursor de Proteína beta-Amiloide/metabolismo , Lisina Acetiltransferases/metabolismo , Acetilação , Células Cultivadas , Humanos , Ativação Transcricional
2.
J Cell Sci ; 133(17)2020 09 08.
Artigo em Inglês | MEDLINE | ID: mdl-32843577

RESUMO

The amyloid precursor protein (APP), a central molecule in Alzheimer's disease (AD), has physiological roles in cell adhesion and signaling, migration, neurite outgrowth and synaptogenesis. Intracellular adapter proteins mediate the function of transmembrane proteins. Fe65 (also known as APBB1) is a major APP-binding protein. Regulated intramembrane proteolysis (RIP) by γ-secretase releases the APP intracellular domain (AICD), together with the interacting proteins, from the membrane. We studied the impact of the Fe65 family (Fe65, and its homologs Fe65L1 and Fe65L2, also known as APBB2 and APBB3, respectively) on the nuclear signaling function of the AICD. All Fe65 family members increased amyloidogenic processing of APP, generating higher levels of ß-cleaved APP stubs and AICD. However, Fe65 was the only family member supporting AICD translocation to nuclear spots and its transcriptional activity. Using a recently established transcription assay, we dissected the transcriptional activity of Fe65 and provide strong evidence that Fe65 represents a transcription factor. We show that Fe65 relies on the lysine acetyltransferase Tip60 (also known as KAT5) for nuclear translocation. Furthermore, inhibition of APP cleavage reduces nuclear Tip60 levels, but this does not occur in Fe65-knockout cells. The rate of APP cleavage therefore regulates the nuclear translocation of AICD-Fe65-Tip60 (AFT) complexes, to promote transcription by Fe65.


Assuntos
Precursor de Proteína beta-Amiloide , Proteínas Nucleares , Secretases da Proteína Precursora do Amiloide , Precursor de Proteína beta-Amiloide/genética , Núcleo Celular , Proteínas do Tecido Nervoso/genética
3.
Cell Physiol Biochem ; 52(4): 838-849, 2019.
Artigo em Inglês | MEDLINE | ID: mdl-30946558

RESUMO

BACKGROUND/AIMS: Phosphate (Pi) homeostasis is controlled by the intestine and kidneys whose capacities to transport Pi are under endocrine control. Several studies point to intestinal absorption as a therapeutic target to modulate Pi homeostasis. The small intestine is responsible for almost all Pi absorption in the gut, a process involving Na+-dependent and independent mechanisms. Three Na+-dependent Pi cotransporters have been described in the gastrointestinal tract: NaPi-IIb (a SLC34 member) and Pit-1 and Pit-2 (SLC20 transporters). We recently analysed the acute hormonal and renal response to intragastric (i.g) and intravenous (i.v) Pi-loading. This study demonstrated that the kidney quickly adapts to Pi-loading, with changes manifesting earlier in the i.v than i.g intervention. The aim of this work was to extend the previous studies in order to investigate the acute adaptation of intestinal transport of Pi and expression of intestinal Na+/Pi-cotransporters in response to acute Pi-loading. METHODS: Duodenal and jejunal mucosa was collected 40 minutes and/or 4 hours after administration (i.g and i.v) of either NaCl or Pi to anaesthetized rats. Uptakes of Pi and protein expression of Na+/Pi cotransporters were measured in brush border membrane vesicles (BBMV); the cotransporters' mRNA abundance was quantified by real-time PCR in total RNA extracted from whole mucosa. RESULTS: Pi-loading did not modify transport of Pi in duodenal and jejunal BBMV 4 hours after treatment. Administration of Pi did not alter either the intestinal expression of NaPi-IIb and Pit-2 mRNAs, whereas Pit-1 mRNA expression was only regulated (diminished) in duodenum collected 4 hours after i.g Pi-loading. NaPi-IIb protein expression was decreased in duodenum 4 hours upon i.v Pi infusion, whereas the duodenal and jejunal abundance of the cotransporter was unaffected by i.g administration of Pi. CONCLUSION: Together, these data suggest that the intestine responds acutely to Pi-loading, though this response seems slower than the renal adaptation.


Assuntos
Regulação para Baixo/efeitos dos fármacos , Mucosa Intestinal/efeitos dos fármacos , Fosfatos/farmacologia , Administração Intravenosa , Animais , Glucose/metabolismo , Mucosa Intestinal/citologia , Mucosa Intestinal/metabolismo , Masculino , RNA Mensageiro/metabolismo , Ratos , Ratos Wistar , Proteínas Cotransportadoras de Sódio-Fosfato Tipo IIb/metabolismo , Fator de Transcrição Pit-1/genética , Fator de Transcrição Pit-1/metabolismo
4.
PLoS One ; 13(5): e0195427, 2018.
Artigo em Inglês | MEDLINE | ID: mdl-29771914

RESUMO

BACKGROUND: The 1,25-dihydroxyvitamin D3 (1,25(OH)2D3) together with parathyroid hormone (PTH) and fibroblast growth factor 23 (FGF23) regulates calcium (Ca2+) and phosphate (Pi) homeostasis, 1,25(OH)2D3 synthesis is mediated by hydroxylases of the cytochrome P450 (Cyp) family. Vitamin D is first modified in the liver by the 25-hydroxylases CYP2R1 and CYP27A1 and further activated in the kidney by the 1α-hydroxylase CYP27B1, while the renal 24-hydroxylase CYP24A1 catalyzes the first step of its inactivation. While the kidney is the main organ responsible for circulating levels of active 1,25(OH)2D3, other organs also express some of these enzymes. Their regulation, however, has been studied less. METHODS AND RESULTS: Here we investigated the effect of several Pi-regulating factors including dietary Pi, PTH and FGF23 on the expression of the vitamin D hydroxylases and the vitamin D receptor VDR in renal and extrarenal tissues of mice. We found that with the exception of Cyp24a1, all the other analyzed mRNAs show a wide tissue distribution. High dietary Pi mainly upregulated the hepatic expression of Cyp27a1 and Cyp2r1 without changing plasma 1,25(OH)2D3. FGF23 failed to regulate the expression of any of the studied hydroxylases at the used dosage and treatment length. As expected, renal mRNA expression of Cyp27b1 was reduced and Cyp24a1 was increased in response to 1,25(OH)2D3 treatment. However, the 25-hydroxylases were rather unaffected by 1,25(OH)2D3 treatment. CONCLUSIONS: The analyzed vitamin D hydroxylases are regulated in a tissue and treatment-specific manner.


Assuntos
Calcitriol/farmacologia , Sistema Enzimático do Citocromo P-450/metabolismo , Dieta , Fatores de Crescimento de Fibroblastos/farmacologia , Rim/efeitos dos fármacos , Fosfatos/farmacologia , Vitamina D/metabolismo , Animais , Sistema Enzimático do Citocromo P-450/genética , Fator de Crescimento de Fibroblastos 23 , Regulação Enzimológica da Expressão Gênica/efeitos dos fármacos , Homeostase/efeitos dos fármacos , Humanos , Rim/enzimologia , Rim/metabolismo , Masculino , Camundongos , Hormônio Paratireóideo/metabolismo
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