The prominent interdomain basic surface region seen in the high-resolu
tion structure of tile active lumen-side C-terminal fragment of turnip
cytochrome f, containing the conserved Lys58,65,66 (large domain) and
Lys187 (small domain), has been inferred from in vitro studies to bt
responsible for docking of its physiological oxidant, plastocyanin. Th
e effect of the putative docking region of cyt f on its reactivity in
vivo was tested by site-directed mutagenesis in Chlamydomonas reinhard
tii. Three charge-neutralizing mutants were constructed involving: (i)
the two lysines (Lys188Asn-Lys189Gln) in the small domain, (ii) the t
hree lysines (Lys58Gln-Lys65Ser-Lys66Glu) in the large domain, and (ii
i) all five of these lysines spanning both domains. All mutants grew p
hototrophically. The mutants displayed a 20-30% increase in average ge
neration time, and comparable decreases in rates of steady-state oxyge
n evolution and the slow (millisecond) electrochromic 515 nm band shif
t, The magnitude of the changes was greatests in the 5-fold Lys-minus
mutant (Lys58Gln-Lys65Ser-Lys66Glu-Lys188Asn-Lys189Gln). The mutants s
howed a small increase (similar to 25%) in the t(1/2), from 0.2 to 0.2
5 ms, of cyt f photooxidation, far less than anticipated (ca. 100-fold
) from in vitro studies of the effect of high ionic strength on the cy
t f-PC interaction. The t(1/2) of cyt f dark reduction via the Rieske
protein increased from 5-6 ms in the wild type to 11-12 ms in tile 5-f
old Lys-minus mutant. Cells grown phototrophically in the absence of C
u, where cyt c(6) is the electron acceptor of cyt f; displayed net rat
es of cytochrome photooxidation that were slightly faster than those i
n the presence of Cu, which also decreased by a factor of less than or
equal to 25% in the Lys-minus mutants. II was concluded that (a) the
net effect of electrostatic interaction between cytochrome Sand its el
ectron acceptor ii? vivo is much smaller than measured in vitro and is
not rate-limiting, This may be a consequence of a relatively high ion
ic strength environment and the small diffusional space available for
collision and docking in the internal thylakoid lumen of log phase C,
reinhardtii. (b) The efficiency of electron transfer to cytochrome f f
rom the Rieske protein is slightly impaired by the neutralization of t
he lysine-rich domain.