The green-fluorescent Alexa Fluor® 488 alkyne is reactive with azides via a copper-catalyzed click reaction. In addition to being an자세히 알아보기
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A10267
0.5 mg
카탈로그 번호 A10267
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781,000
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Ends: 31-Mar-2026
918,000
할인액 137,000 (15%)
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수량:
0.5 mg
제품 가격(KRW)
781,000
Online offer
Ends: 31-Mar-2026
918,000
할인액 137,000 (15%)
Each
카트에 추가하기
The green-fluorescent Alexa Fluor® 488 alkyne is reactive with azides via a copper-catalyzed click reaction. In addition to being an exceedingly bright and photostable fluorophore for use with flow cytometry, microscopy and HCS, Alexa Fluor® 488 can also be utilized as a bio-orthogonal or biologically unique hapten for use in applications requiring signal amplification.
For Research Use Only. Not for use in diagnostic procedures.
사양
화학물질 반응성Azide
검출 방법Fluorescence
형식Solid
라벨 또는 염료Alexa Fluor™ 488
분자량773.91 Da
제품 유형Alkyne
수량0.5 mg
반응성 그룹Alkyne
반응성 부분Alkyne
배송 조건Room Temperature
용해도DMSO (Dimethylsulfoxide)
색상Green
라벨 유형Alexa Fluor
제품라인Alexa Fluor, Molecular Probes
Unit SizeEach
구성 및 보관
Store at ≤-20°C, desiccate and protect from light.
인용 및 참조 문헌 (7)
인용 및 참조 문헌
Abstract
The RNA-binding protein Fus directs translation of localized mRNAs in APC-RNP granules.
'RNA localization pathways direct numerous mRNAs to distinct subcellular regions and affect many physiological processes. In one such pathway the tumor-suppressor protein adenomatous polyposis coli (APC) targets RNAs to cell protrusions, forming APC-containing ribonucleoprotein complexes (APC-RNPs). Here, we show that APC-RNPs associate with the RNA-binding protein Fus/TLS (fused in sarcoma/translocated ... More
Repression of global protein synthesis by Eif1a-like genes that are expressed specifically in the two-cell embryos and the transient Zscan4-positive state of embryonic stem cells.
Authors:Hung SS, Wong RC, Sharov AA, Nakatake Y, Yu H, Ko MS,
Journal:DNA Res
PubMed ID:23649898
'Mouse embryonic stem (ES) cells are prototypical stem cells that remain undifferentiated in culture for long periods, yet maintain the ability to differentiate into essentially all cell types. Previously, we have reported that ES cells oscillate between two distinct states, which can be distinguished by the transient expression of Zscan4 ... More
Neurotrophin-mediated dendrite-to-nucleus signaling revealed by microfluidic compartmentalization of dendrites.
Authors:Cohen MS, Bas Orth C, Kim HJ, Jeon NL, Jaffrey SR,
Journal:Proc Natl Acad Sci U S A
PubMed ID:21690335
'Signaling from dendritic synapses to the nucleus regulates important aspects of neuronal function, including synaptic plasticity. The neurotrophin brain-derived neurotrophic factor (BDNF) can induce long-lasting strengthening of synapses in vivo and this effect is dependent on transcription. However, the mechanism of signaling to the nucleus is not well understood. Here ... More
Smaug1 mRNA-silencing foci respond to NMDA and modulate synapse formation.
Authors:Baez MV, Luchelli L, Maschi D, Habif M, Pascual M, Thomas MG, Boccaccio GL,
Journal:J Cell Biol
PubMed ID:22201125
'Mammalian Smaug1/Samd4A is a translational repressor. Here we show that Smaug1 forms mRNA-silencing foci located at postsynapses of hippocampal neurons. These structures, which we have named S-foci, are distinct from P-bodies, stress granules, or other neuronal RNA granules hitherto described, and are the first described mRNA-silencing foci specific to neurons. ... More
Click-mediated labeling of bacterial membranes through metabolic modification of the lipopolysaccharide inner core.
Authors:Dumont A, Malleron A, Awwad M, Dukan S, Vauzeilles B,
Journal:Angew Chem Int Ed Engl
PubMed ID:22323101
Metabolic glycan labeling has recently emerged as a very powerful method for studying cell-surface glycans, which has applications that range from imaging glycans in living multicellular organisms, such as zebrafish or mice, to the identication of metastasis-associaed cell-surface sialoglycoproteins. ... More