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1.
Cell ; 186(24): 5328-5346.e26, 2023 11 22.
Artigo em Inglês | MEDLINE | ID: mdl-37883971

RESUMO

Lysosomes serve dual antagonistic functions in cells by mediating anabolic growth signaling and the catabolic turnover of macromolecules. How these janus-faced activities are regulated in response to cellular nutrient status is poorly understood. We show here that lysosome morphology and function are reversibly controlled by a nutrient-regulated signaling lipid switch that triggers the conversion between peripheral motile mTOR complex 1 (mTORC1) signaling-active and static mTORC1-inactive degradative lysosomes clustered at the cell center. Starvation-triggered relocalization of phosphatidylinositol 4-phosphate (PI(4)P)-metabolizing enzymes reshapes the lysosomal surface proteome to facilitate lysosomal proteolysis and to repress mTORC1 signaling. Concomitantly, lysosomal phosphatidylinositol 3-phosphate (PI(3)P), which marks motile signaling-active lysosomes in the cell periphery, is erased. Interference with this PI(3)P/PI(4)P lipid switch module impairs the adaptive response of cells to altering nutrient supply. Our data unravel a key function for lysosomal phosphoinositide metabolism in rewiring organellar membrane dynamics in response to cellular nutrient status.


Assuntos
Lisossomos , Transdução de Sinais , Lisossomos/metabolismo , Alvo Mecanístico do Complexo 1 de Rapamicina/metabolismo , Nutrientes , Fenômenos Fisiológicos Celulares
2.
J Genet ; 1012022.
Artigo em Inglês | MEDLINE | ID: mdl-35975820

RESUMO

A key question in biology is whether all cells of a given 'cell type' within an individual have more or less the same phenotype, especially in relation to nonimprinted autosomal loci. Some studies have shown differential allelic expression of autosomal genes to confer phenotypic variability at the individual cell level. Here, we report the amount of A and B histo-blood group antigens, products of classic examples of codominant alleles, in individual red blood cells (RBCs). Using immunofluorescence with Cy3-tagged and FITC-tagged antibodies, we quantified the levels of these antigens in 2512 RBCs from 24 individuals in the AB blood group. When these data were fit to a normal distribution, we could detect four groups: showing normal distribution for both antigens, either antigen, and neither antigen. Surprisingly, very few samples showed a significant positive correlation between the amounts of A and B antigens on individual RBC; in fact, the ratio of antigen A to antigen B in the entire set of samples spanned over five orders of magnitude. This variability in the amount of antigens A and/or B, combined with a lack of correlation between the amounts of these two antigens, resulted in unique staining patterns of RBC, generating widespread mosaicism in the RBC population of AB blood group individuals.


Assuntos
Antígenos de Grupos Sanguíneos , Eritrócitos , Alelos , Antígenos/genética , Antígenos de Grupos Sanguíneos/genética , Fenótipo
3.
Nat Commun ; 13(1): 6212, 2022 10 20.
Artigo em Inglês | MEDLINE | ID: mdl-36266287

RESUMO

Lysosomes are well-established as the main cellular organelles for the degradation of macromolecules and emerging as regulatory centers of metabolism. They are of crucial importance for cellular homeostasis, which is exemplified by a plethora of disorders related to alterations in lysosomal function. In this context, protein complexes play a decisive role, regulating not only metabolic lysosomal processes but also lysosome biogenesis, transport, and interaction with other organelles. Using cross-linking mass spectrometry, we analyze lysosomes and early endosomes. Based on the identification of 5376 cross-links, we investigate protein-protein interactions and structures of lysosome- and endosome-related proteins. In particular, we present evidence for a tetrameric assembly of the lysosomal hydrolase PPT1 and a heterodimeric structure of FLOT1/FLOT2 at lysosomes and early endosomes. For FLOT1-/FLOT2-positive early endosomes, we identify >300 putative cargo proteins and confirm eleven substrates for flotillin-dependent endocytosis, including the latrophilin family of adhesion G protein-coupled receptors.


Assuntos
Endossomos , Lisossomos , Endossomos/metabolismo , Lisossomos/metabolismo , Proteínas de Membrana/metabolismo , Hidrolases/metabolismo
4.
Cells ; 11(9)2022 04 20.
Artigo em Inglês | MEDLINE | ID: mdl-35563695

RESUMO

Understanding early nervous system stress response mechanisms is crucial for studying developmental neurotoxicity and devising neuroprotective treatments. We used hiPSC-derived long-term self-renewing neuroepithelial stem (lt-NES) cells differentiated for up to 12 weeks as an in vitro model of human neural development. Following a transcriptome analysis to identify pathway alterations, we induced acute oxidative stress (OS) using tert-butyl hydroperoxide (TBHP) and assessed cell viability at different stages of neural differentiation. We studied NRF2 activation, autophagy, and proteasomal function to explore the contribution and interplay of these pathways in the acute stress response. With increasing differentiation, lt-NES cells showed changes in the expression of metabolic pathway-associated genes with engagement of the pentose phosphate pathway after 6 weeks, this was accompanied by a decreased susceptibility to TBHP-induced stress. Microarray analysis revealed upregulation of target genes of the antioxidant response KEAP1-NRF2-ARE pathway after 6 weeks of differentiation. Pharmacological inhibition of NRF2 confirmed its vital role in the increased resistance to stress. While autophagy was upregulated alongside differentiation, it was not further increased upon oxidative stress and had no effect on stress-induced cell loss and the activation of NRF2 downstream genes. In contrast, proteasome inhibition led to the aggravation of the stress response resulting in decreased cell viability, derangement of NRF2 and KEAP1 protein levels, and lacking NRF2-pathway activation. Our data provide detailed insight into the dynamic regulation and interaction of pathways involved in modulating stress responses across defined time points of neural differentiation.


Assuntos
Fator 2 Relacionado a NF-E2 , Sistema Nervoso , Proliferação de Células , Humanos , Células-Tronco Pluripotentes Induzidas , Proteína 1 Associada a ECH Semelhante a Kelch/metabolismo , Redes e Vias Metabólicas , Fator 2 Relacionado a NF-E2/metabolismo , Sistema Nervoso/metabolismo
5.
Mol Omics ; 17(6): 842-859, 2021 12 06.
Artigo em Inglês | MEDLINE | ID: mdl-34477805

RESUMO

Lysosomes are the main degradative organelles of almost all eukaryotic cells. They fulfil a crucial function in cellular homeostasis, and impairments in lysosomal function are connected to a continuously increasing number of pathological conditions. In recent years, lysosomes are furthermore emerging as control centers of cellular metabolism, and major regulators of cellular signaling were shown to be activated at the lysosomal surface. To date, >300 proteins were demonstrated to be located in/at the lysosome, and the lysosomal proteome and interactome is constantly growing. For the identification of these proteins, and their involvement in cellular mechanisms or disease progression, mass spectrometry (MS)-based proteomics has proven its worth in a large number of studies. In this review, we are recapitulating the application of MS-based approaches for the investigation of the lysosomal proteome, and their application to a diverse set of research questions. Numerous strategies were applied for the enrichment of lysosomes or lysosomal proteins and their identification by MS-based methods. This allowed for the characterization of the lysosomal proteome, the investigation of lysosome-related disorders, the utilization of lysosomal proteins as biomarkers for diseases, and the characterization of lysosome-related cellular mechanisms. While these >60 studies provide a comprehensive picture of the lysosomal proteome across several model organisms and pathological conditions, various proteomics approaches have not been applied to lysosomes yet, and a large number of questions are still left unanswered.


Assuntos
Lisossomos , Proteômica , Biomarcadores , Proteoma
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