Zagranichny Vasily E, Rudenko Natalia V, Gorokhovatsky Andrey Yu, Zakharov Mikhail V, Balashova Tamara A, Arseniev Alexander S
Branch of S&O Institute of Bioorganic Chemistry, Russian Academy of Sciences, Pushchino, Russia.
Biochemistry. 2004 Oct 26;43(42):13598-603. doi: 10.1021/bi0488247.
The purple chromoprotein (asFP595) from Anemonia sulcata belongs to the family of green fluorescent protein (GFP). Absorption and emission spectra of asFP595 are similar to those of a number of recently cloned GFP-like red proteins of the DsRed subfamily. The earlier proposed asFP595 chromophore structure [Martynov, V. I.; et al. (2001) J. Biol. Chem. 276, 21012-21016] was postulated to result from an "alternative cyclization" giving rise to a pyrazine-type six-membered heterocycle. Here we report that the asFP595 chromophore is actually very close in chemical structure to that of zFP538, a yellow fluorescent protein [Zagranichny, V. E.; et al. (2004) Biochemistry 43, 4764-4772]. NMR spectroscopic studies of four chromophore-containing peptides (chromopeptides) isolated under mild conditions from enzymatic digests of asFP595 and one chromopeptide obtained from DsRed revealed that all of them contain a p-hydroxybenzylideneimidazolinone moiety formed by Met-65/Gln-66, Tyr-66/67, and Gly-67/68 of asFP595/DsRed, respectively. Two asFP595 chromopeptides are proteolysis products of an isolated full-length polypeptide containing a GFP-type chromophore already formed and arrested at an earlier stage of maturation. The two other asFP595 chromopeptides were isolated as proteolysis products of the purified chromophore-containing C-terminal fragment. One of these has an oxo group at Met-65 C(alpha) and is a hydrolysis product of another one, with the imino group at Met-65 C(alpha). The N-unsubstituted imino moiety of the latter is generated by spontaneous polypeptide chain cleavage at a very unexpected site, the former peptide bond between Cys-64 C' and Met-65 N(alpha). Our data strongly suggest that both zFP538 and asFP595 could be attributed to the DsRed subfamily of GFP-like proteins.
来自沟海葵的紫色嗜铬蛋白(asFP595)属于绿色荧光蛋白(GFP)家族。asFP595的吸收光谱和发射光谱与DsRed亚家族中一些最近克隆的类GFP红色蛋白的光谱相似。先前提出的asFP595发色团结构[马尔蒂诺夫,V. I.;等人(2001年)《生物化学杂志》276,21012 - 21016]被假定是由“替代环化”产生的,形成了一种吡嗪型六元杂环。在此我们报告,asFP595发色团的化学结构实际上与黄色荧光蛋白zFP538的发色团结构非常接近[扎格拉尼奇尼,V. E.;等人(2004年)《生物化学》43,4764 - 4772]。对在温和条件下从asFP595的酶解产物中分离出的四种含发色团的肽(发色肽)以及从DsRed获得的一种发色肽进行的核磁共振光谱研究表明,它们都含有一个对羟基亚苄基咪唑啉酮部分,分别由asFP595/DsRed的Met - 65/Gln - 66、Tyr - 66/67和Gly - 67/68形成。两种asFP595发色肽是一个分离的全长多肽的蛋白水解产物,该多肽含有一个已经形成的GFP型发色团,并在成熟的早期阶段停滞。另外两种asFP595发色肽是作为纯化的含发色团的C末端片段的蛋白水解产物分离得到的。其中一种在Met - 65 C(α)处有一个氧代基团,是另一种的水解产物,后者在Met - 65 C(α)处有一个亚氨基基团。后者的N - 未取代亚氨基部分是由在一个非常意想不到的位点,即Cys - 64 C'和Met - 65 N(α)之间的前一个肽键处的自发多肽链裂解产生的。我们的数据有力地表明,zFP538和asFP595都可归为类GFP蛋白的DsRed亚家族。