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Merck

SAB3300047

Sigma-Aldrich

モノクローナル抗TUBB3抗体 マウス宿主抗体

clone 5H2, purified immunoglobulin, buffered aqueous glycerol solution

別名:

抗β-4抗体, 抗MC1R抗体, 抗TUBB4抗体

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About This Item

UNSPSCコード:
12352203

由来生物

mouse

結合体

unconjugated

抗体製品の状態

purified immunoglobulin

抗体製品タイプ

primary antibodies

クローン

5H2, monoclonal

形状

buffered aqueous glycerol solution

分子量

antigen 50.3 kDa

化学種の反応性

human

テクニック

western blot: suitable

NCBIアクセッション番号

UniProtアクセッション番号

輸送温度

dry ice

保管温度

−20°C

遺伝子情報

human ... TUBB3(10381)

免疫原

E. coliで発現させたヒトTUBB3のアミノ酸1-150に相当するリコンビナントタンパク質

ターゲットの説明

Tubulin is the major building block of microtubules. This intracellular cylindrical filamentous structure is present in almost all eukaryotic cells. Microtubules function as structural and mobile elements in mitosis, intracellular transport, flagellar movement, and the cytoskeleton. Except in the simplest eukaryotes, tubulin exists in all cells as a mixture of similar, but not identical, sets of alpha and beta tubulin polypeptides. Within either set of polypeptides, individual subunits diverge from each other (both within and across species) at less than 10% of the amino acid positions. The most extreme diversity is localized to the 15 residues of the carboxy terminal. For β-tubulin five evolutionarily conserved isotype clones have been identified. These are almost totally conserved in the subunits utilized in the same cell types of different species, with the exception of the hematopoietic β-tubulin which is the most highly divergent in sequence and is not conserved between species. Research has been centered around the hypothesis that these beta tubulin isotypes contribute to unique functional properties. It has been reported that the different isotypes of tubulin differ from each other in their ability to polymerize into microtubules.

物理的形状

PBS溶液(1% BSA, 50%グリセロール, 0.02%アジ化ナトリウム含有)。

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保管分類コード

12 - Non Combustible Liquids

WGK

WGK 2

引火点(°F)

Not applicable

引火点(℃)

Not applicable


試験成績書(COA)

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以前この製品を購入いただいたことがある場合

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文書ライブラリにアクセスする

Emily Palmero et al.
Scientific reports, 6, 39394-39394 (2016-12-20)
In our lab we study neurogenesis and the development of brain tumors. We work towards treatment strategies for glioblastoma and towards using autologous neural stem cells for tissue regeneration strategies for brain damage and neurodegenerative disorders. It has been our
Jessica E M Dunleavy et al.
Development (Cambridge, England), 148(24) (2021-11-26)
Katanin microtubule-severing enzymes are crucial executers of microtubule regulation. Here, we have created an allelic loss-of-function series of the katanin regulatory B-subunit KATNB1 in mice. We reveal that KATNB1 is the master regulator of all katanin enzymatic A-subunits during mammalian

ライフサイエンス、有機合成、材料科学、クロマトグラフィー、分析など、あらゆる分野の研究に経験のあるメンバーがおります。.

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