The electronic structure of the cation radical of the primary electron donor was investigated in genetically modified reaction centers of Rhodobacter sphaeroides. The site-directed mutations were designed to add or remove hydrogen bonds between the conjugated carbonyl groups of the primary donor, a bacteriochlorophyll <em>dimer</em>, and histidine residues of the protein and were introduced at the symmetry-related sites L168 His->>Phe, HF(L168), and M197 Phe->>His, FH(M197), near the <em>2</em>-acetyl groups of the <em>dimer</em> and at sites M160 Leu->>His, LH(M160), and L131 Leu->>His, LH(L131), in the vicinity of the 9-keto carbonyls of the <em>dimer</em>. The single mutants and a complete set of double mutants were studied using EPR, EN<em>D</em>OR, and TRIPLE resonance spectroscopy. The changes in the hydrogen bond situation of the primary donor were accompanied by changes in the <em>dimer</em> oxidation midpoint potential, ranging from 410 to 710 mV in the investigated mutants [Lin, X., Murchison, H. A., Nagarajan, V., Parson, W. W., Williams, J. C. & Allen, J. P. (1994) Proc. Natl. Acad. Sci. U.S.A. 91, 10<em>2</em>65-10<em>2</em>69]. It was found that the addition or removal of a hydrogen bond causes large shifts of the spin density between the two halves of the <em>dimer</em>. Measurements on double mutants showed that the unpaired electron can be gradually shifted from a localization on the L-half of the <em>dimer</em> to a localization on the M-half, depending on the hydrogen bond situation. As a control, the effects of the different hydrogen bonds on P.+ in the mutant HL(M<em>2</em>0<em>2</em>), which contains a BChlL-BPheM hetero<em>dimer</em> as the primary donor with localized spin on the BChl aL [Bylina, E. J., & Youvan, <em>D</em>. C. (1988) Proc. Natl. Acad. Sci. U.S.A. 85, 7<em>2</em><em>2</em>6-7<em>2</em>30; Schenck, C. C., Gaul, <em>D</em>., Steffen M., Boxer S. G., Mc<em>D</em>owell L., Kirmaier C., & Holten <em>D</em>. (1990) in Reaction Centers of Photosynthetic Bacteria (Michel-Beyerle M. E., Ed.) pp <em>2</em><em>2</em>9-<em>2</em>38, Springer, Berlin] were studied. In this mutant only small local changes of the spin densities (< or = 10%) in the vicinity of the hydrogen bonds were observed. The effects of the introduced hydrogen bonds on the spin density distribution of the <em>dimer</em> in the mutants are discussed in terms of different orbital energies of the two BChl a moieties which are directly influenced by hydrogen bond formation. The observed changes of the spin density distribution for the double mutants are additive with respect to the single mutations.(ABSTRACT TRUNCATE<em>D</em> AT 400 WOR<em>D</em>S)