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Rabbit Polyclonal KATNAL1 antibody. Suitable for WB, IHC-P and reacts with Human samples. Cited in 1 publication. Immunogen corresponding to Synthetic Peptide within Human KATNAL1.

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Publications

Key facts

Isotype

IgG

Host species

Rabbit

Storage buffer

Constituents: Whole serum

Form

Liquid

Clonality

Polyclonal

Immunogen

  • Synthetic Peptide within Human KATNAL1. The exact immunogen used to generate this antibody is proprietary information. Database link Q9BW62

Reactivity data

Select an application
Product promiseTestedExpectedPredictedNot recommended
WBIHC-P
Human
Expected
Expected
Mouse
Predicted
Predicted
Rat
Predicted
Predicted

Expected
Expected

Species

Human

Dilution info

Use at an assay dependent concentration.

Notes

-

Predicted
Predicted

Species

Mouse, Rat

Dilution info

-

Notes

-

Expected
Expected

Species

Human

Dilution info

Use at an assay dependent concentration.

Notes

-

Predicted
Predicted

Species

Mouse, Rat

Dilution info

-

Notes

-

Target data

Function

Regulates microtubule dynamics in Sertoli cells, a process that is essential for spermiogenesis and male fertility. Severs microtubules in an ATP-dependent manner, promoting rapid reorganization of cellular microtubule arrays (By similarity). Has microtubule-severing activity in vitro (PubMed:26929214).

Alternative names

Recommended products

Rabbit Polyclonal KATNAL1 antibody. Suitable for WB, IHC-P and reacts with Human samples. Cited in 1 publication. Immunogen corresponding to Synthetic Peptide within Human KATNAL1.

Alternative names

Key facts

Isotype

IgG

Form

Liquid

Clonality

Polyclonal

Immunogen
  • Synthetic Peptide within Human KATNAL1. The exact immunogen used to generate this antibody is proprietary information. Database link Q9BW62
Purity

Whole antiserum

Concentration
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Storage

Shipped at conditions

Blue Ice

Appropriate long-term storage conditions

-20°C

Aliquoting information

Upon delivery aliquot

Storage information

Avoid freeze / thaw cycle

Notes

Abcam is leading the way to address reproducibility in scientific research with our highly validated recombinant monoclonal and recombinant multiclonal antibodies. Search & select one of Abcam's thousands of recombinant alternatives to eliminate batch-variability and unnecessary animal use.

If you do not find a host species to meet your needs, our catalogue and custom Chimeric range provides scientists the specificity of Abcam's RabMAbs in the species backbone of your choice. Remember to also review our range of edited cell lines, proteins and biochemicals relevant to your target that may help you further your research goals.

Abcam antibodies are extensively validated in a wide range of species and applications, so please check the reagent specifications meet your scientific needs before purchasing. If you have any questions or bespoke requirements, simply visit the Contact Us page to send us an inquiry or contact our Support Team ahead of purchase.

Supplementary info

This supplementary information is collated from multiple sources and compiled automatically.

Activity summary

KATNAL1 also known as Katanin p60 subunit A1-like 1 acts as a microtubule-severing enzyme. This protein has a molecular mass of roughly 54 kDa. Microtubule severing is essential for regulating microtubule dynamics in cells. KATNAL1 is mainly expressed in testis and other tissues that require active microtubule rearrangement including brain and muscle tissues. Its activity helps modulate the cytoskeleton's architecture impacting cell division and intracellular transport.

Biological function summary

KATNAL1 controls microtubule length and organization in cellular environments. It is part of a larger complex involving microtubule-associated proteins which regulate assembly and disassembly of microtubules. The severing activity performed by KATNAL1 ensures proper cell cycle progression influencing spindle formation during mitosis and helping distribute organelles and proteins efficiently along cytoskeletal tracks.

Pathways

Several cellular processes require microtubule dynamics modulated by KATNAL1. One important pathway it is involved in is the regulation of the cell cycle where it interacts with proteins like tubulin for accurate chromosome segregation. In the neurological context its activity affects the establishment and maintenance of neuronal networks linking it to proteins such as stathmin which also influence microtubule stability.

Associated diseases and disorders

KATNAL1's microtubule severing role has implications in fertility and neurodegenerative conditions. Disruption in its function results in abnormal spermatogenesis potentially leading to male infertility. In relation to neurological health KATNAL1's impairment may contribute to disorders characterized by defective neuronal morphology such as Alzheimer's disease. It connects with disease-associated proteins like tau a protein that stabilizes microtubules which accumulates abnormally in such disorders.

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