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Alpha-latrotoxin

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Presynaptic neurotoxin that induces exhaustive neurotransmitter release from vertebrate (but not invertebrate) nerve terminals and endocrine cells. Binds to neurexin-1-alpha (NRXN1), adhesion G protein-coupled receptor L1 (ADGRL1, also known as latrophilin-1), and receptor-type tyrosine-protein phosphatase S (PTPRS), and induces neurotransmitter exocytosis through two calcium-dependent mechanisms (membrane pore formation and signaling via latrophilin) and a yet to be defined calcium-independent mechanism (By similarity). Induces rapid muscle contracture and loss of twitch tension when added to the isolated and indirectly stimulated chick biventer cervicis nerve-muscle preparation.

Below are the list of possible Alpha-latrotoxin products. If you cannot find the target and/or product is not available in our catalog, please click here to contact us and request the product or submit your request for custom elisa kit production, custom recombinant protein production or custom antibody production. Custom ELISA Kits, Recombinant Proteins and Antibodies can be designed, manufactured and produced according to the researcher's specifications.
 

Alpha-latrotoxin-Lh1a

 Alpha-latrotoxin-Lh1a ELISA Kit
 Alpha-latrotoxin-Lh1a Recombinant
 Alpha-latrotoxin-Lh1a Antibody
Also known as Alpha-latrotoxin-Lh1a (Alpha-LTX-Lh1a) (Alpha-latrotoxin).
Presynaptic neurotoxin that induces exhaustive neurotransmitter release from vertebrate (but not invertebrate) nerve termina
>>>
ls and endocrine cells. Binds to neurexin-1-alpha (NRXN1), adhesion G protein-coupled receptor L1 (ADGRL1, also known as latrophilin-1), and receptor-type tyrosine-protein phosphatase S (PTPRS), and induces neurotransmitter exocytosis through two calcium-dependent mechanisms (membrane pore formation and signaling via latrophilin) and a yet to be defined calcium-independent mechanism (). Induces rapid muscle contracture and loss of twitch tension when added to the isolated and indirectly stimulated chick biventer cervicis nerve-muscle preparation.
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Alpha-latrotoxin-Lhe1a

 Alpha-latrotoxin-Lhe1a ELISA Kit
 Alpha-latrotoxin-Lhe1a Recombinant
 Alpha-latrotoxin-Lhe1a Antibody
Also known as Alpha-latrotoxin-Lhe1a (Alpha-LTX-Lhe1a) (Alpha-latrotoxin).
Presynaptic neurotoxin that induces exhaustive neurotransmitter release from vertebrate (but not invertebrate) nerve termi
>>>
nals and endocrine cells. Binds to neurexin-1-alpha (NRXN1), adhesion G protein-coupled receptor L1 (ADGRL1, also known as latrophilin-1), and receptor-type tyrosine-protein phosphatase S (PTPRS), and induces neurotransmitter exocytosis through two calcium-dependent mechanisms (membrane pore formation and signaling via latrophilin) and a yet to be defined calcium-independent mechanism. Induces rapid muscle contracture and loss of twitch tension when added to the isolated and indirectly stimulated chick biventer cervicis nerve-muscle preparation.
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Alpha-latrotoxin-Lm1a

 Alpha-latrotoxin-Lm1a ELISA Kit
 Alpha-latrotoxin-Lm1a Recombinant
 Alpha-latrotoxin-Lm1a Antibody
Also known as Alpha-latrotoxin-Lm1a (Alpha-LTX-Lm1a) (Alpha-latrotoxin) (Fragments).
Presynaptic neurotoxin that induces exhaustive neurotransmitter release from vertebrate (but not invertebrate) n
>>>
erve terminals and endocrine cells. Binds to neurexin-1-alpha (NRXN1), adhesion G protein-coupled receptor L1 (ADGRL1, also known as latrophilin-1), and receptor-type tyrosine-protein phosphatase S (PTPRS), and induces neurotransmitter exocytosis through two calcium-dependent mechanisms (membrane pore formation and signaling via latrophilin) and a yet to be defined calcium-independent mechanism. Induces rapid muscle contracture and loss of twitch tension when added to the isolated and indirectly stimulated chick biventer cervicis nerve-muscle preparation ().
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Alpha-latrotoxin-Lt1a

 Alpha-latrotoxin-Lt1a ELISA Kit
 Alpha-latrotoxin-Lt1a Recombinant
 Alpha-latrotoxin-Lt1a Antibody
Also known as Alpha-latrotoxin-Lt1a (Alpha-LTX-Lt1a) (Alpha-latrotoxin) (Alpha-LTX).
Presynaptic neurotoxin that induces exhaustive neurotransmitter release from vertebrate (but not invertebrate) n
>>>
erve terminals and endocrine cells. Binds to neurexin-1-alpha (NRXN1), adhesion G protein-coupled receptor L1 (ADGRL1, also known as latrophilin-1), and receptor-type tyrosine-protein phosphatase S (PTPRS), and induces neurotransmitter exocytosis through two calcium-dependent mechanisms (membrane pore formation and signaling via latrophilin) and a yet to be defined calcium-independent mechanism.
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