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Zoo in der Nacht Pille Lamm gfp11 sequence bieten Absondern Verrückter

Part:BBa K1997019 - parts.igem.org
Part:BBa K1997019 - parts.igem.org

Replication-Competent Influenza A Virus That Encodes a Split-Green  Fluorescent Protein-Tagged PB2 Polymerase Subunit Allows Live-Cell Imaging  of the Virus Life Cycle | Journal of Virology
Replication-Competent Influenza A Virus That Encodes a Split-Green Fluorescent Protein-Tagged PB2 Polymerase Subunit Allows Live-Cell Imaging of the Virus Life Cycle | Journal of Virology

Activity-independent screening of secreted proteins using split GFP -  ScienceDirect
Activity-independent screening of secreted proteins using split GFP - ScienceDirect

Determining targeting specificity of nuclear-encoded organelle proteins  with the self-assembling split fluorescent protein toolkit | bioRxiv
Determining targeting specificity of nuclear-encoded organelle proteins with the self-assembling split fluorescent protein toolkit | bioRxiv

A New Protein-Protein Interaction Sensor Based on Tripartite Split-GFP  Association
A New Protein-Protein Interaction Sensor Based on Tripartite Split-GFP Association

High-Throughput Protein–Protein Interaction Assays Using Tripartite  Split-GFP Complementation | SpringerLink
High-Throughput Protein–Protein Interaction Assays Using Tripartite Split-GFP Complementation | SpringerLink

The iSplit GFP assay detects intracellular recombinant proteins in Bacillus  subtilis | Microbial Cell Factories | Full Text
The iSplit GFP assay detects intracellular recombinant proteins in Bacillus subtilis | Microbial Cell Factories | Full Text

Addgene: MCP-GFP1-10 P2A PCP-GFP11
Addgene: MCP-GFP1-10 P2A PCP-GFP11

A scalable strategy for high-throughput GFP tagging of endogenous human  proteins. - Abstract - Europe PMC
A scalable strategy for high-throughput GFP tagging of endogenous human proteins. - Abstract - Europe PMC

Versatile protein tagging in cells with split fluorescent protein | Nature  Communications
Versatile protein tagging in cells with split fluorescent protein | Nature Communications

Jonas Koeppel on Twitter: "Why insert short sequences? Many potential  applications here. Protein tagging (even imaging with mNeonGreen-11 for  example), expression control, knockouts by inserting stop codons,  structural variation & genome engineering (
Jonas Koeppel on Twitter: "Why insert short sequences? Many potential applications here. Protein tagging (even imaging with mNeonGreen-11 for example), expression control, knockouts by inserting stop codons, structural variation & genome engineering (

Versatile protein tagging in cells with split fluorescent protein | Nature  Communications
Versatile protein tagging in cells with split fluorescent protein | Nature Communications

Deconstructing Green Fluorescent Protein | Journal of the American Chemical  Society
Deconstructing Green Fluorescent Protein | Journal of the American Chemical Society

Improved Split Fluorescent Proteins for Endogenous Protein Labeling |  bioRxiv
Improved Split Fluorescent Proteins for Endogenous Protein Labeling | bioRxiv

A. GFP complementation vectors. The scFv-D1.3-GFP11 construct was... |  Download Scientific Diagram
A. GFP complementation vectors. The scFv-D1.3-GFP11 construct was... | Download Scientific Diagram

Addgene: KIF5C(1-560)-GFP11 Sequences
Addgene: KIF5C(1-560)-GFP11 Sequences

A scalable strategy for high-throughput GFP tagging of endogenous human  proteins | PNAS
A scalable strategy for high-throughput GFP tagging of endogenous human proteins | PNAS

GFP-Based Biosensors | IntechOpen
GFP-Based Biosensors | IntechOpen

A Multicolor Split-Fluorescent Protein Approach to Visualize Listeria  Protein Secretion in Infection
A Multicolor Split-Fluorescent Protein Approach to Visualize Listeria Protein Secretion in Infection

Split green fluorescent protein as a tool to study infection with a plant  pathogen, Cauliflower mosaic virus
Split green fluorescent protein as a tool to study infection with a plant pathogen, Cauliflower mosaic virus

IJMS | Free Full-Text | Development and Applications of Superfolder and  Split Fluorescent Protein Detection Systems in Biology
IJMS | Free Full-Text | Development and Applications of Superfolder and Split Fluorescent Protein Detection Systems in Biology

High-content tripartite split-GFP cell-based assays to screen for  modulators of small GTPase activation
High-content tripartite split-GFP cell-based assays to screen for modulators of small GTPase activation

A New Protein-Protein Interaction Sensor Based on Tripartite Split-GFP  Association
A New Protein-Protein Interaction Sensor Based on Tripartite Split-GFP Association

Improved split fluorescent proteins for endogenous protein labeling |  Nature Communications
Improved split fluorescent proteins for endogenous protein labeling | Nature Communications

IJMS | Free Full-Text | Development and Applications of Superfolder and  Split Fluorescent Protein Detection Systems in Biology
IJMS | Free Full-Text | Development and Applications of Superfolder and Split Fluorescent Protein Detection Systems in Biology