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含有还原态细菌叶绿素的反应中心中的瞬态状态。

Transient states in reaction centers containing reduced bacteriopheophytin.

作者信息

Schenck C C, Parson W W, Holten D, Windsor M W

出版信息

Biochim Biophys Acta. 1981 Apr 13;635(2):383-92. doi: 10.1016/0005-2728(81)90036-0.

Abstract

Photosynthetic reaction centers isolated from Rhodopseudomonas sphaeroides strain R-26 were excited with non-saturating 7-ps, 600-nm flashes under various conditions, and the resulting absorbance changes were measured. If the quinone electron acceptor (Q) is in the oxidized state, flash excitation generates a transient state (PF), in which an electron has moved from the primary electron donor (P, a dimer of bacteriochlorophylls) to an acceptor complex involving a special bacteriopheophytin (H) and another bacteriochlorophyll (B). PF decays in 200 ps as an electron moves from H to Q and the acceptor complex are reduced photochemically before the excitation, the flash generates a different transient state of P with a high quantum yield. This state decays with a lifetime of 340 ps. There is no indication of electron transfer from P to B under these conditions, but this does not rule out the possibility that B is an intermediate electron carrier between P and H. Measurements of the yield of fluorescence from P under various conditions show that the 340 ps state is not the fluorescent excited singlet state of P. The transient state could be a triplet state, a charge-transfer state of P, or another excited singlet state that is not fluorescent.

摘要

在各种条件下,用非饱和的7皮秒、600纳米闪光激发从球形红假单胞菌R-26菌株分离出的光合反应中心,并测量由此产生的吸光度变化。如果醌电子受体(Q)处于氧化状态,闪光激发会产生一个瞬态(PF),其中一个电子已从初级电子供体(P,细菌叶绿素二聚体)转移到一个包含特殊细菌脱镁叶绿素(H)和另一种细菌叶绿素(B)的受体复合物。当电子从H转移到Q且受体复合物在激发前被光化学还原时,PF在200皮秒内衰减,闪光会产生具有高量子产率的P的不同瞬态。这种状态以340皮秒的寿命衰减。在这些条件下没有迹象表明电子从P转移到B,但这并不排除B是P和H之间的中间电子载体的可能性。在各种条件下对P的荧光产率的测量表明,340皮秒状态不是P的荧光激发单重态。该瞬态可能是三重态、P的电荷转移态或另一种非荧光的激发单重态。

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