G8634.mp4 💎 ✨

-S) is a thiophosphate analog of guanosine triphosphate (GTP). The key difference is the substitution of a sulfur atom for an oxygen atom on the terminal phosphate group (Îł-phosphate). G8634-1MG CAS Number: 94825-44-2 Formula: Molecular Weight: 562.98 Appearance: White to off-white powder Assay: 2. Biological Mechanism of Action The primary utility of GTP- -S lies in its resistance to hydrolysis by GTPases.

Used to protect proteins from proteolytic degradation. 4. Stability and Handling The product is sensitive and requires careful handling. Storage: -20°C. g8634.mp4

Because the protein cannot break down the analog, the G-protein remains locked in its active, bound state. Activation Mechanism: It binds directly to G-protein -subunits. 3. Key Research Applications -S) is a thiophosphate analog of guanosine triphosphate

While G-proteins hydrolyze GTP to GDP to turn "off" signaling, they cannot efficiently hydrolyze GTP- Biological Mechanism of Action The primary utility of

-S) is a thiophosphate analog of guanosine triphosphate (GTP). The key difference is the substitution of a sulfur atom for an oxygen atom on the terminal phosphate group (Îł-phosphate). G8634-1MG CAS Number: 94825-44-2 Formula: Molecular Weight: 562.98 Appearance: White to off-white powder Assay: 2. Biological Mechanism of Action The primary utility of GTP- -S lies in its resistance to hydrolysis by GTPases.

Used to protect proteins from proteolytic degradation. 4. Stability and Handling The product is sensitive and requires careful handling. Storage: -20°C.

Because the protein cannot break down the analog, the G-protein remains locked in its active, bound state. Activation Mechanism: It binds directly to G-protein -subunits. 3. Key Research Applications

While G-proteins hydrolyze GTP to GDP to turn "off" signaling, they cannot efficiently hydrolyze GTP-

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