Dynamin-2 (YD35836) Rabbit mAb (货号:AYD11304)
A
货号
AYD11304
靶点/基因
DNM2/Dnm2
宿主
Rabbit
克隆性
Monoclonal
反应种属
Human, Mouse, Rat
应用
WB, IHC-P, ICC/IF
产品信息
应用指南
相关产品
抗原信息
靶点信息
资料与支持
实验步骤
常见问题
| 反应 | Human,Mouse,Rat |
|---|---|
| 宿主 | Rabbit |
| 克隆性 | Monoclonal |
| 同种型 | IgG |
| 应用 | WBIHC-PICC/IF |
| 推荐浓度 | |
| 理论分子量 | 98kDa/98kDa/98kDa |
| 实测分子量 | |
| 形式 | Liquid |
| 保存条件 | Store at -20℃. Avoid freeze / thaw cycles. Buffer: PBS with 0.75% BSA,50% glycerol,pH7.3. |
| 偶联物 | Unconjugated |
| 阳性对照 | |
| 细胞定位 | Cytoplasm, cytoskeleton, Cytoplasmic vesicle, clathrin-coated vesicle, Cell projection, uropodium, Endosome, microtubule organizing center, centrosome, centriole, Recycling endosome, phagocytic cup, phagosome membrane, podosome, Cell junction, Postsynaptic density, Synapse, synaptosome, Midbody, Membrane, clathrin-coated pit, Cell membrane |
| 纯化 | 亲和纯化 |
应用与推荐条件
快速判断怎么用
以下条件基于推荐浓度、验证图说明与通用实验要求整理,可作为预实验起点;不同样本和检测体系建议做梯度优化。
WB
WB 推荐条件
| 推荐稀释 | 请参考验证图说明或咨询技术支持 |
|---|---|
| 建议样本/阳性对照 | 建议选择靶点高表达样本作为阳性对照 |
| 关键条件 | 建议使用新鲜裂解样本,按推荐稀释比例孵育一抗,并关注理论/实测分子量 |
| 预期结果 | 预期信号/条带约 98kDa/98kDa/98kDa |
| 对照设置 | 建议设置阳性样本、阴性样本和二抗/同型对照 |
IHC-P
IHC-P 推荐条件
| 推荐稀释 | 请参考验证图说明或咨询技术支持 |
|---|---|
| 建议样本/阳性对照 | 建议选择靶点高表达样本作为阳性对照 |
| 关键条件 | 石蜡切片建议优化抗原修复液 pH、修复时间和一抗孵育条件 |
| 预期结果 | 预期定位:Cytoplasm, cytoskeleton, Cytoplasmic vesicle, clathrin-coated vesicle, Cell projection, uropodium, Endosome, microtubule organizing center, centrosome, centriole, Recycling endosome, phagocytic cup, phagosome membrane, podosome, Cell junction, Postsynaptic density, Synapse, synaptosome, Midbody, Membrane, clathrin-coated pit, Cell membrane |
| 对照设置 | 建议设置阳性样本、阴性样本和二抗/同型对照 |
ICC/IF
ICC/IF 推荐条件
| 推荐稀释 | 请参考验证图说明或咨询技术支持 |
|---|---|
| 建议样本/阳性对照 | 建议选择靶点高表达样本作为阳性对照 |
| 关键条件 | 建议优化固定、通透和封闭条件,并设置二抗空白对照 |
| 预期结果 | 预期荧光定位:Cytoplasm, cytoskeleton, Cytoplasmic vesicle, clathrin-coated vesicle, Cell projection, uropodium, Endosome, microtubule organizing center, centrosome, centriole, Recycling endosome, phagocytic cup, phagosome membrane, podosome, Cell junction, Postsynaptic density, Synapse, synaptosome, Midbody, Membrane, clathrin-coated pit, Cell membrane |
| 对照设置 | 建议设置阳性样本、阴性样本和二抗/同型对照 |
相关产品
查找相关产品 >>抗原信息
| 抗原信息 | 请咨询 技术支持 |
|---|---|
| 序列 | Email For Sequence |
靶点信息
| 研究背景 | Catalyzes the hydrolysis of GTP and utilizes this energy to mediate vesicle scission at plasma membrane during endocytosis and filament remodeling at many actin structures during organization of the actin cytoskeleton (PubMed:15731758, PubMed:19605363, PubMed:19623537, PubMed:33713620, PubMed:34744632). Plays an important role in vesicular trafficking processes, namely clathrin-mediated endocytosis (CME), exocytic and clathrin-coated vesicle from the trans-Golgi network, and PDGF stimulated macropinocytosis (PubMed:15731758, PubMed:19623537, PubMed:33713620). During vesicular trafficking process, associates to the membrane, through lipid binding, and self-assembles into ring-like structure through oligomerization to form a helical polymer around the vesicle membrane and leading to vesicle scission (PubMed:17636067, PubMed:34744632, PubMed:36445308). Plays a role in organization of the actin cytoskeleton by mediating arrangement of stress fibers and actin bundles in podocytes (By similarity). During organization of the actin cytoskeleton, self-assembles into ring-like structure that directly bundles actin filaments to form typical membrane tubules decorated with dynamin spiral polymers (By similarity). Self-assembly increases GTPase activity and the GTP hydrolysis causes the rapid depolymerization of dynamin spiral polymers, and results in dispersion of actin bundles (By similarity). Remodels, through its interaction with CTTN, bundled actin filaments in a GTPase-dependent manner and plays a role in orchestrating the global actomyosin cytoskeleton (PubMed:19605363). The interaction with CTTN stabilizes the interaction of DNM2 and actin filaments and stimulates the intrinsic GTPase activity that results in actin filament-barbed ends and increases the sensitivity of filaments in bundles to the actin depolymerizing factor, CFL1 (By similarity). Plays a role in the autophagy process, by participating in the formation of ATG9A vesicles destined for the autophagosomes through its interaction with SNX18 (PubMed:29437695), by mediating recycling endosome scission leading to autophagosome release through MAP1LC3B interaction (PubMed:29437695, PubMed:32315611). Also regulates maturation of apoptotic cell corpse-containing phagosomes by recruiting PIK3C3 to the phagosome membrane (By similarity). Also plays a role in cytokinesis (By similarity). May participate in centrosome cohesion through its interaction with TUBG1 (By similarity). Plays a role in the regulation of neuron morphology, axon growth and formation of neuronal growth cones (By similarity). Involved in membrane tubulation (PubMed:24135484) Catalyzes the hydrolysis of GTP and utilizes this energy to mediate vesicle scission at plasma membrane during endocytosis and filament remodeling at many actin structures during organization of the actin cytoskeleton (By similarity). Plays an important role in vesicular trafficking processes, namely clathrin-mediated endocytosis (CME), exocytic and clathrin-coated vesicle from the trans-Golgi network, and PDGF stimulated macropinocytosis (PubMed:18923138). During vesicular trafficking process, associates to the membrane, through lipid binding, and self-assembles into ring-like structure through oligomerization to form a helical polymer around the vesicle membrane and leading to vesicle scission (By similarity). Plays a role in organization of the actin cytoskeleton by mediating arrangement of stress fibers and actin bundles in podocytes (By similarity). During organization of the actin cytoskeleton, self-assembles into ring-like structure that directly bundles actin filaments to form typical membrane tubules decorated with dynamin spiral polymers (PubMed:33113375). Self-assembly increases GTPase activity and the GTP hydrolysis causes the rapid depolymerization of dynamin spiral polymers, and results in dispersion of actin bundles (By similarity). Remodels, through its interaction with CTTN, bundled actin filaments in a GTPase-dependent manner and plays a role in orchestrating the global actomyosin cytoskeleton (By similarity). The interaction with CTTN stabilizes the interaction of DNM2 and actin filaments and stimulates the intrinsic GTPase activity that results in actin filament-barbed ends and increases the sensitivity of filaments in bundles to the actin depolymerizing factor, CFL1 (By similarity). Plays a role in the autophagy process, by participating in the formation of ATG9A vesicles destined for the autophagosomes through its interaction with SNX18, by mediating recycling endosome scission leading to autophagosome release through MAP1LC3B interaction (By similarity). Also regulates maturation of apoptotic cell corpse-containing phagosomes by recruiting PIK3C3 to the phagosome membrane (PubMed:18425118). Also plays a role in cytokinesis (PubMed:18923138). May participate in centrosome cohesion through its interaction with TUBG1 (By similarity). Plays a role in the regulation of neuron morphology, axon growth and formation of neuronal growth cones (By similarity). Involved in membrane tubulation (By similarity) Catalyzes the hydrolysis of GTP and utilizes this energy to mediate vesicle scission at plasma membrane during endocytosis and filament remodeling at many actin structures during organization of the actin cytoskeleton (PubMed:19605363, PubMed:19995918, PubMed:35620056). Plays an important role in vesicular trafficking processes, namely clathrin-mediated endocytosis (CME), exocytic and clathrin-coated vesicle from the trans-Golgi network, and PDGF stimulated macropinocytosis (PubMed:19995918, PubMed:21195118, PubMed:9438853). During vesicular trafficking process, associates to the membrane, through lipid binding, and self-assembles into ring-like structure through oligomerization to form a helical polymer around the vesicle membrane and leading to vesicle scission (PubMed:35620056). Plays a role in organization of the actin cytoskeleton by mediating arrangement of stress fibers and actin bundles in podocytes (PubMed:35620056). During organization of the actin cytoskeleton, self-assembles into ring-like structure that directly bundles actin filaments to form typical membrane tubules decorated with dynamin spiral polymers (PubMed:35620056). Self-assembly increases GTPase activity and the GTP hydrolysis causes the rapid depolymerization of dynamin spiral polymers, and results in dispersion of actin bundles (PubMed:35620056). Remodels, through its interaction with CTTN, bundled actin filaments in a GTPase-dependent manner and plays a role in orchestrating the global actomyosin cytoskeleton (PubMed:19605363). The interaction with CTTN stabilizes the interaction of DNM2 and actin filaments and stimulates the intrinsic GTPase activity that results in actin filament-barbed ends and increases the sensitivity of filaments in bundles to the actin depolymerizing factor, CFL1 (PubMed:19605363). Plays a role in the autophagy process, by participating in the formation of ATG9A vesicles destined for the autophagosomes through its interaction with SNX18, by mediating recycling endosome scission leading to autophagosome release through MAP1LC3B interaction and by regulating maturation of apoptotic cell corpse-containing phagosomes by recruiting PIK3C3 to the phagosome membrane (By similarity). Also plays a role in cytokinesis (PubMed:21195118). May participate in centrosome cohesion through its interaction with TUBG1 (PubMed:15048127). Plays a role in the regulation of neuron morphology, axon growth and formation of neuronal growth cones (PubMed:21210813). Involved in membrane tubulation (By similarity) |
|---|---|
| 基因 ID | 1785 |
| 基因名 | DNM2, Dnm2 |
| Swiss | P50570, P39054, P39052 |
| 别名 | Dynamin-2 (YD35836),Dynamin-2 (YD35836) Rabbit mAb,DNM2,Dynamin 2,Dynamin II,Dynamin UDNM,DYN2 |
资料与技术支持
验证数据
2 张验证图
页面顶部轮播可查看应用验证图,覆盖 WB / IHC-P / ICC/IF。
常见问题
当前页面标注应用包括 WB, IHC-P, ICC/IF,建议结合页面验证图和推荐稀释比例进行预实验优化。
可通过页面询价/留言入口提交货号和批号,技术支持会协助提供对应批次资料。
页面推荐条件可作为起始浓度,不同样本、固定方式和检测体系可能需要梯度优化。

