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1.
Nat Commun ; 14(1): 8501, 2023 Dec 27.
Artigo em Inglês | MEDLINE | ID: mdl-38151585

RESUMO

DNA polymerase (DNAP) can correct errors in DNA during replication by proofreading, a process critical for cell viability. However, the mechanism by which an erroneously incorporated base translocates from the polymerase to the exonuclease site and the corrected DNA terminus returns has remained elusive. Here, we present an ensemble of nine high-resolution structures representing human mitochondrial DNA polymerase Gamma, Polγ, captured during consecutive proofreading steps. The structures reveal key events, including mismatched base recognition, its dissociation from the polymerase site, forward translocation of DNAP, alterations in DNA trajectory, repositioning and refolding of elements for primer separation, DNAP backtracking, and displacement of the mismatched base into the exonuclease site. Altogether, our findings suggest a conserved 'bolt-action' mechanism of proofreading based on iterative cycles of DNAP translocation without dissociation from the DNA, facilitating primer transfer between catalytic sites. Functional assays and mutagenesis corroborate this mechanism, connecting pathogenic mutations to crucial structural elements in proofreading steps.


Assuntos
Replicação do DNA , DNA Polimerase Dirigida por DNA , Humanos , Replicação do DNA/genética , DNA Polimerase Dirigida por DNA/metabolismo , DNA/genética , DNA/química , Exonucleases/metabolismo
2.
iScience ; 26(8): 107445, 2023 Aug 18.
Artigo em Inglês | MEDLINE | ID: mdl-37599825

RESUMO

We present a study on the nuclear export efficiency and time of pre-ribosomal subunits in live mammalian cells, using high-speed single-molecule tracking and single-molecule fluorescence resonance energy transfer techniques. Our findings reveal that pre-ribosomal particles exhibit significantly higher nuclear export efficiency compared to other large cargos like mRNAs, with around two-thirds of interactions between the pre-60S or pre-40S and the nuclear pore complexes (NPCs) resulting in successful export to the cytoplasm. We also demonstrate that nuclear transport receptor (NTR) chromosomal maintenance 1 (CRM1) plays a crucial role in nuclear export efficiency, with pre-60S and pre-40S particle export efficiency decreasing by 11-17-fold when CRM1 is inhibited. Our results suggest that multiple copies of CRM1 work cooperatively to chaperone pre-ribosomal subunits through the NPC, thus increasing export efficiency and decreasing export time. Significantly, this cooperative NTR mechanism extends beyond pre-ribosomal subunits, as evidenced by the enhanced nucleocytoplasmic transport of proteins.

3.
Scand J Gastroenterol ; 56(7): 791-805, 2021 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-33941035

RESUMO

Aim: Recovery of damaged mucosal surfaces following inflammatory insult requires diverse regenerative mechanisms that remain poorly defined. Previously, we demonstrated that the reparative actions of Trefoil Factor 3 (TFF3) depend upon the enigmatic receptor, leucine rich repeat and immunoglobulin-like domain containing nogo receptor 2 (LINGO2). This study examined the related orphan receptor LINGO3 in the context of intestinal tissue damage to determine whether LINGO family members are generally important for mucosal wound healing and maintenance of the intestinal stem cell (ISC) compartment needed for turnover of mucosal epithelium.Methods and Results: We find that LINGO3 is broadly expressed on human enterocytes and sparsely on discrete cells within the crypt niche, that contains ISCs. Loss of function studies indicate that LINGO3 is involved in recovery of normal intestinal architecture following dextran sodium sulfate (DSS)-induced colitis, and that LINGO3 is needed for therapeutic action of the long acting TFF2 fusion protein (TFF2-Fc), including a number of signaling pathways critical for cell proliferation and wound repair. LINGO3-TFF2 protein-protein interactions were relatively weak however and LINGO3 was only partially responsible for TFF2 induced MAPK signaling suggesting additional un-identified components of a receptor complex. However, deficiency in either TFF2 or LINGO3 abrogated budding/growth of intestinal organoids and reduced expression of the intestinal ISC gene leucine-rich repeat-containing G-protein coupled receptor 5 (LGR5), indicating homologous roles for these proteins in tissue regeneration, possibly via regulation of ISCs in the crypt niche.Conclusion: We propose that LINGO3 serves a previously unappreciated role in promoting mucosal wound healing.


Assuntos
Colite , Mucosa Intestinal , Humanos , Organoides , Fator Trefoil-2 , Cicatrização
4.
Sci Immunol ; 5(53)2020 11 13.
Artigo em Inglês | MEDLINE | ID: mdl-33188058

RESUMO

Interleukin-33 (IL-33) is a pleiotropic cytokine that can promote type 2 inflammation but also drives immunoregulation through Foxp3+Treg expansion. How IL-33 is exported from cells to serve this dual role in immunosuppression and inflammation remains unclear. Here, we demonstrate that the biological consequences of IL-33 activity are dictated by its cellular source. Whereas IL-33 derived from epithelial cells stimulates group 2 innate lymphoid cell (ILC2)-driven type 2 immunity and parasite clearance, we report that IL-33 derived from myeloid antigen-presenting cells (APCs) suppresses host-protective inflammatory responses. Conditional deletion of IL-33 in CD11c-expressing cells resulted in lowered numbers of intestinal Foxp3+Treg cells that express the transcription factor GATA3 and the IL-33 receptor ST2, causing elevated IL-5 and IL-13 production and accelerated anti-helminth immunity. We demonstrate that cell-intrinsic IL-33 promoted mouse dendritic cells (DCs) to express the pore-forming protein perforin-2, which may function as a conduit on the plasma membrane facilitating IL-33 export. Lack of perforin-2 in DCs blocked the proliferative expansion of the ST2+Foxp3+Treg subset. We propose that perforin-2 can provide a plasma membrane conduit in DCs that promotes the export of IL-33, contributing to mucosal immunoregulation under steady-state and infectious conditions.


Assuntos
Células Dendríticas/imunologia , Interleucina-33/metabolismo , Proteínas de Membrana/metabolismo , Infecções por Strongylida/imunologia , Linfócitos T Reguladores/imunologia , Animais , Membrana Celular/metabolismo , Doença Crônica , Células Dendríticas/metabolismo , Modelos Animais de Doenças , Feminino , Humanos , Tolerância Imunológica , Imunidade Inata , Imunidade nas Mucosas , Interleucina-33/análise , Interleucina-33/genética , Masculino , Camundongos , Camundongos Transgênicos , Mucosa Nasal/imunologia , Mucosa Nasal/patologia , Pólipos Nasais/imunologia , Pólipos Nasais/patologia , Nematospiroides dubius/imunologia , Nippostrongylus/imunologia , Proteínas Citotóxicas Formadoras de Poros , Rinite/imunologia , Rinite/patologia , Sinusite/imunologia , Sinusite/patologia , Infecções por Strongylida/parasitologia , Linfócitos T Reguladores/metabolismo
5.
Nat Commun ; 10(1): 4408, 2019 09 27.
Artigo em Inglês | MEDLINE | ID: mdl-31562318

RESUMO

Intestinal epithelial cells (IEC) have important functions in nutrient absorption, barrier integrity, regeneration, pathogen-sensing, and mucus secretion. Goblet cells are a specialized cell type of IEC that secrete Trefoil factor 3 (TFF3) to regulate mucus viscosity and wound healing, but whether TFF3-responsiveness requires a receptor is unclear. Here, we show that leucine rich repeat receptor and nogo-interacting protein 2 (LINGO2) is essential for TFF3-mediated functions. LINGO2 immunoprecipitates with TFF3, co-localizes with TFF3 on the cell membrane of IEC, and allows TFF3 to block apoptosis. We further show that TFF3-LINGO2 interactions disrupt EGFR-LINGO2 complexes resulting in enhanced EGFR signaling. Excessive basal EGFR activation in Lingo2 deficient mice increases disease severity during colitis and augments immunity against helminth infection. Conversely, TFF3 deficiency reduces helminth immunity. Thus, TFF3-LINGO2 interactions de-repress inhibitory LINGO2-EGFR complexes, allowing TFF3 to drive wound healing and immunity.


Assuntos
Colite/imunologia , Receptores ErbB/imunologia , Helmintíase/imunologia , Mucosa Intestinal/imunologia , Proteínas de Membrana/metabolismo , Proteínas do Tecido Nervoso/imunologia , Fator Trefoil-3/imunologia , Animais , Linhagem Celular Tumoral , Colite/induzido quimicamente , Colite/metabolismo , Sulfato de Dextrana , Receptores ErbB/genética , Receptores ErbB/metabolismo , Células Caliciformes/imunologia , Células Caliciformes/metabolismo , Células Caliciformes/parasitologia , Células HEK293 , Helmintíase/metabolismo , Helmintíase/parasitologia , Helmintos/imunologia , Helmintos/fisiologia , Humanos , Mucosa Intestinal/metabolismo , Mucosa Intestinal/parasitologia , Proteínas de Membrana/genética , Camundongos Endogâmicos C57BL , Proteínas do Tecido Nervoso/genética , Proteínas do Tecido Nervoso/metabolismo , Organofosfonatos , Fator Trefoil-3/genética , Fator Trefoil-3/metabolismo , Células U937
6.
J Immunol ; 203(2): 511-519, 2019 07 15.
Artigo em Inglês | MEDLINE | ID: mdl-31175162

RESUMO

Whether conventional dendritic cells (cDC) acquire subset identity under direction of Wnt family glycoproteins is unknown. We demonstrate that Wnt4, a ß-catenin-independent Wnt ligand, is produced by both hematopoietic and nonhematopoietic cells and is both necessary and sufficient for preconventional DC1/cDC1 maintenance. Whereas bone marrow cDC precursors undergo phosphoJNK/c-Jun activation upon Wnt4 treatment, loss of cDC Wnt4 in CD11cCreWnt4flox/flox mice impaired differentiation of CD24+, Clec9A+, CD103+ cDC1 compared with CD11cCre controls. Conversely, single-cell RNA sequencing analysis of bone marrow revealed a 2-fold increase in cDC2 gene signature genes, and flow cytometry demonstrated increased numbers of SIRP-α+ cDC2 amid lack of Wnt4. Increased cDC2 numbers due to CD11c-restricted Wnt4 deficiency increased IL-5 production, group 2 innate lymphoid cell expansion, and host resistance to the hookworm parasite Nippostrongylus brasiliensis Collectively, these data uncover a novel and unexpected role for Wnt4 in cDC subset differentiation and type 2 immunity.


Assuntos
Células Dendríticas/imunologia , Imunidade Inata/imunologia , Proteína Wnt4/imunologia , Animais , Antígenos CD/imunologia , Antígeno CD11c/imunologia , Antígeno CD24/imunologia , Diferenciação Celular/imunologia , Citometria de Fluxo/métodos , Cadeias alfa de Integrinas/imunologia , Linfócitos/imunologia , Camundongos , Transdução de Sinais/imunologia , beta Catenina/imunologia
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