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1 ry epithelium of the main auditory endorgan (sacculus).
2 rather than distributed uniformly around the sacculus.
3 e Drosophila melanogaster antenna called the sacculus.
4  PG-synthesizing enzymes use to build the PG sacculus.
5 ptidases is needed for surface growth of the sacculus.
6 ion of the hair cell bundles of the bullfrog sacculus.
7 ases are also controlled from outside of the sacculus.
8 eby facilitating attachment of new PG to the sacculus.
9  and uniform spatial distribution across the sacculus.
10 irmed that it physically binds to the murein sacculus.
11 thelial electrical stimulation of the frog's sacculus.
12 irected against proteins from the bullfrog's sacculus.
13 y, and overall topology of the peptidoglycan sacculus.
14  the nonsensory and sensory epithelia of the sacculus.
15 ed that this structure was the peptidoglycan sacculus.
16 ssociated with the T. pallidum peptidoglycan sacculus.
17 ventral head axis to maximally stimulate the sacculus.
18                       The peptidoglycan (PG) sacculus, a meshwork of polysaccharide strands cross-lin
19 iscrete population of sensory neurons in the sacculus, a multi-chambered pocket within the antenna.
20 e in an intact preparation of the bullfrog's sacculus, a receptor organ sensitive to low-frequency se
21                         In the Gram-negative sacculus, a single layer of glycans lie parallel to the
22 eurons innervating pore-less sensilla of the sacculus, a unique invagination of the third antennal se
23 bserved in vitro in hair cells from the frog sacculus and the turtle basilar papilla.
24 quirements for building a peptidoglycan-like sacculus and/or division septum.
25 understanding the evolution of the bacterial sacculus, and for interpreting results derived by mutati
26  expressed in the retina, brain, testis, and sacculus, and Myo3B (155 kDa) is expressed in the retina
27 ods of cells from different areas within the sacculus, and on different epithelia.
28 e developed QuASAR (quantitative analysis of sacculus architecture remodeling), which measures subcel
29 ic transglycosylases with purified bacterial sacculus are characterized in a quantitative manner.
30 romolecule that forms a protective mesh-like sacculus around the cytoplasmic membrane.
31 nuran amphibians - the amphibian papilla and sacculus, both detectors of weak environmental vibration
32 nt a unique example of a bacterium with a PG sacculus but without FtsZ, challenging the current hypot
33 em were studied following stimulation of the sacculus by both hypergravity and galvanic stimulation.
34 tributes to growth and enlargement of the PG sacculus by modulating the cellular levels of the cross-
35                                 The goldfish sacculus gives rise to the vast majority of inputs that
36 ding models for niche-specific regulation of sacculus growth.
37 notype was paralleled by the biochemistry of sacculus growth.
38 ns displayed by hair bundles of the bullfrog sacculus have complex temporal profiles, not fully captu
39 r bundles of the bullfrog (Rana catesbeiana) sacculus have exhibited spontaneous oscillations.
40 hair bundles of hair cells in the bullfrog's sacculus have the ability to amplify mechanical stimuli
41                             Growth of the PG sacculus is a dynamic event requiring the concerted acti
42 he synthesis of the protective peptidoglycan sacculus is a dynamic process that is tightly regulated
43 of most bacteria, the peptidoglycan (murein) sacculus is a meshwork of glycan strands joined by pepti
44                        The shape of the wall sacculus is determined by the way it is deposited, which
45           When a hair cell of the bullfrog's sacculus is maintained in vitro under native ionic condi
46 quency range of natural stimuli to which the sacculus is maximally responsive.
47 of auditory and seismic stimuli to which the sacculus is most responsive.
48 are known, the architecture of the assembled sacculus is not.
49                The final product, the murein sacculus, is a single, covalently closed macromolecule t
50 ulti-gigadalton bag-like molecule called the sacculus--is synthesized from peptidoglycan.
51   Growth of the mesh-like peptidoglycan (PG) sacculus located between the bacterial inner and outer m
52               Peptidoglycan forms a net-like sacculus made of glycan strands crosslinked by peptides.
53 ecific humidity range depends on specialized sacculus neurons, and that the processing of environment
54 vagination during division and to maintain a sacculus of constant thickness that allows for maintenan
55 reely through the meshwork of an unstretched sacculus of either organism is roughly 25 kDa.
56 performed experiments on hair cells from the sacculus of the bullfrog.
57 hought to have acquired a covering, called a sacculus or exoskeleton, that made it stress-resistant.
58 r, an active hair bundle from the bullfrog's sacculus oscillates spontaneously.
59  B. cereus, E. faecalis, or S. aureus, (iii) sacculus preparations from each strain, or (iv) culture
60 wth of the bacterial cell wall peptidoglycan sacculus requires the co-ordinated activities of peptido
61  hair cells from bullfrog (Rana catesbeiana) sacculus resonate at frequencies well above the range of
62 ication, we surgically removed the appendix, sacculus rotundus, and Peyer's patches from neonatal rab
63 free-standing hair bundles from the Bullfrog sacculus suggest the existence of an active process that
64 ipitation experiments, we showed in bullfrog sacculus that PMCA1b is the major isozyme of hair cell a
65  a highly cross-linked, protective mesh-like sacculus that surrounds the bacterial cytoplasmic membra
66 responses of eighth nerve afferents from the sacculus, the main auditory end organ of the inner ear,
67                             Efferents to the sacculus, the main auditory end organ, showed features e
68 ating springs, such as those of the bullfrog sacculus, the need for membrane reinforcement by channel
69 rents were isolated as they coursed from the sacculus through the medulla.
70 ht underlie the exquisite sensitivity of the sacculus to mechanical stimulation.
71 he ability of hair bundles in the bullfrog's sacculus to produce oscillations that might underlie spo
72 ke, elastic heteropolymer, the peptidoglycan sacculus, to protect themselves from bursting due to the
73       When a hair bundle from the bullfrog's sacculus was abruptly deflected in the positive directio
74 surface anatomy of BWC's basilar papilla and sacculus was examined utilizing scanning electron micros
75 ling directly on tip links of the bullfrog's sacculus we have evoked transduction currents from hair
76 g dual-beam interferometry in the bullfrog's sacculus, we found that thermal movements of stereocilia
77                      The frog (Rana pipiens) sacculus, which is used for social communication and esc
78         Furthermore, turnover of the E. coli sacculus (whole cell wall) by MltB was characterized.
79 ptic afferent neurites in the explanted frog sacculus, with mechanoelectrical transduction (MET) bloc
80 nd cleaves monomeric tetrapeptides in the PG sacculus, yielding tripeptides.

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