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Insect-toxin

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Beta toxins bind voltage-independently at site-4 of sodium channels (Nav) and shift the voltage of activation toward more negative potentials thereby affecting sodium channel activation and promoting spontaneous and repetitive firing (By similarity). Is toxic on insects and crustaceans, but not on mammals.

Below are the list of possible Insect-toxin 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.
 

Insect toxin 2-13

 Insect toxin 2-13 ELISA Kit
 Insect toxin 2-13 Recombinant
 Insect toxin 2-13 Antibody
Also known as Insect toxin 2-13 (LqhIT2-13).
Depressant insect toxins cause a transient contraction paralysis followed by a slow flaccid paralysis. They bind voltage-independently to sodium channel
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s (Nav) and block action potentials, primarily by depolarizing the axonal membrane and suppressing the sodium current ().
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Insect toxin 2-53

 Insect toxin 2-53 ELISA Kit
 Insect toxin 2-53 Recombinant
 Insect toxin 2-53 Antibody
Also known as Insect toxin 2-53 (LqhIT2-53).
Depressant insect toxins cause a transient contraction paralysis followed by a slow flaccid paralysis. They bind voltage-independently to sodium channel
>>>
s (Nav) and block action potentials, primarily by depolarizing the axonal membrane and suppressing the sodium current ().
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Insect toxin AaHIT5

 Insect toxin AaHIT5 ELISA Kit
 Insect toxin AaHIT5 Recombinant
 Insect toxin AaHIT5 Antibody
Also known as Insect toxin AaHIT5 (AaH IT5) (AaIT5) (Insect toxin 5).
Excitatory insect toxins induce a spastic paralysis. They bind voltage-independently to sodium channels (Nav) and shift the vol
>>>
tage of activation toward more negative potentials thereby affecting sodium channel activation and promoting spontaneous and repetitive firing (). This toxin elicits excitatory activity with no flaccid paralysis despite its high degree of sequence similarity with other depressant insect toxins. This toxin is active only on insects.
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Insect toxin BmK AngP1

 Insect toxin BmK AngP1 ELISA Kit
 Insect toxin BmK AngP1 Recombinant
 Insect toxin BmK AngP1 Antibody
Excitatory insect beta-toxins induce a spastic paralysis. They bind voltage-independently at site-4 of sodium channels (Nav) and shift the voltage of activation toward more negative potentials thereby
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affecting sodium channel activation and promoting spontaneous and repetitive firing. This toxin shows an evident analgesic effect on mice, but is devoid of mammalian toxicity.
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Insect toxin BsIT1

 Insect toxin BsIT1 ELISA Kit
 Insect toxin BsIT1 Recombinant
 Insect toxin BsIT1 Antibody
Also known as Insect toxin BsIT1 (Insect toxin 1) (Bs-dprIT1).
Depressant insect beta-toxins cause a transient contraction paralysis followed by a slow flaccid paralysis. They bind voltage-independ
>>>
ently at site-4 of sodium channels (Nav) and shift the voltage of activation toward more negative potentials thereby affecting sodium channel activation and promoting spontaneous and repetitive firing (). This toxin is active only on insects and causes a transient contraction paralysis followed by a slow flaccid paralysis.
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Insect toxin BsIT2

 Insect toxin BsIT2 ELISA Kit
 Insect toxin BsIT2 Recombinant
 Insect toxin BsIT2 Antibody
Also known as Insect toxin BsIT2 (Insect toxin 2) (Bs-dprIT2).
Depressant insect beta-toxins cause a transient contraction paralysis followed by a slow flaccid paralysis. They bind voltage-independ
>>>
ently at site-4 of sodium channels (Nav) and shift the voltage of activation toward more negative potentials thereby affecting sodium channel activation and promoting spontaneous and repetitive firing. This toxin is active only on insects.
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Insect toxin BsIT3

 Insect toxin BsIT3 ELISA Kit
 Insect toxin BsIT3 Recombinant
 Insect toxin BsIT3 Antibody
Also known as Insect toxin BsIT3 (Insect toxin 3) (Bs-dprIT3).
Depressant insect beta-toxins cause a transient contraction paralysis followed by a slow flaccid paralysis. They bind voltage-independ
>>>
ently at site-4 of sodium channels (Nav) and shift the voltage of activation toward more negative potentials thereby affecting sodium channel activation and promoting spontaneous and repetitive firing. This toxin is active only on insects.
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Insect toxin BsIT4

 Insect toxin BsIT4 ELISA Kit
 Insect toxin BsIT4 Recombinant
 Insect toxin BsIT4 Antibody
Also known as Insect toxin BsIT4 (Insect toxin 4) (Bs-dprIT4).
Depressant insect beta-toxins cause a transient contraction paralysis followed by a slow flaccid paralysis. They bind voltage-independ
>>>
ently at site-4 of sodium channels (Nav) and shift the voltage of activation toward more negative potentials thereby affecting sodium channel activation and promoting spontaneous and repetitive firing. This toxin is active only on insects.
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Insect toxin LqhIT5

 Insect toxin LqhIT5 ELISA Kit
 Insect toxin LqhIT5 Recombinant
 Insect toxin LqhIT5 Antibody
Also known as Insect toxin LqhIT5 (Lqh IT5) (Toxin 5).
Excitatory insect beta-toxins induce a spastic paralysis. They bind voltage-independently at site-4 of sodium channels (Nav) and shift the vol
>>>
tage of activation toward more negative potentials thereby affecting sodium channel activation and promoting spontaneous and repetitive firing (). This toxin is active only on insects. It operates by inducing a fast contraction paralysis without depressant activity. It is more similar to the excitatory toxins in its mode of action and the depressant toxins in its primary structure.
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Insect toxin OsI1

 Insect toxin OsI1 ELISA Kit
 Insect toxin OsI1 Recombinant
 Insect toxin OsI1 Antibody
Also known as Insect toxin OsI1 (Insecticidal toxin OsI-1).
Depressant insect beta-toxins cause a transient contraction paralysis followed by a slow flaccid paralysis. They bind voltage-independent
>>>
ly at site-4 of sodium channels (Nav) and shift the voltage of activation toward more negative potentials thereby affecting sodium channel activation and promoting spontaneous and repetitive firing. This toxin is active only on insects.
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Insect toxin PlIT

 Insect toxin PlIT ELISA Kit
 Insect toxin PlIT Recombinant
 Insect toxin PlIT Antibody
Binds to sodium channels (Nav) and inhibits the inactivation of the activated channels, thereby blocking neuronal transmission (). Causes prolonged contractile paralysis in C.partellus larvae. It also
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has significant toxic effects on B.fusca larvae but not on mice.
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Insect toxin TbIT-1

 Insect toxin TbIT-1 ELISA Kit
 Insect toxin TbIT-1 Recombinant
 Insect toxin TbIT-1 Antibody
Also known as Insect toxin TbIT-1 (P-Ins-beta* NaTx4.3) (TbIT-I).
Beta toxins bind voltage-independently at site-4 of sodium channels (Nav) and shift the voltage of activation toward more negative
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potentials thereby affecting sodium channel activation and promoting spontaneous and repetitive firing (). This toxin is only active against insects.
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Insect-toxin Cn10

 Insect-toxin Cn10 ELISA Kit
 Insect-toxin Cn10 Recombinant
 Insect-toxin Cn10 Antibody
Also known as Insect-toxin Cn10 (CngtVIII).
Beta toxins bind voltage-independently at site-4 of sodium channels (Nav) and shift the voltage of activation toward more negative potentials thereby aff
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ecting sodium channel activation and promoting spontaneous and repetitive firing (). Is toxic on insects and crustaceans, but not on mammals.
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