The only remaining ISC related explanation that I can think of to explain the large decrease in sidebands are large offset in PRCL or MICH.
Figure 1 shows an example of a lock acquisition on Friday. Around 15:24 UTC there is a transition where the B2 8MHz I signal becomes 3 times smaller, other B2 signals have also a step, and the SSFS line height in B2 DC decreases by a factor 4. But it has no incidence on the sideband recycling gain. This step behaves like a large improvement in PRCL offset, and thas not impact on the sideband gain, which would mean that a PRCL offset doesn't play a role in the sideband gain decrease.
On the other hand at 15:20:30 UTC there is another large transition. Where the sideband gains decreases, especially the 6MHz. At the same time the misbalance of the 56MHz sideband on B1p increases by a factor 3, and the 6Mhz power on B1p also increases by almost a factor 2. This misbalance then continues to increase over time, the B1p 6MHz power increases over time, and the sideband gain decreases. This could be explained by a very large offset on MICH, that then continues to increase over time.
Figure 2, 3 and 4 shows phase camera images on B4 and B1p during the CARM null lock. The sidebands on B4 progressively move away from the position of the carrier on B4. And the shape of the 6MHz sideband, and 56MHz LSB becomes more and more like a doughnut, which would be a sign of a mismatch between the north and west short Michelson, which could mean one of the input mirrors absorbs much more than the other.