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The assembly process of hydrogel units in a fluidic channel was carried out by intermeshing of the latch structure and the latch block.
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Latch structures and fluidic chamber were patterned on a 4-inch Si wafer with 130 μm thickness.
The fluidic channel consists of two parts: fluidic chamber and latch structure.
A similar 'ionic latch' structure is found in AddB and site-directed mutagenesis experiments support the idea that it is unlocked in response to Chi recognition (see Supplementary Figure S7 for discussion).
Interestingly, a candidate exit channel is lined and partially occluded by the AddB latch structure described above (Supplementary Figure S7).
The long groove (3150 µm × 300 µm × 130 µm) and the narrow slots (150 µm × 300 µm × 130 µm) of the latch structure are geometrically fitted with latch blocks of the hydrogel unit and prevent disassembly after assembly.
It seems likely that unlocking of this latch structure upon Chi recognition fully opens the exit channel for extrusion of an ssDNA loop.
Micro-computed tomography and dissections showed that both species have the spring and latch structures that are used in other species for producing a spring-loaded strike; however, kinematic analyses indicated that only A. vicina consistently engages the elastic mechanism.
Hydrogel units are assembled in a fluidic channel by intermeshing latch blocks and latch structures.
The bottom view of the assembly shows that the latch structures of hydrogel units and fluidic channel were firmly anchored (Fig. 3b).
b Fluidic channel has latch structures where the latch blocks of hydrogel units are geometrically locked.
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