Date published: 2025-10-11

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RLTPR Activators

RLTPR Activators are chemicals that can indirectly modulate the activity of RLTPR by affecting the pathways it is involved in. RLTPR, or RGD, leucine-rich repeat, tropomodulin and proline-rich containing protein, is a cytosolic protein that has been identified as a crucial regulator in immune cell signaling, particularly in T-cells. It is known to play a role in the costimulation of T-cell receptors (TCR) which is essential for T-cell activation and function.

Direct RLTPR activators could bind to specific domains of the protein, inducing conformational changes that may lead to an increased affinity for its interacting partners or substrates. This could potentially enhance the protein's role in T-cell signaling pathways, possibly by facilitating the assembly of signaling complexes at the site of TCR activation. Indirect RLTPR activators might work by influencing the transcriptional or translational mechanisms that control RLTPR expression, leading to a higher concentration of the protein in the cell. They might also interfere with the degradation pathways responsible for RLTPR turnover, thereby prolonging its cellular lifespan. Post-translational modifications such as phosphorylation, ubiquitination, or sumoylation can alter the activity, localization, or stability of proteins, and thus, compounds that modify such processes could also serve as indirect activators of RLTPR.

Items 1 to 10 of 12 total

Display:

Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

PMA

16561-29-8sc-3576
sc-3576A
sc-3576B
sc-3576C
sc-3576D
1 mg
5 mg
10 mg
25 mg
100 mg
$40.00
$129.00
$210.00
$490.00
$929.00
119
(6)

PMA is an activator of Protein Kinase C (PKC), which is involved in TCR signaling. By activating PKC, PMA might indirectly modulate RLTPR activity by impacting TCR signaling.

Ionomycin, free acid

56092-81-0sc-263405
sc-263405A
1 mg
5 mg
$94.00
$259.00
2
(2)

Ionomycin is a calcium ionophore that can stimulate the calcineurin pathway, which is involved in TCR signaling. By affecting this pathway, Ionomycin can indirectly modulate RLTPR.

Cyclosporin A

59865-13-3sc-3503
sc-3503-CW
sc-3503A
sc-3503B
sc-3503C
sc-3503D
100 mg
100 mg
500 mg
10 g
25 g
100 g
$62.00
$90.00
$299.00
$475.00
$1015.00
$2099.00
69
(5)

Cyclosporin A is an inhibitor of calcineurin. By modulating the calcineurin pathway, it can indirectly affect RLTPR activity.

FK-506

104987-11-3sc-24649
sc-24649A
5 mg
10 mg
$76.00
$148.00
9
(1)

FK506 is another inhibitor of calcineurin. It can indirectly modulate RLTPR through its effect on the calcineurin pathway.

Latrunculin A, Latrunculia magnifica

76343-93-6sc-202691
sc-202691B
100 µg
500 µg
$260.00
$799.00
36
(2)

Latrunculin B is an actin depolymerization agent. As RLTPR is associated with actin cytoskeleton remodeling, Latrunculin B can indirectly influence RLTPR.

Jasplakinolide

102396-24-7sc-202191
sc-202191A
50 µg
100 µg
$180.00
$299.00
59
(1)

Jasplakinolide is an actin polymerization agent. It can indirectly modulate RLTPR by affecting actin cytoskeleton dynamics.

Cytochalasin D

22144-77-0sc-201442
sc-201442A
1 mg
5 mg
$145.00
$442.00
64
(4)

Cytochalasin D is another actin depolymerization agent. It can indirectly influence RLTPR by modulating actin cytoskeleton remodeling.

Nocodazole

31430-18-9sc-3518B
sc-3518
sc-3518C
sc-3518A
5 mg
10 mg
25 mg
50 mg
$58.00
$83.00
$140.00
$242.00
38
(2)

Nocodazole is a microtubule depolymerization agent. As microtubules are related to cytoskeleton dynamics, Nocodazole can indirectly modulate RLTPR.

Taxol

33069-62-4sc-201439D
sc-201439
sc-201439A
sc-201439E
sc-201439B
sc-201439C
1 mg
5 mg
25 mg
100 mg
250 mg
1 g
$40.00
$73.00
$217.00
$242.00
$724.00
$1196.00
39
(2)

Paclitaxel is a microtubule-stabilizing agent. It can indirectly influence RLTPR by affecting microtubule dynamics.

Vinblastine

865-21-4sc-491749
sc-491749A
sc-491749B
sc-491749C
sc-491749D
10 mg
50 mg
100 mg
500 mg
1 g
$100.00
$230.00
$450.00
$1715.00
$2900.00
4
(0)

Vinblastine is another microtubule depolymerization agent. It can indirectly modulate RLTPR by affecting microtubule dynamics.