Insecticidal compounds and methods for selection thereof
A series of potent and highly specific insecticidal toxins characterized by an amino acid sequences SEQ ID NO: 2-35.
1. An isolated polypeptide having insecticidal activity comprising a member selected from the group consisting of the mature toxin sequence of polypeptides having the sequences of SEQ ID NO: 2-35, is approximately 36-37 amino acids in length, has a molecular mass of approximately 4,000-5,000 Daltons, and is capable of forming 3 intrachain disulfide bonds and binding with an insect calcium channel.
2. An isolated polypeptide having insecticidal activity derived from funnel web spider atrax robustus comprising a member selected from the group consisting of the mature toxin sequence of polypeptides having the sequences of SEQ ID NO: 3, 9, 17, 18, 27 and 28, is approximately 36-37 amino acids in length, has a molecular mass of approximately 4,000-5,000 Daltons, and is capable of forming 3 intrachain disulfide bonds and binding with an insect calcium channel.
3. An insecticide composition comprising an insecticidally effective amount of a polypeptide of claim 1 and an agriculturally acceptable carrier.
4. A method of screening for substances having antagonistic activity with respect to insect voltage-gated calcium channel comprising the steps of: (a) screening a series of compounds to determine those compounds which inhibit the binding of a member selected from the mature toxin sequence of group of SEQ ID NO: 2-35 according to claim 1 , to insect calcium channels and (b) testing the ability of such inhibitory compounds to act as an antagonist of insect calcium channels.
5. A method of screening for substances having antagonistic activity with respect to insect voltage-gated calcium channel comprising the steps of: (a) screening a series of compounds to determine those compounds which inhibit the binding of a member selected from the group of the mature toxin sequence of SEQ ID NO: 2-35 according to claim 1 , to insect calcium channels; (b) screening those compounds which inhibit the binding of said group member for interaction with insect calcium channels to identify those compounds with a dissociation constant for its interaction with the insect calcium channels of less than about 10-7M, and (c) determining whether any compound identified with a dissociation constant for its interaction with the insect calcium channels has minimal activity against vertebrate calcium channels.