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  • Biochemical characterization of the interaction between KRAS and Argonaute 2

    Biochem Biophys Rep | 2021 | 查看原文 |

    作者:Jessica J Waninger, Tyler S Beyett, Varun V Gadkari, Ronald F Siebenaler, Carson Kenum, Sunita Shankar, Brandon T Ruotolo, Arul M Chinnaiyan, John J G Tesmer

    摘要:Oncogenic mutations in KRAS result in a constitutively active, GTP-bound form that in turn activates many proliferative pathways. However, because of its compact and simple architecture, directly targeting KRAS with small molecule drugs has been challenging. Another approach is to identify targetable proteins that interact with KRAS. Argonaute 2 (AGO2) was recently identified as a protein that facilitates RAS-driven oncogenesis. Whereas previous studies described thein vivoeffect of AGO2 on cancer progression in cells harboring mutated KRAS, here we sought to examine their direct interaction using purified proteins. We show that full length AGO2 co-immunoprecipitates with KRAS using purified components, however, a complex between FL AGO2 and KRAS could not be isolated. We also generated a smaller N-terminal fragment of AGO2 (NtAGO2) which is believed to represent the primary binding site of KRAS. A complex with NtAGO2 could be detected via ion-mobility mass spectrometry and size exclusion chromatography. However, the data suggest that the interaction of KRAS with purified AGO2 (NtAGO2 or FL AGO2) is weak and likely requires additional cellular components or proteo-forms of AGO2 that are not readily available in our purified assay systems. Future studies are needed to determine what conformation or modifications of AGO2 are necessary to enrich KRAS association and regulate its activities.
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    应用产品:Lumit® Immunoassay Cellular Systems

  • Profiling oncogenic KRAS mutant drugs with a cell-based Lumit p-ERK immunoassay

    SLAS Discov . | 2022 | 查看原文 |

    作者:Matthew Swiatnicki, Laurie Engel, Riva Shrestha, Juliano,Alves Said A Goueli, Hicham Zegzouti

    摘要:KRAS is one of the most heavily mutated oncogenes in cancer and targeting mutant KRAS with drugs has proven difficult. However, recent FDA approval of the KRAS G12C selective inhibitor sotorasib (AMG-510), has breathed new life into the drive to develop mutant KRAS inhibitors. In an effort to study RAS inhibitors in cells and identify new compounds that inhibit Ras signaling, western blotting and ELISA assays are commonly used. These traditional immunoassays are tedious, require multiple washing steps, and are not easily adaptable to a high throughput screening (HTS) format. To overcome these limitations, we applied Lumit immunoassay technology to analyze RAS signaling pathway activation and inhibition through the detection of phosphorylated ERK. The assay we developed was used to rank order potencies of allele specific inhibitors within cell lines harboring various activating KRAS mutations. An inhibition profile was obtained indicating various potencies and selectivity of the inhibitors, including MRTX-1133, which was shown to be highly potent against KRAS G12D signaling. MRTX-1133 had approximately 40 and 400 times less inhibitory potency against G12C and G12V mutant KRAS, respectively, while no inhibition of WT KRAS was observed. The potency of PROTAC compound LC-2 targeting selective degradation of KRAS G12C was also tested using the Lumit pERK immunoassay, and a maximal decrease in RAS signaling was achieved. Lumit immunoassays provide a rapid, homogeneous platform for detecting signaling pathway activation and inhibition. Our results demonstrate that this bioluminescent technology can streamline the analysis of signaling pathways of interest, such as RAS-dependent pathways, and be used to identify much needed inhibitors. The results further imply that similar assay designs could be applied to other signaling pathway nodes.
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    关键词:Profiling oncogenic KRAS mutant drugs with a cell-based Lumit p-ERK immunoassay

    应用产品:Lumit® Immunoassay Cellular SystemsAnti-Mouse IgG (H+L), HRP Conjugate

  • Development of a novel homogeneous immunoassay using the engineered luminescent enzyme NanoLuc for the quantification of the mycotoxin fumonisin B1

    Biosens Bioelectron | 2021 | 查看原文 |

    作者:Tawfiq Alsulami, Nidhi Nath, Rod Flemming, Hui Wang, Wenhui Zhou, Jae-Hyuk Yu

    摘要:Compared to the traditional heterogeneous assays, a homogeneous immunoassay is a preferred format for its simplicity. By cloning and isolating luminescent proteins from bioluminescent organisms, bioluminescence has been widely used for various biological applications. In this study, we present the development of a homogeneous luminescence immunoassay (FNanoBiT assay) for detection of fumonisin B1 (FB1), based on the binding of two subunits of an engineered luminescent protein (NanoLuc). For the detection of the mycotoxin FB1 in foods, the anti-fumonisin antibody was conjugated to the large subunit of NanoLuc (FLgBiT), and the FB1 was conjugated to the small subunit (FSmBiT). The conjugates were used for the detection of FB1 in a competitive immunoassay format without the need of a secondary antibody, or washing steps. The developed FNanoBiT assay revealed high specificity toward FB1 with no cross-reactivity with other mycotoxins, and it demonstrated acceptable recovery (higher than 94%) and relative standard deviation from spiked maize samples. Further, the assay was successfully applied for the detection of FB1 in naturally contaminated maize, with a dynamic range of 0.533-6.81 ng mL-1 and a detection limit of 0.079 ng mL-1. The results derived with FNanoBiT assay of all spiked samples showed a strong correlation to those obtained by the High-performance liquid chromatography method. Thus, the FNanoBiT based homogeneous immunoassay could be used as a rapid, and simple tool for the analysis of mycotoxin-contaminated foods.
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    关键词:Biosensor; FLgBiT; FNanoBiT assay; FSmBiT; Fumonisin; Luminescence.

    应用产品:Lumit® Immunoassay Labeling Kit and Detection ReagentsNano-Glo Extended Live Cell Substrates

  • Stress-induced phase separation of ERES components into Sec bodies precedes ER exit inhibition in mammalian cells

    J Cell Sci | 2022 | 查看原文 |

    作者:Wessel van Leeuwen, Dan T M Nguyen, Rianne Grond, Tineke Veenendaal, Catherine Rabouille ,Ginny G Farías

    摘要:Phase separation of components of ER exit sites (ERES) into membraneless compartments, the Sec bodies, occurs in Drosophila cells upon exposure to specific cellular stressors, namely, salt stress and amino acid starvation, and their formation is linked to the early secretory pathway inhibition. Here, we show Sec bodies also form in secretory mammalian cells upon the same stress. These reversible and membraneless structures are positive for ERES components, including both Sec16A and Sec16B isoforms and COPII subunits. We find that Sec16A, but not Sec16B, is a driver for Sec body formation, and that the coalescence of ERES components into Sec bodies occurs by fusion. Finally, we show that the stress-induced coalescence of ERES components into Sec bodies precedes ER exit inhibition, leading to their progressive depletion from ERES that become non-functional. Stress relief causes an immediate dissolution of Sec bodies and the concomitant restoration of ER exit. We propose that the dynamic conversion between ERES and Sec body assembly, driven by Sec16A, regulates protein exit from the ER during stress and upon stress relief in mammalian cells, thus providing a conserved pro-survival mechanism in response to stress.
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    关键词:ER exit sites; ERES remodeling; Early secretory pathway; Mammalian cells; Phase separation; Protein transport; Sec body; Sec16; Stress.

    应用产品:GoScript™ Reverse TranscriptaseGoTaq® G2 DNA Polymerase

  • Single molecule microscopy to profile the effect of zinc status on transcription factor dynamics

    Scientific Report | 2022 | 查看原文 |

    作者:Leah J Damon, Jesse Aaron, Amy E Palmer

    摘要:The regulation of transcription is a complex process that involves binding of transcription factors (TFs) to specific sequences, recruitment of cofactors and chromatin remodelers, assembly of the pre-initiation complex and recruitment of RNA polymerase II. Increasing evidence suggests that TFs are highly dynamic and interact only transiently with DNA. Single molecule microscopy techniques are powerful approaches for tracking individual TF molecules as they diffuse in the nucleus and interact with DNA. Here we employ multifocus microscopy and highly inclined laminated optical sheet microscopy to track TF dynamics in response to perturbations in labile zinc inside cells. We sought to define whether zinc-dependent TFs sense changes in the labile zinc pool by determining whether their dynamics and DNA binding can be modulated by zinc. We used fluorescently tagged versions of the glucocorticoid receptor (GR), with two C4 zinc finger domains, and CCCTC-binding factor (CTCF), with eleven C2H2 zinc finger domains. We found that GR was largely insensitive to perturbations of zinc, whereas CTCF was significantly affected by zinc depletion and its dwell time was affected by zinc elevation. These results indicate that at least some transcription factors are sensitive to zinc dynamics, revealing a potential new layer of transcriptional regulation.
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    关键词:转录因子,转录调控,单分子成像,荧光成像,荧光HaloTag®配基

    应用产品:Janelia Fluor® HaloTag® Ligands

  • Synaptotagmin 7 is targeted to the axonal plasma membrane through γ-secretase processing to promote synaptic vesicle docking in mouse hippocampal neurons

    Neuroscience | 2021 | 查看原文 |

    作者:Jason D Vevea,Grant F Kusick,Kevin C Courtney,Erin Chen,Shigeki Watanabe,Edwin R Chapman

    摘要:Synaptotagmin 7 (SYT7) has emerged as a key regulator of presynaptic function, but its localization and precise role in the synaptic vesicle cycle remain the subject of debate. Here, we used iGluSnFR to optically interrogate glutamate release, at the single-bouton level, in SYT7KO-dissociated mouse hippocampal neurons. We analyzed asynchronous release, paired-pulse facilitation, and synaptic vesicle replenishment and found that SYT7 contributes to each of these processes to different degrees. ‘Zap-and-freeze’ electron microscopy revealed that a loss of SYT7 diminishes docking of synaptic vesicles after a stimulus and inhibits the recovery of depleted synaptic vesicles after a stimulus train. SYT7 supports these functions from the axonal plasma membrane, where its localization and stability require both γ-secretase-mediated cleavage and palmitoylation. In summary, SYT7 is a peripheral membrane protein that controls multiple modes of synaptic vesicle (SV) exocytosis and plasticity, in part, through enhancing activity-dependent docking of SVs.
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    关键词:关键词:蛋白定位,翻译后修饰,超分辨成像,JF HaloTag®配基

    应用产品:pHTC HaloTag® CMV-neo VectorJanelia Fluor® HaloTag® Ligands

  • Excitatory and Inhibitory Neurons Utilize Different Ca2+ Sensors and Sources to Regulate Spontaneous Release

    Neuron | 2018 | 查看原文 |

    作者:Nicholas A Courtney, Joseph S Briguglio, Mazdak M Bradberry, Christina Greer, Edwin R Chapman

    摘要:Spontaneous neurotransmitter release (mini) is an important form of Ca2+-dependent synaptic transmission that occurs in the absence of action potentials. A molecular understanding of this process requires an identification of the underlying Ca2+sensors. Here, we address the roles of the relatively low- and high-affinity Ca2+sensors, synapotagmin-1 (syt1) and Doc2α/β, respectively. We found that both syt1 and Doc2 regulate minis, but, surprisingly, their relative contributions depend on whether release was from excitatory or inhibitory neurons. Doc2α promoted glutamatergic minis, while Doc2β and syt1 both regulated GABAergic minis. We identified Ca2+ligand mutations in Doc2 that either disrupted or constitutively activated the regulation of minis. Finally, Ca2+entry via voltage-gated Ca2+channels triggered miniature GABA release by activating syt1, but had no effect on Doc2-driven minis. This work reveals an unexpected divergence in the regulation of spontaneous excitatory and inhibitory transmission in terms of both Ca2+sensors and sources.
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    关键词:Doc2; calcium sensor; membrane fusion; miniature release; neurotransmission; neurotransmitter; spontaneous release; synaptic transmission; synaptotagmin I.

    应用产品:

  • Imaging dynamic and selective low-complexity domain interactions that control gene transcription

    Science | 2018 | 查看原文 |

    作者:Shasha Chong, Claire Dugast-Darzacq, Zhe Liu, Peng Dong, Gina M Dailey, Claudia Cattoglio, Alec Heckert, Sambashiva Banala, Luke Lavis , Xavier Darzacq, Robert Tjian

    摘要:Many eukaryotic transcription factors (TFs) contain intrinsically disordered low-complexity sequence domains (LCDs), but how these LCDs drive transactivation remains unclear. We used live-cell single-molecule imaging to reveal that TF LCDs form local high-concentration interaction hubs at synthetic and endogenous genomic loci. TF LCD hubs stabilize DNA binding, recruit RNA polymerase II (RNA Pol II), and activate transcription. LCD-LCD interactions within hubs are highly dynamic, display selectivity with binding partners, and are differentially sensitive to disruption by hexanediols. Under physiological conditions, rapid and reversible LCD-LCD interactions occur between TFs and the RNA Pol II machinery without detectable phase separation. Our findings reveal fundamental mechanisms underpinning transcriptional control and suggest a framework for developing single-molecule imaging screens for drugs targeting gene regulatory interactions implicated in disease.
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    关键词:转录因子,单分子成像,荧光成像,荧光HaloTag®配基

    应用产品:Janelia Fluor® HaloTag® Ligands

  • Single-shot super-resolution total internal reflection fluorescence microscopy

    Nature Methods | 2018 | 查看原文 |

    作者:Min Guo, Panagiotis Chandris, John Paul Giannini, Adam J Trexler, Robert Fischer, Jiji Chen, Harshad D Vishwasrao, Ivan Rey-Suarez , Yicong Wu, Xufeng Wu, Clare M Waterman, George H Patterson, Ar

    摘要:We combined instant structured illumination microscopy (iSIM) with total internal reflection fluorescence microscopy (TIRFM) in an approach referred to as instant TIRF-SIM, thereby improving the lateral spatial resolution of TIRFM to 115 ± 13 nm without compromising speed, and enabling imaging frame rates up to 100 Hz over hundreds of time points. We applied instant TIRF-SIM to multiple live samples and achieved rapid, high-contrast super-resolution imaging close to the coverslip surface.
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    关键词:iSIM, TIRFM, TIRF-SIM, 超分辨成像, Janelia Fluor® HaloTag® Ligand

    应用产品:Janelia Fluor® HaloTag® Ligands

  • Quantifying transcription factor binding dynamics at the single-molecule level in live cells

    Methods | 2017 | 查看原文 |

    作者:Diego M Presman, David A Ball, Ville Paakinaho, Jonathan B Grimm, Luke D Lavis, Tatiana S Karpova, Gordon L Hager

    摘要:Progressive, technological achievements in the quantitative fluorescence microscopy field are allowing researches from many different areas to start unraveling the dynamic intricacies of biological processes inside living cells. From super-resolution microscopy techniques to tracking of individual proteins, fluorescence microscopy is changing our perspective on how the cell works. Fortunately, a growing number of research groups are exploring single-molecule studies in living cells. However, no clear consensus exists on several key aspects of the technique such as image acquisition conditions, or analysis of the obtained data. Here, we describe a detailed approach to perform single-molecule tracking (SMT) of transcription factors in living cells to obtain key binding characteristics, namely their residence time and bound fractions. We discuss different types of fluorophores, labeling density, microscope, cameras, data acquisition, and data analysis. Using the glucocorticoid receptor as a model transcription factor, we compared alternate tags (GFP, mEOS, HaloTag, SNAP-tag, CLIP-tag) for potential multicolor applications. We also examine different methods to extract the dissociation rates and compare them with simulated data. Finally, we discuss several challenges that this exciting technique still faces.
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    关键词:DNA binding; Dynamics; Fluorescence microscopy; Glucocorticoid receptor; Single-molecule tracking; Transcription factor.

    应用产品:Janelia Fluor® HaloTag® Ligands

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