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GTP, 100mM solution
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.rte-hr { background: linear-gradient(to right, white, #162F65); border: 0; height: 1px; margin-top: 20px; } .rte-des-lists { display: flex; flex-wrap: wrap; gap: 25px; padding: 0
10px; margin-bottom: 25px; } .rte-list-card { flex: 1; background: rgba(239, 238, 236, 0.3); border-radius: 10px; padding: 20px; box-shadow: 0px 3px 10px rgba(22, 47, 101, 0.2); transition: transform 0.3s; min-width: 290px; position: relative; } .rte-list-card:hover { transform: translateY(-5px); } .rte-list-icon { width: 25px; height: 25px; margin: 0px 5px -5px 0px; fill: currentColor; } .rte-list-card h3 { font-size: 1.2em; padding-bottom: 8px; margin-bottom: 8px; color: #3361ac; } .rte-dashed-list-title { border-bottom: dashed rgba(193, 212, 231); } .rte-list-feature { border-left: solid 3px #3361ac; padding: 3px 0 3px 10px; margin: 0 5px 5px 0; } .rte-list-feature svg { width: 10px; height: 10px; margin-bottom: -5px; fill: #3361ac; } .rte-cite cite { display: block; margin-bottom: 8px; } Guanosine 5’-triphosphate (GTP) is an essential nucleotide for RNA synthesis and a critical regulator of GTP-binding proteins and translational GTPases. This 100 mM trisodium salt solution provides GTP in a highly soluble, ready-to-use form suitable for both routine laboratory applications and high-consistency manufacturing environments. Applications Reference Standards & Controls Serves as a quantitative standard for HPLC, LC–MS, enzyme kinetics, and calibration of nucleotide quantification assays. Trascription & RNA Synthesis In vitro transcription for synthesis of mRNA, sgRNA, ribozymes, and structured RNAs. Signaling & GTPase Biology Used to study GTP-binding proteins and translational GTPases.[1][2] Features and Benefits High purity(≥99%), nuclease-free, and Ultra-low endotoxin: suitable for sensitive biochemical assays. Ready-to-use: 100 mM solution eliminates the need for weighing and dissolution. Stable disodium salt form: ensures consistent pH and long-term storage. Reference [1] Takai, Yoshimi, Takuya Sasaki, and Takashi Matozaki. "Small GTP-binding proteins." Physiological reviews 81, no. 1 (2001): 153-208. [2] Maracci, Cristina, and Marina V. Rodnina. "translational GTPases." Biopolymers 105, no. 8 (2016): 463-475.