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1 s typical of unbound bacteriochlorophyll and bacteriopheophytin.
2 ated state involving the anion of the B-side bacteriopheophytin.
3  aromatic carbons in bacteriochlorophyll and bacteriopheophytin.
4 er from the bacteriochlorophyll dimer to the bacteriopheophytin acceptor was found to be multiphasic
5 netics of the P+HA- (oxidized donor, reduced bacteriopheophytin acceptor) recombination reaction was
6 hlorophyll dimer donor P860 and probably the bacteriopheophytin acceptor.
7 hlorophyll special pair (donor), the reduced bacteriopheophytin (acceptor), and the reduced accessory
8  that lack QA in which QB was reduced by the bacteriopheophytin along the B-branch.
9 onic states that are formed by mixing of the bacteriopheophytin and accessory bacteriochlorophyll exc
10 osphatidylcholine is 6.5 A from the inactive bacteriopheophytin, and the associated electrostatic int
11 st 1 ns, but at room temperature, the B-side bacteriopheophytin anion is short-lived, decaying within
12 ld), and (3) electron transfer to the M-side bacteriopheophytin BPh(M) ( approximately 30% yield).
13 nter contains bacteriochlorophyll (Bchl) and bacteriopheophytin (Bph) cofactors that provide natural
14 kinetic resolution of BChl(A) and the A-side bacteriopheophytin, BPh(A), in the electron transfer pro
15 d state, 62% electron transfer to the L-side bacteriopheophytin, BPh(L), and 23% electron transfer to
16 nts containing a bacteriochlorophyll (BChl)--bacteriopheophytin (BPhe) dimer with and without hydroge
17 polypeptide residue 121 near the photoactive bacteriopheophytin (BPhL) is characterized using ultrafa
18 obacter sphaeroides in which the photoactive bacteriopheophytin (BPhL) is replaced by a bacteriochlor
19 polypeptide residue 121 near the photoactive bacteriopheophytin (BPhL).
20  species, the electrochromic response of the bacteriopheophytin cofactors associated with Q(A)(-)Q(B)
21  that have Tyr at position M208 and lack the bacteriopheophytin electron acceptor H(L).
22 lorins exhibit absorption spectra typical of bacteriopheophytins (free base bacteriochlorophylls), wi
23 ations showed that RCs assembled without the bacteriopheophytin H(L) electron acceptor and performed
24 let state P, electron transfer to the B-side bacteriopheophytin (H(B)) gives P(+)H(B)(-) in approxima
25 ls: an accessory bacteriochlorophyll (B) and bacteriopheophytin (H).
26  the accessory bacteriochlorophylls (B), the bacteriopheophytins (H), and the primary electron donor
27 the special pair, P, and anion of the A-side bacteriopheophytin, H(A)) can decay rapidly via recombin
28 es the H sites that are normally occupied by bacteriopheophytin in wild type, and at least 1 of these
29 the excited primary donor (P*) to the A-side bacteriopheophytin (P* --> P+ H(A)-) in approximately 3
30 graphy separation of bacteriochlorophyll and bacteriopheophytin pigments extracted from the core comp
31        Compared to bacteriochlorophyll a and bacteriopheophytin, the related structurally modified an
32 arized 15N nuclei in bacteriochlorophyll and bacteriopheophytin was previously demonstrated with nons
33 e in the region of the Qx band of the B side bacteriopheophytin which could be attributed to 10%-20%

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