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P Hains

Publications and source records attributed to P Hains.

4 recordsLinked to original sources

Proteins associated with the cell envelope of Trichoderma reesei: a proteomic approach.

A total of 220 cell envelope-associated proteins were successfully extracted and separated from Trichoderma reesei mycelia actively synthesizing and secreting proteins and from mycelia in which the secretion of proteins are low. Altogether 56 spots were examined by nanoelectrospray tandem mass spectrometry and amino acid sequence was obtained for 32 spots. From these, 20 spots were identified by Advanced BLAST searches against all databases available to BLAST. The most abundant protein in both types of mycelia was HEX1, the major protein in Woronin body, a structure unique to filamentous fungi. Other proteins identified were vacuolar protease A, enolase, glyceraldehyde-3-phosphate dehydrogenase, transaldolase, protein disulfide isomerase, mitochondrial outer membrane porin, diphosphate kinase and translation elongation factor beta. Partial short amino acid sequence obtained from some proteins did not allow them to be assigned to a specific protein in the database by BLAST search. In some cases, the tandem mass spectrometry spectra were too complicated to be able to assign an amino acid sequence with certainty. The number of spots (12) giving a clear signal but finding no match in the databases suggests that a majority of proteins associated with a filamentous fungal cell wall, are novel. Some technical problems related to protein isolation are also discussed.

Amino Acid Sequence↗

Amino acid sequence of a neurotoxic phospholipase A2 enzyme from common death adder (Acanthophis antracticus) venom.

The amino acid sequence of the first neurotoxic phospholipase A2, acanthoxin A1, purified from the venom of the Common death adder (Acanthophis antarcticus) was determined. Acanthoxin A1 shows high homology with other Australian elapid PLA2 neurotoxins, in particular Acanthin-I and -II, also from Death adder, Pseudexin A from the Red-bellied black snake (Pseudechis porphyriacus), and Pa-12a and Pa-9c from the King brown snake (Pseudechis australis). Acanthoxin A1 is a single-chain 118 amino acid residue PLA2, including 14 half cystine residues and the essential residues forming the ubiquitous calcium binding pocket and catalytic site. Critical analysis of the residues hypothesized to be important for neurotoxicity is presented.

Amino Acid Sequence↗

Acanthoxin, a toxic phospholipase A2 from the venom of the common death adder (Acanthophis antarcticus).

This is the first report of a phospholipase A2 (PLA2) from the venom of the common death adder, Acanthophis antarcticus. Acanthoxin is a basic, monomeric PLA2 of mol. wt 13,000, consistent with the weight of neurotoxic PLA2s from other Australian elapids. However, preliminary ultracentrifugation experimentation has shown that it is able to undergo concentration-dependent aggregation to form dimers. It has a relatively high degree of enzymatic activity (23.93 +/- 1.18 mumoles of phospholipid hydrolysed/min/mg protein), but a low level of toxicity (3.2 mg/kg, s.c.). Acanthoxin is known to exist as two isoforms (A1 and A2), both of which show a high degree of homology with numerous elapid PLA2 neurotoxins, in particular pseudexin A from the red-bellied black snake (Pseudechis porphyriacus).

Amino Acid Sequence↗

The last frontier.

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