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1.
Science ; 383(6685): 890-897, 2024 Feb 23.
Artículo en Inglés | MEDLINE | ID: mdl-38386755

RESUMEN

Recordings of the physiological history of cells provide insights into biological processes, yet obtaining such recordings is a challenge. To address this, we introduce a method to record transient cellular events for later analysis. We designed proteins that become labeled in the presence of both a specific cellular activity and a fluorescent substrate. The recording period is set by the presence of the substrate, whereas the cellular activity controls the degree of the labeling. The use of distinguishable substrates enabled the recording of successive periods of activity. We recorded protein-protein interactions, G protein-coupled receptor activation, and increases in intracellular calcium. Recordings of elevated calcium levels allowed selections of cells from heterogeneous populations for transcriptomic analysis and tracking of neuronal activities in flies and zebrafish.


Asunto(s)
Calcio , Fenómenos Fisiológicos Celulares , Células , Coloración y Etiquetado , Animales , Colorantes , Perfilación de la Expresión Génica , Pez Cebra , Células/química , Dominios y Motivos de Interacción de Proteínas
2.
J Am Chem Soc ; 145(5): 3075-3083, 2023 02 08.
Artículo en Inglés | MEDLINE | ID: mdl-36716211

RESUMEN

The specific and covalent labeling of the protein HaloTag with fluorescent probes in living cells makes it a powerful tool for bioimaging. However, the irreversible attachment of the probe to HaloTag precludes imaging applications that require transient binding of the probe and comes with the risk of irreversible photobleaching. Here, we introduce exchangeable ligands for fluorescence labeling of HaloTag (xHTLs) that reversibly bind to HaloTag and that can be coupled to rhodamines of different colors. In stimulated emission depletion (STED) microscopy, probe exchange of xHTLs allows imaging with reduced photobleaching as compared to covalent HaloTag labeling. Transient binding of fluorogenic xHTLs to HaloTag fusion proteins enables points accumulation for imaging in nanoscale topography (PAINT) and MINFLUX microscopy. We furthermore introduce pairs of xHTLs and HaloTag mutants for dual-color PAINT and STED microscopy. xHTLs thus open up new possibilities in imaging across microscopy platforms for a widely used labeling approach.


Asunto(s)
Colorantes Fluorescentes , Ligandos , Microscopía Fluorescente/métodos , Colorantes Fluorescentes/metabolismo , Rodaminas
3.
J Am Chem Soc ; 144(15): 6928-6935, 2022 04 20.
Artículo en Inglés | MEDLINE | ID: mdl-35380808

RESUMEN

We introduce a family of bright, rhodamine-based calcium indicators with tuneable affinities and colors. The indicators can be specifically localized to different cellular compartments and are compatible with both fluorescence and bioluminescence readouts through conjugation to HaloTag fusion proteins. Importantly, their increase in fluorescence upon localization enables no-wash live-cell imaging, which greatly facilitates their use in biological assays. Applications as fluorescent indicators in rat hippocampal neurons include the detection of single action potentials and of calcium fluxes in the endoplasmic reticulum. Applications as bioluminescent indicators include the recording of the pharmacological modulation of nuclear calcium in high-throughput compatible assays. The versatility and remarkable ease of use of these indicators make them powerful tools for bioimaging and bioassays.


Asunto(s)
Calcio , Colorantes , Animales , Calcio/metabolismo , Color , Colorantes Fluorescentes , Indicadores y Reactivos , Microscopía Fluorescente/métodos , Ratas , Rodaminas
4.
Biochemistry ; 60(33): 2560-2575, 2021 08 24.
Artículo en Inglés | MEDLINE | ID: mdl-34339177

RESUMEN

The self-labeling protein tags (SLPs) HaloTag7, SNAP-tag, and CLIP-tag allow the covalent labeling of fusion proteins with synthetic molecules for applications in bioimaging and biotechnology. To guide the selection of an SLP-substrate pair and provide guidelines for the design of substrates, we report a systematic and comparative study of the labeling kinetics and substrate specificities of HaloTag7, SNAP-tag, and CLIP-tag. HaloTag7 reaches almost diffusion-limited labeling rate constants with certain rhodamine substrates, which are more than 2 orders of magnitude higher than those of SNAP-tag for the corresponding substrates. SNAP-tag labeling rate constants, however, are less affected by the structure of the label than those of HaloTag7, which vary over 6 orders of magnitude for commonly employed substrates. Determining the crystal structures of HaloTag7 and SNAP-tag labeled with fluorescent substrates allowed us to rationalize their substrate preferences. We also demonstrate how these insights can be exploited to design substrates with improved labeling kinetics.


Asunto(s)
Colorantes Fluorescentes/química , O(6)-Metilguanina-ADN Metiltransferasa/química , Proteínas Recombinantes de Fusión/química , Cinética , Modelos Moleculares , O(6)-Metilguanina-ADN Metiltransferasa/genética , Estructura Terciaria de Proteína , Proteínas Recombinantes de Fusión/genética , Rodaminas/química , Coloración y Etiquetado , Especificidad por Sustrato
5.
Blood ; 137(8): 1037-1049, 2021 02 25.
Artículo en Inglés | MEDLINE | ID: mdl-33094319

RESUMEN

Emerging immunotherapies such as chimeric antigen receptor T cells have advanced the treatment of acute lymphoblastic leukemia. In contrast, long-term control of acute myeloid leukemia (AML) cannot be achieved by single lineage-specific targeting while sparing benign hematopoiesis. In addition, heterogeneity of AML warrants combinatorial targeting, and several suitable immunotargets (HAVCR2/CD33 and HAVCR2/CLEC12A) have been identified in adult AML. However, clinical and biologic characteristics of AML differ between children and the elderly. Here, we analyzed 36 bone marrow (BM) samples of pediatric AML patients and 13 age-matched healthy donors using whole RNA sequencing of sorted CD45dim and CD34+CD38-CD45dim BM populations and flow cytometry for surface expression of putative target antigens. Pediatric AML clusters apart from healthy myeloid BM precursors in principal-component analysis. Known immunotargets of adult AML, such as IL3RA, were not overexpressed in pediatric AML compared with healthy precursors by RNA sequencing. CD33 and CLEC12A were the most upregulated immunotargets on the RNA level and showed the highest surface expression on AML detected by flow cytometry. KMT2A-mutated infant AML clusters separately by RNA sequencing and overexpresses FLT3, and hence, CD33/FLT3 cotargeting is an additional specific option for this subgroup. CLEC12A and CD33/CLEC12Adouble-positive expression was absent in CD34+CD38-CD45RA-CD90+ hematopoietic stem cells (HSCs) and nonhematopoietic tissue, while CD33 and FLT3 are expressed on HSCs. In summary, we show that expression of immunotargets in pediatric AML differs from known expression profiles in adult AML. We identify CLEC12A and CD33 as preferential generic combinatorial immunotargets in pediatric AML and CD33 and FLT3 as immunotargets specific for KMT2A-mutated infant AML.


Asunto(s)
Regulación Leucémica de la Expresión Génica , Lectinas Tipo C/genética , Leucemia Mieloide Aguda/genética , Receptores Mitogénicos/genética , Lectina 3 Similar a Ig de Unión al Ácido Siálico/genética , Adolescente , Niño , Preescolar , Femenino , Humanos , Inmunoterapia , Lactante , Lectinas Tipo C/inmunología , Leucemia Mieloide Aguda/inmunología , Leucemia Mieloide Aguda/terapia , Masculino , Receptores Mitogénicos/inmunología , Lectina 3 Similar a Ig de Unión al Ácido Siálico/inmunología , Transcriptoma , Regulación hacia Arriba
6.
Angew Chem Int Ed Engl ; 59(31): 12885-12893, 2020 07 27.
Artículo en Inglés | MEDLINE | ID: mdl-32342666

RESUMEN

Bioorthogonal chemistry holds great potential to generate difficult-to-access protein-protein conjugate architectures. Current applications are hampered by challenging protein expression systems, slow conjugation chemistry, use of undesirable catalysts, or often do not result in quantitative product formation. Here we present a highly efficient technology for protein functionalization with commonly used bioorthogonal motifs for Diels-Alder cycloaddition with inverse electron demand (DAinv ). With the aim of precisely generating branched protein chimeras, we systematically assessed the reactivity, stability and side product formation of various bioorthogonal chemistries directly at the protein level. We demonstrate the efficiency and versatility of our conjugation platform using different functional proteins and the therapeutic antibody trastuzumab. This technology enables fast and routine access to tailored and hitherto inaccessible protein chimeras useful for a variety of scientific disciplines. We expect our work to substantially enhance antibody applications such as immunodetection and protein toxin-based targeted cancer therapies.


Asunto(s)
Proteínas/síntesis química , Química Clic , Reacción de Cicloadición , Inmunoconjugados/química , Ligasas/química , Ligasas/genética , Mutación
7.
Bioconjug Chem ; 30(5): 1405-1414, 2019 05 15.
Artículo en Inglés | MEDLINE | ID: mdl-30883100

RESUMEN

Diels-Alder reactions with inverse electron demand (DAinv) have emerged as an indispensable tool for bioorthogonal labeling and the manipulation of biomolecules. In this context, reactions between tetrazines and strained dienophiles have received attention because of high reaction rates. Current methods for the DAinv-mediated functionalization of proteins suffer from slow reactivity, impaired stability, isomerization, or elimination of the incorporated strained dienophiles. We report here a versatile platform for the posttranslational, highly selective, and quantitative modification of proteins with stable dienes. New synthetic access to minimal size tetrazine and triazine derivatives enabled us to synthesize tailored diene substrates for the lipoic acid protein ligase A (LplA) from Escherichia coli, which we employ for the rapid, mild, and quantitative bioconjugation of proteins by DAinv. The presented method benefits from the minimal tag size for LplA recognition and can be applied to proteins from any source organism. We demonstrate its broad suitability by site-specific in vitro protein labeling and live cell labeling for fluorescence microscopy. With this work we expand the scope of DAinv bioorthogonal chemistry for site-specific protein labeling, providing additional experimental flexibility for preparing well-defined bioconjugates and addressing biological questions in complex biological environments.


Asunto(s)
Proteínas de Escherichia coli/metabolismo , Ligasas/metabolismo , Triazinas/metabolismo , Reacción de Cicloadición , Escherichia coli/enzimología , Microscopía Fluorescente , Unión Proteica , Especificidad por Sustrato , Triazinas/química
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