Nibbs Janna, Vinogradov Sergei A, Vanderkooi Jane M, Zelent Bogumil
Department of Biochemistry and Biophysics, Johnson Research Foundation, School of Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA.
Photochem Photobiol. 2004 Jul-Aug;80:36-40. doi: 10.1562/2004-01-17-RA-046.1.
The heme in horseradish peroxidase (HRP) was replaced by phosphorescent Pt-mesoporphyrin IX (PtMP), which acted as a phosphorescent marker of oxygen quenching and allowed comparison with another probe, Pd-mesoporphyrin IX (Khajehpour et al. (2003) Proteins 53, 656-666). Benzohydroxamic acid (BHA), a competitive inhibitor of the enzyme, was also used to monitor its effects on phosphorescence quenching. With the addition of BHA, in the presence of oxygen, the phosphorescence intensity of the protein increased. In contrast, the addition of BHA, in the absence of oxygen, reduced the phosphorescence intensity of the protein. K(d) = 18 microM when BHA binds to PtMP-HRP. The effect of BHA can be explained by two factors: (1) BHA reduces the accessibility of O(2) to the protein interior and (2) BHA itself quenches the phosphorescence. Consistent with this, the oxygen quenching of the phosphorescence of PtMP-HRP gave a quenching constant of k(q) = 234 mm Hg(-1) s(-1) in the absence of BHA and k(q) = 28.7 mm Hg(-1) s(-1) in the presence of BHA. The quenching rate of BHA is 4000 s(-1). The relative quantum yield of the phosphorescence of the Pt derivative is about six times that of the Pd derivative, whereas the phosphorescence lifetime is approximately eight times shorter. The high quantum yield and suitable lifetime make Pt-porphyrins appropriate as sensors of O(2) diffusion and flexibility in heme proteins.
辣根过氧化物酶(HRP)中的血红素被磷光铂-中卟啉IX(PtMP)取代,PtMP作为氧猝灭的磷光标记物,并可与另一种探针钯-中卟啉IX进行比较(Khajehpour等人,《蛋白质》,2003年,第53卷,656 - 666页)。苯甲羟肟酸(BHA),该酶的一种竞争性抑制剂,也被用于监测其对磷光猝灭的影响。加入BHA后,在有氧存在的情况下,蛋白质的磷光强度增加。相反,在无氧情况下加入BHA,则会降低蛋白质的磷光强度。当BHA与PtMP - HRP结合时,解离常数K(d)=18微摩尔。BHA的作用可由两个因素来解释:(1)BHA降低了氧气进入蛋白质内部的可及性;(2)BHA本身会猝灭磷光。与此一致的是,PtMP - HRP磷光的氧猝灭在无BHA时猝灭常数k(q)=234毫米汞柱⁻¹秒⁻¹,在有BHA时k(q)=28.7毫米汞柱⁻¹秒⁻¹。BHA的猝灭速率为4000秒⁻¹。Pt衍生物磷光的相对量子产率约为Pd衍生物的六倍,而磷光寿命则约短八倍。高量子产率和合适的寿命使得铂卟啉适合作为血红素蛋白中氧扩散和柔韧性的传感器。