Savel-Niemann A
Zoologisches Institut der Universität München.
Biol Chem Hoppe Seyler. 1989 May;370(5):485-98. doi: 10.1515/bchm3.1989.370.1.485.
The venom of the tarantula Eurypelma californicum was analysed biochemically, the components were isolated and characterized. The pH value of the crude venom is 5.3 +/- 0.3. After dilution with distilled water, UV-absorption spectra showed a single maximum at 258 nm (pH ca. 7.0). A second maximum at 328 nm emerged above pH 8.0. Protein concentration of the venom is ca. 65 mg/ml. After Coomassie staining SDS-PAGE patterns show three major bands with apparent molecular masses around 40 kDa, 4.3 kDa and 1.3 kDa besides some weak high molecular protein bands. The following low-molecular mass constituents were determined in the crude venom: ATP, ADP, AMP, glutamic acid, aspartic acid, gamma-aminobutyric acid, glucose and the ions potassium, sodium, calcium, magnesium and chloride; the osmolality was 361 micro0smol/ml. The LD50 value for female cockroaches was 0.15 microliters venom per g body weight and for male cockroaches 0.4 microliters venom per g body weight. Separation of the crude venom by gel chromatography yielded four elution peaks. Peak I contains the enzyme hyaluronidase. The activity is 200-900 U/microliters. Peak II contains a mixture of toxic peptides. Peak III contains the 1.3-kDa components of SDS-PAGE and peak IV mainly contains ATP. Venom proteins including the enzyme hyaluronidase were precipitated by 5% trichloroacetic acid. The supernatant was separated by HPLC into 13 fractions. Fraction 1 contains glutamic acid, aspartic acid, gamma-aminobutyric acid and ATP; fraction 2 contains ATP, ADP and AMP as well as a component 2' visible in SDS-PAGE as 1.3-kDa band and consisting of spermine and tryptophan; fraction 3 contains ATP and an unknown component 3'; fractions 4-6 also show a 1.3-kDa band in SDS-PAGE, fraction 4 being tyrosylspermine and fractions 5 and 6 containing compounds of spermine and aromatic molecules; fraction 7 contains a peptide which lacks aromatic amino acids, it was sequenced from the N-terminus; fractions 8-13 contain very similar toxic peptides. The peptides in fractions 11 and 12, labeled ESTX for Eurypelma spider toxin, were cleaved with different enzymes and sequenced. They differ in one amino acid in position 26. Homologies with scorpion toxins and with a toxin of the spider Segestria florentina were found.
对墨西哥红尾蜘蛛(Eurypelma californicum)的毒液进行了生化分析,分离并鉴定了其成分。粗毒液的pH值为5.3±0.3。用蒸馏水稀释后,紫外吸收光谱在258nm处有一个单一的最大值(pH约为7.0)。在pH值高于8.0时,在328nm处出现第二个最大值。毒液的蛋白质浓度约为65mg/ml。考马斯亮蓝染色后,SDS-PAGE图谱显示除了一些较弱的高分子量蛋白条带外,还有三条主要条带,其表观分子量分别约为40kDa、4.3kDa和1.3kDa。在粗毒液中测定了以下低分子量成分:ATP、ADP、AMP、谷氨酸、天冬氨酸、γ-氨基丁酸、葡萄糖以及离子钾、钠、钙、镁和氯;渗透压为361微渗摩尔/毫升。对雌性蟑螂的LD50值为每克体重0.15微升毒液,对雄性蟑螂为每克体重0.4微升毒液。通过凝胶色谱法分离粗毒液产生了四个洗脱峰。峰I含有透明质酸酶。其活性为200-900U/微升。峰II含有有毒肽混合物。峰III含有SDS-PAGE中1.3kDa的成分,峰IV主要含有ATP。包括透明质酸酶在内的毒液蛋白可被5%的三氯乙酸沉淀。上清液通过HPLC分离成13个馏分。馏分1含有谷氨酸、天冬氨酸、γ-氨基丁酸和ATP;馏分2含有ATP、ADP和AMP以及在SDS-PAGE中作为1.3kDa条带可见的成分2',其由精胺和色氨酸组成;馏分3含有ATP和未知成分3';馏分4-6在SDS-PAGE中也显示出1.3kDa的条带,馏分4为酪氨酰精胺,馏分5和6含有精胺和芳香族分子的化合物;馏分7含有一种缺乏芳香族氨基酸的肽,已从N端测序;馏分8-13含有非常相似的有毒肽。馏分11和12中的肽,标记为Eurypelma蜘蛛毒素的ESTX,用不同的酶切割并测序。它们在第26位氨基酸上有一个差异。发现了与蝎毒素以及蜘蛛Florentina Segestria的一种毒素的同源性。