ProteinFind® Anti-GFP Mouse Monoclonal Antibody

抗GFP标签鼠单克隆抗体

目录号 规格 单价
HT801-01 50 µl 570
HT801-02 100 µl 1030
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产品详情介绍

抗GFP标签鼠单克隆抗体为高纯度的抗小鼠单克隆抗体,属IgG1同型,免疫原为人工合成的全长GFP蛋白。该抗体能高度特异识别重组蛋白C末端或N末端的GFP标签,适用于定性或定量检测GFP融合表达蛋白。 

References
  • Wu M, Bian X, Huang B, et al. HD-Zip proteins modify floral structures for self-pollination in tomato[J]. Science, 2024.(IF 56.90)

  • Liao H, Zhao X Y, Ren K Y, et al. Rewiring an E3 ligase enhances cold resilience and phosphate use in maize[J]. Nature, 2026.(IF 48.50)

  • Wang K, Yan H Q, Guo X, et al. FERONIA orchestrates plasma membrane nanoclusters for plant thermotolerance[J]. Science, 2026.(IF 45.80)

  • Zhu Z, Wang Y, Liu S, et al. Genomic atlas of 8,105 accessions reveals stepwise domestication, global dissemination, and improvement trajectories in soybean[J]. Cell, 2025.(IF 42.50)

  • Zeng R, Shi Y, Guo L, et al. A natural variant of COOL1 gene enhances cold tolerance for high-latitude adaptation in maize[J]. Cell, 2025.(IF 42.50)

  • Ma X J, Wang W, Zhang J Y, et al. NRT1.1B acts as an abscisic acid receptor in integrating compound environmental cues for plants[J]. Cell, 2025.(IF 42.50)

  • Li Y, Zhang Z, Chen J, et al. Stella safeguards the oocyte methylome by preventing de novo methylation mediated by DNMT1[J]. Nature, 2018.(IF 41.00)

  • Zhao S, Makarova K S, Zheng W, et al. Widespread photosynthesis reaction centre barrel proteins are necessary for haloarchaeal cell division[J]. Nature Microbiology, 2024.(IF 28.30)

  • Fan H, Quan S, Ye Q, et al. A molecular framework underlying low-nitrogen-induced early leaf senescence in Arabidopsis thaliana[J]. Molecular Plant, 2023.(IF 27.50)

  • Shi Q, Xia Y, Wang Q, et al. Phytochrome B interacts with LIGULELESS1 to control plant architecture and density tolerance in maize[J]. Molecular plant, 2024.(IF 17.10)

  • Wang J D, Wang J, Huang L C, et al. ABA-mediated regulation of rice grain quality and seed dormancy via the NF-YB1-SLRL2-bHLH144 Module[J]. Nature Communications, 2024.(IF 14.70)

  • Jia X, Lin L, Guo S, et al. CLASP-mediated competitive binding in protein condensates directs microtubule growth[J]. Nature Communications, 2024.(IF 14.70)

  • Chang J, Wu S, You T, et al. Spatiotemporal formation of glands in plants is modulated by MYB-like transcription factors[J]. Nature Communications, 2024.(IF 14.70)

  • Zhang H, Huang C, Gao C, et al. Evolutionary-Distinct Viral Proteins Subvert Rice Broad-Spectrum Antiviral Immunity Mediated by the RAV15-MYC2 Module[J]. Advanced Science, 2025.(IF 14.30)

  • Du D, Li Z, Jiang Z, et al. The Transcription Factor WFZP Interacts with the Chromatin Remodeler TaSYD to Regulate Root Architecture and Nitrogen Uptake Efficiency in Wheat[J]. Advanced Science, 2025.(IF 14.10)

  • Meng T, Chen X, He Z, et al. ATP9A deficiency causes ADHD and aberrant endosomal recycling via modulating RAB5 and RAB11 activity[J]. Molecular Psychiatry, 2023.(IF 13.43)

  • Li Y, Du Y, Huai J, et al. The RNA helicase UAP56 and the E3 ubiquitin ligase COP1 coordinately regulate alternative splicing to repress photomorphogenesis in Arabidopsis[J]. The Plant Cell, 2022.(IF 12.00)

  • Shen S Y, Ma M, Bai C, et al. Optimizing rice grain size by attenuating phosphorylation-triggered functional impairment of a chromatin modifier ternary complex[J]. Developmental Cell, 2024.(IF 11.80)

  • Du D, Li Z, Yuan J, et al. The TaWAK2-TaNAL1-TaDST pathway regulates leaf width via cytokinin signaling in wheat[J]. Science Advances, 2024.(IF 11.70)

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