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Name Authors DOI Group Summary Associated Publications RRIDs used Affiliations External URL Version Publication Date Proper Citation Record Last Update
MojoSort™ Selection Kits Protocol - 5
 
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Sam Li 10.17504/protocols.io.7z9hp96 BioLegend Product description and procedure summary:Target cells are either selected or depleted by incubating the sample with the biotin antibody cocktail followed by incubation with magnetic Streptavidin Nanobeads (Cat. No. 480015/480016). The magnetically labeled fraction is retained by the use of a magnetic separator. The untouched cells are collected. If these are the cells of interest; do not discard the liquid. Some of the downstream applications include functional assays, gene expression, phenotypic characterization, etc.Sample Preparation:Enzymatic digestion of mouse brain followed by myelin removal is recommended to achieve the highest purity and yield. There are several protocols published that can be applied. As a general guideline, Trypsin digestion followed by a 70/37/30% percoll gradient will increase final purity and yield.Scale up volumes if using 14 ml tubes and Magnet, and place the tube in the magnet for 10 minutes. BioLegend https://www.biolegend.com/protocols/mojosort-selection-kits-protocol-5/4244/ 1 2019 Sam Li 2019. MojoSort™ Selection Kits Protocol - 5. protocols.io dx.doi.org/10.17504/protocols.io.7z9hp96 2021-03-29 03:09:00
Effects of Serum 25-Hydroxyvitamin D Level on Decreased Bone Mineral Density at Femoral Neck and Total Hip in Chinese Type 2 Diabetes
 
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Liting Guo: Department of Endocrinology 10.17504/protocols.io.kjycupw Guo L, Gao Z, Ge H (2017) Effects of serum 25-hydroxyvitaminD level on decreased bone mineral density at femoral neck and total hip in Chinese type 2 diabetes. PLoS ONE 12(11): e0188894. doi: 10.1371/journal.pone.0188894 Department of Endocrinology, Teda International Cardiovascular Hospital, Tianjin, China https://doi.org/10.1371/journal.pone.0188894 1 2017 Liting Guo: Department of Endocrinology 2017. Effects of Serum 25-Hydroxyvitamin D Level on Decreased Bone Mineral Density at Femoral Neck and Total Hip in Chinese Type 2 Diabetes. protocols.io dx.doi.org/10.17504/protocols.io.kjycupw 2021-03-29 03:08:58
Tissue Procurement: Biosafety Guidelines
 
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Kerry Wiles 10.17504/protocols.io.6y6hfze Laboratory of Systems Pharmacology, NCIHTAN The biosafety guidelines in this protocol are based on the Center for Disease Control's Biosafety in Microbiology and Biomedical Laboratories (BMBL), which has served as the cornerstone of biosafety practice in the United States since its initial release in 1984. The information in this protocol was extracted from the BMBL and truncated to provide CHTN VUMC staff members with the knowledge necessary to complete their training requirements. The protocol is used as both a reference and training SOP for the tissue procurement and the bodily fluids/blood processing protocols. Cooperative Human Tissue Network Western Division at Vanderbilt University Medical Center 1 2021 Kerry Wiles 2021. Tissue Procurement: Biosafety Guidelines. protocols.io dx.doi.org/10.17504/protocols.io.6y6hfze 2021-03-29 03:09:00
Destain Buffer
 
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Alan Cone 10.17504/protocols.io.fw9bph6 Ju Lab Wright State University 1 2016 Alan Cone 2016. Destain Buffer. protocols.io dx.doi.org/10.17504/protocols.io.fw9bph6 2021-03-29 03:09:00
ELISA for quantification of IL-9 in human serum or plasma.
 
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Angel Justiz-Vaillant 10.17504/protocols.io.bkevkte6 University of the West Indies, [email protected] Interleukins (IL) are a type of cytokine first thought to be expressed by leukocytes alone but have later been found to be produced by many other body cells. They play essential roles in the activation and differentiation of immune cells, as well as proliferation, maturation, migration, and adhesion. They also have pro-inflammatory and anti-inflammatory properties. The primary function of interleukins is, therefore, to modulate growth, differentiation, and activation during inflammatory and immune responses. Interleukins consist of a large group of proteins that can elicit many reactions in cells and tissues by binding to high-affinity receptors in cell surfaces. Th9, Th2, Th17, mast cells, NKT cells, and regulatory T cells produce interleukin-9. It enhances T-cell survival, mast cell activation and synergy with erythropoietin.[1]Reference1. Justiz Vaillant AA, Qurie A. Interleukin. In:StatPearls. Treasure Island (FL): StatPearls Publishing; June 12, 2019. University of the West Indies St. Augustine 1 2020 Angel Justiz-Vaillant 2020. ELISA for quantification of IL-9 in human serum or plasma.. protocols.io dx.doi.org/10.17504/protocols.io.bkevkte6 2021-03-29 03:09:00
Sanger sequencing of a part of the SARS-CoV-2 spike protein
 
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Tue Sparholt Jørgensen 10.17504/protocols.io.bsbdnai6 Technical University of Denmark 1 2021 Tue Sparholt Jørgensen 2021. Sanger sequencing of a part of the SARS-CoV-2 spike protein. protocols.io dx.doi.org/10.17504/protocols.io.bsbdnai6 2021-03-29 03:09:00
How to Setup and Perform a qPCR Experiment.
 
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Promega, Trevor Wagner 10.17504/protocols.io.k5jcy4n Promega GoTaq® qPCR Master Mix(a,b) is a reagent system for quantitative PCR (qPCR). The system contains a new fluorescent DNA-binding dye that often exhibits greater fluorescence enhancement upon binding to double-stranded DNA (dsDNA) than SYBR. Green I.GoTaq® qPCR Master Mix is provided as a simple-to-use, stabilized 2X formulation that includes all components for qPCR except sample DNA, primers and water. This formulation, which includes a proprietary dsDNA-binding dye, a low level of carboxy-X-rhodamine (CXR) reference dye (identical to ROX™ dye), GoTaq. Hot Start Polymerase, MgCl2, dNTPs and a proprietary reaction buffer, produces optimal results in qPCR experiments. A separate tube of CXR Reference Dye is included for use with instruments that require a higher level of reference dye than that in the GoTaq® qPCR Master Mix.Advantages of the GoTaq® qPCR Master MixDye: The proprietary dye provides brighter dsDNA-dependent fluorescence than SYBR. Green I, with less PCR inhibition than SYBR® Green. The dye enables efficient amplification, resulting in earlier quantification cycle (Cq) values and an expanded linear range using the same filters and settings as SYBR® Green I. The CXR reference dye can be detected using the same filters and settings as those used for ROX™ dye.Quantification cycle is formerly known as cycle threshold (Ct).Polymerase/Buffer Formulation: GoTaq® Hot Start Polymerase contains full-length Taq DNA polymerase bound to a proprietary antibody that prevents polymerase activity at room temperature. Thermal activation is achieved by incubating the assembled reaction at 95°C for 2 minutes. The proprietary polymerase/buffer formulation accommodates extended cycle numbers (45–50 cycles) and is compatible with thermal cycling programs that require extended activation (95°C for 10 minutes).Performance: You can expect reliable performance with minimal lot-to-lot variation: efficient, sensitive and linear qPCR amplification over a wide dynamic range.GoTaq® qPCR Master Mix ProtocolIf you are currently performing dye-based qPCR, the GoTaq® qPCR Master Mix can simply be substituted for your current master mix. For consistency within an experimental set, prepare a sufficient volume of reaction mix without template DNA for the DNA standard reactions and experimental sample reactions. The protocol for a 50μl reaction is outlined below. Component volumes may be scaled as appropriate. This protocol assumes that 20% of the reaction volume is DNA template (e.g., 10μl of DNA template added to 40μl of reaction mix). If the volume of DNA template is more or less than 10μl, adjust the volume of Nuclease-Free Water accordingly so that the final reaction volume is 50μl. , Promega Corporation https://www.promega.com/-/media/files/resources/protocols/technical-manuals/101/gotaq-qpcr-master-mix-protocol.pdf?la=en 1 2018 Promega, Trevor Wagner 2018. How to Setup and Perform a qPCR Experiment.. protocols.io dx.doi.org/10.17504/protocols.io.k5jcy4n 2021-03-29 03:09:03
Batch absorption of Urm1-Flag conjugates from Drosophila tissues for mass spectrometry analysis
 
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Caroline Grabbe, Ingrid Dacklin, Behzad Khoshnood 10.17504/protocols.io.jizckf6 Khoshnood B, Dacklin I, Grabbe C (2017) A proteomics approach to identify targets of the ubiquitin-like molecule Urm1 in Drosophila melanogaster. PLoS ONE 12(9): e0185611. doi: 10.1371/journal.pone.0185611 Umeå University, Umeå University, Umeå University https://doi.org/10.1371/journal.pone.0185611 1 2017 Caroline Grabbe, Ingrid Dacklin, Behzad Khoshnood 2017. Batch absorption of Urm1-Flag conjugates from Drosophila tissues for mass spectrometry analysis. protocols.io dx.doi.org/10.17504/protocols.io.jizckf6 2021-03-29 03:09:03
Plant Chromatin Immunoprecipitation
 
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Laura Poza-Viejo, Ivan del Olmo, Pedro Crevillén 10.17504/protocols.io.zmff43n Chromatin Immunoprecipitation (ChIP) is a crucial technique to study chromatin regulation, epigenetic phenomena and transcription factor DNA-binding in vivo. This technique is widely used in model plant systems like Arabidopsis but reliability in other plant systems is challenging. We adapted our well-established Arabidopsis ChIP protocol to be used with leaves and inflorescences of Brassica crops species (Brassica rapa and Brassica napus). This protocol was originally based on Gendrel et al. Nature Methods volume 2, pages 213–218 (2005), but has several modifications inlcluding chromatin sonication using a BioRuptor (Diagenode), immunoprecipitation using magnetic Dynabeads (Thermofisher) and DNA elution recovery performed using Chelex 100 (Bio Rad). The protocol is quick and very reproducible and has been validated against a number of histone modifications and protein tag antibodies. .justify:after { content: ""; display:inline-block; width: 100%; } Centro de Biotecnología y Genómica de Plantas, Universidad Politécnica de Madrid (UPM) - Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria (INIA), 28223 Pozuelo de Alarcón (Madrid), Spain, Centro de Biotecnología y Genómica de Plantas, Universidad Politécnica de Madrid (UPM) - Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria (INIA), 28223 Pozuelo de Alarcón (Madrid), Spain, Centro de Biotecnología y Genómica de Plantas, Universidad Politécnica de Madrid (UPM) - Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria (INIA), 28223 Pozuelo de Alarcón (Madrid), Spain 1 2019 Laura Poza-Viejo, Ivan del Olmo, Pedro Crevillén 2019. Plant Chromatin Immunoprecipitation. protocols.io dx.doi.org/10.17504/protocols.io.zmff43n 2021-03-29 03:09:03
The Healthy Brain Network Serial Scanning Initiative, Sessions 2-7 and 9-14
 
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David O'Connor, Natan Vega Potler, Meagan Kovacs, Ting Xu, Lei Ai, John Pellman, Tamara Vanderwal, Lucas Parra, Samantha Cohen, Satrajit Ghosh, Jasmine Escalera, Natalie Grant-Villegas, Yael Osman, Anastasia Bui, R Cameron Craddock, Michael P Milham 10.17504/protocols.io.gxubxnw GigaScience Press This protocol describes MRI, voice recoding, and some basic physiological measurements and questionnaires for Sessions 2-7 and 9-14 of the following work:David O'Connor, et. al. (2017) The Healthy Brain Network Serial Scanning Initiative. GigaScience... , , , , , , , , , , , , , , , 2 2017 David O'Connor, Natan Vega Potler, Meagan Kovacs, Ting Xu, Lei Ai, John Pellman, Tamara Vanderwal, Lucas Parra, Samantha Cohen, Satrajit Ghosh, Jasmine Escalera, Natalie Grant-Villegas, Yael Osman, Anastasia Bui, R Cameron Craddock, Michael P Milham 2017. The Healthy Brain Network Serial Scanning Initiative, Sessions 2-7 and 9-14. protocols.io dx.doi.org/10.17504/protocols.io.gxubxnw 2021-03-29 03:09:03
ROS staining
 
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Magdalena Julkowska 10.17504/protocols.io.peidjce Salt Lab KAUST Protocol adapted from Shin et al., 2005 and Orman-Ligeza et al. 2016 (citing Shin) King Abdullah University of Science and Technology 1 2020 Magdalena Julkowska 2020. ROS staining. protocols.io dx.doi.org/10.17504/protocols.io.peidjce 2021-03-29 03:09:02
A membrane-enriched preparation of culture samples for mass spectrometry-based proteomics
 
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Gwendolyn Gallagher 10.17504/protocols.io.bdapi2dn Coleman Lab Purpose: Preparation of culture samples for mass spectrometry-based proteomicsPrinciple: Utilizing a membrane-enrichment method of lysing cells and preparing peptides has yielded higher representation of membrane proteins in our mass spectrometry-based proteomic results.Traditional methods do not adequately extract or digest hydrophobic, transmembrane proteins. Particularly, we can now see full expression patterns of proteorhodopsin, something we could not detect using traditional mass spec proteomics prep.This protocol builds on the work of Molloy (2008) Methods Mol Biol (doi:10.1007/978-1-60327-064-9_30), Erde et al. (2014) J. Proteome Res. (doi:10.1021/pr4010019), and Waldbauer, et al. (2017) Anal. Chem. (doi: 10.1021/acs.analchem.7b02752).Pure culture samples were spun down and flash frozen for proteomics.A carbonate extraction protocol was used for membrane enrichment before eFASP.The membrane fraction was enzymatically digested with both chymotrypsin and trypsin and the cytosolic fraction was digested with just trypsin.These samples were then ready to be processed further by in vitroisotopic peptide labeling (diDO-IPTL). Gwendolyn Gallagher [University of Chicago], Jacob Waldbauer [University of Chicago] 1 2020 Gwendolyn Gallagher 2020. A membrane-enriched preparation of culture samples for mass spectrometry-based proteomics. protocols.io dx.doi.org/10.17504/protocols.io.bdapi2dn 2021-03-29 03:09:02
Genome-wide identification of genes involved in the lignin biosynthetic pathway
 
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Hansheng Zhao 10.17504/protocols.io.phjdj4n Zhao H, Gao Z, Wang L, Wang J, Wang S, Fei B, Chen C, Shi C, Liu X, Zhang H, Lou Y, Chen L, Sun H, Zhou X, Wang S, Zhang C, Xu H, Li L, Yang Y, Wei Y, Yang W, Gao Q, Yang H, Zhao S, Jiang Z, Chromosome-level reference genome and alternative splicing atlas of moso bamboo (). GigaScience 7(10). doi: 10.1093/gigascience/giy115 [email protected] https://doi.org/10.1093/gigascience/giy115 1 2018 Hansheng Zhao 2018. Genome-wide identification of genes involved in the lignin biosynthetic pathway. protocols.io dx.doi.org/10.17504/protocols.io.phjdj4n 2021-03-29 03:09:02
Co-Incubation protocol for transforming heterotrophic dinoflagellates (e.g. Oxyrrhis marina)
 
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Lu Wang, Brittany Sprecher, Huan Zhang, and Senjie Lin 10.17504/protocols.io.7pphmmn Protist Research to Optimize Tools in Genetics (PROT-G) University of Connecticut, University of Connecticut, University of Connecticut, University of Connecticut http://biorxiv.org/lookup/doi/10.1101/718239 3 2019 Lu Wang, Brittany Sprecher, Huan Zhang, and Senjie Lin 2019. Co-Incubation protocol for transforming heterotrophic dinoflagellates (e.g. Oxyrrhis marina). protocols.io dx.doi.org/10.17504/protocols.io.7pphmmn 2021-03-29 03:09:00
SalivaDirect: RNA extraction-free SARS-CoV-2 diagnostics
 
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Chantal Vogels, Doug E. Brackney, Chaney Kalinich, Isabel Ott, Nathan Grubaugh, Anne Wyllie 10.17504/protocols.io.bjswknfe Coronavirus Method Development Community, XPRIZE Rapid Covid Testing SalivaDirect is an RNA-extraction free, dual-plexed RT-qPCR method for SARS-CoV-2 detection. It can be broadly implemented as it (1) does not require saliva collection tubes containing preservatives, (2) does not require specialized equipment for RNA extraction, and (3) is validated for use with products from multiple vendors. Thus, the simplicity and flexibility of SalivaDirect means that it is not as affected by supply chain bottlenecks as some other assays. Our method is RNA-extraction free which enables testing of low volume and minimally processed saliva in dual-plexed RT-qPCR for SARS-CoV-2 detection. Saliva will be treated with proteinase K followed by a heat inactivation step, and is then directly used as input in the dual-plexed RT-qPCR test. Our aim was not to design new primers and probes for RT-qPCR testing, but rather to use validated primer and probe sets (N1 and RP) developed by the US CDC. The human Ribonuclease P (RP) probe was modified with a different fluorophore so that the primer/probe set could be combined in a dualplex assay, reducing the number of tests to 1 assay with 2 sets.Version 2 includes: Optimized thermocycler conditionsLocally validated alternative options for Proteinase K, RT-qPCR master mix, and thermocyclersUse of 8-strip tubes for sample processing step, due to contamination issues in 96-well plates.Version 3 has been updated to remove steps for sample self-collection.Version 4 has updated Ct thresholds for the ABI 7500 Fast Dx. Department of Epidemiology of Microbial Diseases, Yale School of Public Health, Department of Environmental Sciences The Connecticut Agricultural Experiment Station; Department of Epidemiology of Microbial Diseases, Yale School of Public Health, Department of Epidemiology of Microbial Diseases, Yale School of Public Health, Department of Epidemiology of Microbial Diseases, Yale School of Public Health, Department of Epidemiology of Microbial Diseases, Yale School of Public Health, Department of Epidemiology of Microbial Diseases, Yale School of Public Health https://covidtrackerct.com/about-salivadirect/ 4 2020 Chantal Vogels, Doug E. Brackney, Chaney Kalinich, Isabel Ott, Nathan Grubaugh, Anne Wyllie 2020. SalivaDirect: RNA extraction-free SARS-CoV-2 diagnostics. protocols.io dx.doi.org/10.17504/protocols.io.bjswknfe 2021-03-29 03:09:00
PBMC- 02 - CD4+ T cell Isolation from PBMC with “Dynabeads CD4 Positive Isolation Kit”
 
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Marco Cosentino, Elisa Storelli, Alessandra Luini, Massimiliano Legnaro, Emanuela Rasini, Marco Ferrari, Franca Marino 10.17504/protocols.io.bpxqmpmw List of published works using this protocol:- Kustrimovic N., Comi C., Magistrelli L., Rasini E., Legnaro M., Bombelli R., Aleksic I., Blandini F., Minafra B., Riboldazzi G., Struchio A., Mauri M., Bono G., Marino F., Cosentino M. Parkinson’s disease patients have a complex phenotypic and functional Th1 bias: cross-sectional studies of CD4+ Th1/Th2/T17 and Treg in drug-naïve and drug-treated patients (2018). Journal of neuroinflammation, 15(1), 205. https://doi.org/10.1186/s12974-018-1248-8- Kustrimovic, N., Rasini, E., Legnaro, M., Bombelli, R., Aleksic, I., Blandini, F., Comi, C., Mauri, M., Minafra, B., Riboldazzi, G., Sanchez-Guajardo, V., Marino, F., & Cosentino, M. (2016). Dopaminergic Receptors on CD4+ T Naive and Memory Lymphocytes Correlate with Motor Impairment in Patients with Parkinson's Disease. Scientific reports, 6, 33738. https://doi.org/10.1038/srep33738- Cosentino M., Ferrari M., Kustrimovic N., Rasini E., Marino F. (2015). Influence of dopamine receptor gene polymorphisms on circulating T lymphocytes: A pilot study in healthy subjects. Human immunology, 76, 10, 747-752. https://doi.org/10.1016/j.humimm.2015.09.032 Center for Research in Medical Pharmacology, University of Insubria (Varese, Italy), Center for Research in Medical Pharmacology, University of Insubria (Varese, Italy), Center for Research in Medical Pharmacology, University of Insubria (Varese, Italy), Center for Research in Medical Pharmacology, University of Insubria (Varese, Italy), Center for Research in Medical Pharmacology, University of Insubria (Varese, Italy), Center for Research in Medical Pharmacology, University of Insubria (Varese, Italy), Center for Research in Medical Pharmacology, University of Insubria (Varese, Italy) 2 2020 Marco Cosentino, Elisa Storelli, Alessandra Luini, Massimiliano Legnaro, Emanuela Rasini, Marco Ferrari, Franca Marino 2020. PBMC- 02 - CD4+ T cell Isolation from PBMC with “Dynabeads CD4 Positive Isolation Kit”. protocols.io dx.doi.org/10.17504/protocols.io.bpxqmpmw 2021-03-29 03:09:04
Mimulus in planta Transformation
 
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Yaowu Yuan 10.17504/protocols.io.3tkgnkw Mimulus This collection consists of three protocols: 1. Agro Transformation a) Using Electropotator b) Using Freeze-Thaw Method2. Agro Preparation 3. Plant infiltration University of Connecticut http://mimubase.org/FTP/Protocols/Stable_Transformation/Mimulus%20in%20planta%20transformation.pdf 1 2019 Yaowu Yuan 2019. Mimulus in planta Transformation. protocols.io dx.doi.org/10.17504/protocols.io.3tkgnkw 2021-03-29 03:09:04
Euplotes crassus transfection using Lipofectamine 2000 as vehicle (provisional)
 
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RACHELE CESARONI, Rachele Cesaroni 10.17504/protocols.io.2aigace Protist Research to Optimize Tools in Genetics (PROT-G) University of Bern, Institute of Biology, Universität Bern 1 2019 RACHELE CESARONI, Rachele Cesaroni 2019. Euplotes crassus transfection using Lipofectamine 2000 as vehicle (provisional). protocols.io dx.doi.org/10.17504/protocols.io.2aigace 2021-03-29 03:09:03
Cell Hashing
 
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Brenton Paolella 10.17504/protocols.io.yp6fvre This protocol is for performing Cell Hashing only. Sample multiplexing and super-loading on single cell RNA-sequencing platforms.Cell Hashing uses a series of oligo-tagged antibodies against ubiquitously expressed surface proteins with different barcodes to uniquely label cells from distinct samples, which can be subsequently pooled in one scRNA-seq run. By sequencing these tags alongside the cellular transcriptome, we can assign each cell to its sample of origin, and robustly identify doublets originating from multiple samples. Broad Institute https://cite-seq.com/cell-hashing/ 2 2019 Brenton Paolella 2019. Cell Hashing. protocols.io dx.doi.org/10.17504/protocols.io.yp6fvre 2021-03-29 03:09:04
Blunting Protocol (M0203)
 
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New England Biolabs 10.17504/protocols.io.cgwtxd New England Biolabs (NEB) Protocol for blunting ends by 3' overhang removal and fill-in of 3' recessed (5' overhang) ends using T4 DNA Polymerase. New England Biolabs https://www.neb.com/protocols/2014/01/13/protocol-for-blunting-ends-by-3-overhang-removal-and-fill-in-of-3-recessed-5-overhang-ends-using1 1 2015 New England Biolabs 2015. Blunting Protocol (M0203). protocols.io dx.doi.org/10.17504/protocols.io.cgwtxd 2021-03-29 03:09:03

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