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Anti-Human KNL1 Polyclonal Antibody (ARO-A13380)

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概述
货号ARO-A13380
品牌ProteoGenix
描述
Highlights
  • Affinity Purified — Minimal background and high purity for reliable results.
  • Multi-Application — Validated across multiple applications.
种属反应性Human
应用ELISA, IHC, WB
宿主Rabbit
克隆类型Polyclonal
同种型IgG
免疫原E. coli - derived recombinant Human KNL1 (Ser2131-Asp2337).
靶标Blinkin, CT29, Kinetochore-null protein 1, Cancer/testis antigen 29, Bub-linking kinetochore protein, Protein CASC5, Protein D40/AF15q14, ALL1-fused gene from chromosome 15q14 protein, Kinetochore scaffold 1, CASC5, KNL1, Cancer susceptibility candidate gene 5 protein, KIAA1570, AF15q14
纯化方式Purified by antigen affinity column.
Accession号Q8NG31
状态Liquid
保存溶液 0.01M PBS, pH 7.4, 50% Glycerol, 0.05% Proclin 300.

Please refer to the specific buffer information in the hardcopy of datasheet or the lot-specific COA.

稳定性和存储Use a manual defrost freezer and avoid repeated freeze thaw cycles. Store at 2 to 8°C for frequent use. Store at -20 to -80°C for twelve months from the date of receipt.
背景

Outer kinetochore KNL1 complex subunit KNL1 (CASC5) is a ~265 kDa protein. Acts as a component of the outer kinetochore KNL1 complex that serves as a docking point for spindle assembly checkpoint components and mediates microtubule-kinetochore interactions. Kinetochores, consisting of a centromere-associated inner segment and a microtubule-contacting outer segment, play a crucial role in chromosome segregation by mediating the physical connection between centromeric DNA and spindle microtubules. The outer kinetochore is made up of the ten-subunit KMN network, comprising the MIS12, NDC80 and KNL1 complexes, and auxiliary microtubule-associated components; together they connect the outer kinetochore with the inner kinetochore, bind microtubules, and mediate interactions with mitotic checkpoint proteins that delay anaphase until chromosomes are bioriented on the spindle. Required for kinetochore binding by a distinct subset of kMAPs (kinetochore-bound microtubule-associated proteins) and motors. Acts in coordination with CENPK to recruit the NDC80 complex to the outer kinetochore.

1. Obuse, C. et al. (2004) Nature cell biology 6, 1135-41. PMID: 15502821
2. Kiyomitsu, T. et al. (2007) Developmental cell 13, 663-676. PMID: 17981135
3. Cheeseman, IM. et al. (2008) Molecular biology of the cell 19, 587-94. PMID: 18045986
4. Pagliuca, C. et al. (2009) PloS one 4, e7640. PMID: 19893618
5. Kiyomitsu, T. et al. (2011) Molecular and cellular biology 31, 998-1011. PMID: 21199919
6. Bolanos-Garcia, VM. et al. (2011) Structure (London, England : 1993) 19, 1691-700. PMID: 22000412
7. Krenn, V. et al. (2012) The Journal of cell biology 196, 451-67. PMID: 22331848
8. Petrovic, A. et al. (2016) Cell 167, 1028-1040.e15. PMID: 27881301
9. Bajaj, R. et al. (2018) Structure (London, England : 1993) 26, 1327-1336.e4. PMID: 30100357
10. Yatskevich, S. et al. (2024) Nature structural & molecular biology 31, 874-883. PMID: 38459127
NoteFor research use only.
图片
参考文献
公式
质量 (g) = 浓度 (mol/L) × 体积 (L) × 分子量 (g/mol)
填写 质量、浓度、体积中的任意 2 项 + 分子量,自动计算未知值。
质量
=
浓度
×
体积
分子量 *
g/mol
公式
C₁ × V₁ = C₂ × V₂
填写 4 项中的任意 3 项,自动计算未知值。
母液
C₁ (起始浓度)
×
V₁ (起始体积)
=
工作液
C₂ (终浓度)
×
V₂ (终体积)

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