Assuming "LIN-35" refers to a protein or gene that is integral to a particular biological process, activators of LIN-35 would be molecules that enhance its biological activity. These activators could potentially work by binding directly to the LIN-35 protein, inducing a conformational change that results in increased activity, or by facilitating its interaction with other proteins or substrates. The chemical structures of LIN-35 activators would likely be diverse, as they would need to possess specific characteristics that enable them to interact with distinct structural motifs or domains within LIN-35. These characteristics could include particular arrangements of atoms, charged groups, hydrophobic or hydrophilic elements, or even larger molecular frameworks for protein-protein interaction modulation.
In the realm of research, scientists investigating LIN-35 activators would employ a variety of techniques to understand the interaction between these molecules and the LIN-35 protein. Studies might include computational modeling to predict how these activators could bind to the protein and what effects they may exert on its structure and function. Experimental approaches would likely involve the use of in vitro assays to assess the biochemical consequences of activator binding, such as changes in the enzymatic activity of LIN-35 or alterations in its ability to interact with other cellular components. Advanced analytical techniques like mass spectrometry, circular dichroism, and fluorescence spectroscopy could provide insights into the binding dynamics and structural changes. Furthermore, if the precise structure of the LIN-35 protein were known, techniques such as X-ray crystallography or cryo-electron microscopy might be used to solve the structure of the protein in complex with activator molecules, giving a clear picture of the molecular interactions at play. This could elucidate the mechanism by which these activators enhance LIN-35 activity. Nonetheless, without concrete scientific evidence to define "LIN-35 Activators," this discussion remains purely theoretical and is not grounded in any known chemical classification.
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| Nombre del producto | NÚMERO DE CAS # | Número de catálogo | Cantidad | Precio | MENCIONES | Clasificación |
|---|---|---|---|---|---|---|
Hydroxyurea | 127-07-1 | sc-29061 sc-29061A | 5 g 25 g | $76.00 $255.00 | 18 | |
La hidroxiurea induce daños en el ADN y puede afectar a las proteínas reguladoras del ciclo celular, alterando potencialmente la expresión de LIN-35 como parte de una respuesta al estrés. | ||||||
Camptothecin | 7689-03-4 | sc-200871 sc-200871A sc-200871B | 50 mg 250 mg 100 mg | $57.00 $182.00 $92.00 | 21 | |
La camptotecina induce daños en el ADN mediante la inhibición de la topoisomerasa I, lo que podría provocar cambios en la expresión de LIN-35 como respuesta celular. | ||||||
Etoposide (VP-16) | 33419-42-0 | sc-3512B sc-3512 sc-3512A | 10 mg 100 mg 500 mg | $32.00 $170.00 $385.00 | 63 | |
El etopósido provoca roturas de la cadena de ADN a través de la inhibición de la topoisomerasa II, influyendo potencialmente en la expresión de LIN-35 durante la respuesta al daño del ADN. | ||||||
Roscovitine | 186692-46-6 | sc-24002 sc-24002A | 1 mg 5 mg | $92.00 $260.00 | 42 | |
La roscovitina es un inhibidor de la cinasa dependiente de ciclina y puede afectar a los reguladores del ciclo celular, incluido potencialmente LIN-35. | ||||||
Aphidicolin | 38966-21-1 | sc-201535 sc-201535A sc-201535B | 1 mg 5 mg 25 mg | $82.00 $300.00 $1082.00 | 30 | |
La afidicolina es un inhibidor de la ADN polimerasa, que puede provocar alteraciones en la expresión de LIN-35 como parte de la activación del punto de control del ciclo celular. | ||||||
Taxol | 33069-62-4 | sc-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 | |
El paclitaxel estabiliza los microtúbulos y detiene las células en mitosis, afectando potencialmente a la expresión de LIN-35 en el proceso. | ||||||
Thymidine | 50-89-5 | sc-296542 sc-296542A sc-296542C sc-296542D sc-296542E sc-296542B | 1 g 5 g 100 g 250 g 1 kg 25 g | $48.00 $72.00 $265.00 $449.00 $1724.00 $112.00 | 16 | |
La timidina puede causar un bloqueo del ciclo celular en la fase S cuando se utiliza a altas concentraciones, influyendo potencialmente en la expresión de LIN-35. | ||||||
Methotrexate | 59-05-2 | sc-3507 sc-3507A | 100 mg 500 mg | $92.00 $209.00 | 33 | |
El metotrexato inhibe la dihidrofolato reductasa, lo que conduce a una detención de la fase S, que podría afectar a la expresión de reguladores del ciclo celular como LIN-35. | ||||||
Nocodazole | 31430-18-9 | sc-3518B sc-3518 sc-3518C sc-3518A | 5 mg 10 mg 25 mg 50 mg | $58.00 $83.00 $140.00 $242.00 | 38 | |
El nocodazol interrumpe la polimerización de los microtúbulos, lo que conduce a la detención del ciclo celular, que podría afectar a los niveles de expresión de LIN-35. | ||||||
Cisplatin | 15663-27-1 | sc-200896 sc-200896A | 100 mg 500 mg | $76.00 $216.00 | 101 | |
El cisplatino forma aductos de ADN, lo que conduce a la activación de la respuesta al daño del ADN, que puede influir en la expresión de LIN-35 como parte de la respuesta celular. | ||||||