WordNet
- walking with short steps and the weight tilting from one foot to the other; "ducks walk with a waddle"
- wrap in swaddling clothes; "swaddled the infant" (同)swathe
- someone who walks with a waddling gait; "fat waddlers who walk like pigeons"
- someone who twaddles; someone who writes or talks twaddle
PrepTutorEJDIC
- (アヒルのように)よたよた(よちよち)歩く《+along》 / 《しばしばa ~》よたよた歩き,よちよち歩き
- …‘を'包帯で巻く / (昔の風習で)〈赤ん坊〉‘を'細長い布で包む / 細長い布;包帯
- むだ口,たわごと;くだらない著作,駄作 / むだ口をきく
Wikipedia preview
出典(authority):フリー百科事典『ウィキペディア(Wikipedia)』「2016/01/15 06:24:51」(JST)
[Wiki en表示]
Not to be confused with wattle.
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Look up waddle in Wiktionary, the free dictionary. |
Waddle may refer to:
- Waddle, Pennsylvania, United States
- Waddle (surname), a surname
See also
UpToDate Contents
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English Journal
- Calorimetric studies of the interactions of linker histone H1(0) and its carboxyl (H1(0)-C) and globular (H1(0)-G) domains with calf-thymus DNA.
- Machha VR, Waddle JR, Turner AL, Wellman S, Le VH, Lewis EA.Author information Department of Chemistry, Mississippi State University, Box 9573, Mississippi State, MS 39762, United States.AbstractHistone H1 is a chromatin protein found in most eukaryotes. ITC and CD have been used to study the binding of H1(0) and its C-terminal, H1(0)-C, and globular, H1(0)-G, domains to a highly polymerized DNA. ITC results indicate that H1(0) and H1(0)-C bind tightly to DNA (Ka≈1×10(7)), with an unfavorable ΔH (ΔH≈+22kcal/mol) and a favorable ΔS (-TΔS≈-30kcal/mol). Binding H1(0)-G to DNA at 25°C is calorimetrically silent. A multiple independent site model fits the ITC data, with the anomaly in the data near saturation attributed to rearrangement of bound H1, maximizing the number of binding sites. CD experiments indicate that H1(0)/DNA and H1(0)-C/DNA complexes form with little change in protein structure but with some DNA restructuring. Salt dependent ITC experiments indicate that the electrostatic contribution to binding H1(0) or H1(0)-C is small ranging from 6% to 17% of the total ΔG.
- Biophysical chemistry.Biophys Chem.2013 Dec 31;184:22-8. doi: 10.1016/j.bpc.2013.08.005. Epub 2013 Aug 31.
- Histone H1 is a chromatin protein found in most eukaryotes. ITC and CD have been used to study the binding of H1(0) and its C-terminal, H1(0)-C, and globular, H1(0)-G, domains to a highly polymerized DNA. ITC results indicate that H1(0) and H1(0)-C bind tightly to DNA (Ka≈1×10(7)), with an unfavo
- PMID 24036047
- Exploring the energetics of histone H1.1 and H1.4 duplex DNA interactions.
- Machha VR, Jones SB, Waddle JR, Le VH, Wellman S, Lewis EA.Author information Department of Chemistry, Mississippi State University, Box 9573, Mississippi State, MS 39762, USA.AbstractH1.1 and H1.4 bind tightly to both short DNA oligomers and to CT-DNA (Ka≈1×107). Binding is accompanied by an unfavorable enthalpy change (∆H≈+22kcal/mol) and a favorable entropy change (-T∆S≈-30kcal/mol). The Tm for the H1.4/CT-DNA complex is increased by 9°C over the Tm for the free DNA. H1.4 titrations of the DNA oligomers yield stoichiometries (H1/DNA) of 0.64, 0.96, 1.29, and 2.04 for 24, 36, 48, and 72-bp DNA oligomers. The stoichiometries are consistent with a binding site size of 37±1bp. CT-DNA titration data are consistent with binding site sizes of 32bp for H1.1 and 36bp for H1.4. The heat capacity changes, ΔCp, for formation of the H1.1 and H1.4/CT-DNA complexes are -160calmol-1K-1 and -192calmol-1K-1 respectively. The large negative ΔCp values indicate the loss of water from the protein DNA interface in the complex.
- Biophysical chemistry.Biophys Chem.2013 Nov 26;185C:32-38. doi: 10.1016/j.bpc.2013.11.007. [Epub ahead of print]
- H1.1 and H1.4 bind tightly to both short DNA oligomers and to CT-DNA (Ka≈1×107). Binding is accompanied by an unfavorable enthalpy change (∆H≈+22kcal/mol) and a favorable entropy change (-T∆S≈-30kcal/mol). The Tm for the H1.4/CT-DNA complex is increased by 9°C over the Tm for the free DN
- PMID 24317196
- Trends in amphibian occupancy in the United States.
- Adams MJ, Miller DA, Muths E, Corn PS, Grant EH, Bailey LL, Fellers GM, Fisher RN, Sadinski WJ, Waddle H, Walls SC.Author information United States Geological Survey, Forest and Rangeland Ecosystem Science Center, Corvallis, Oregon, United States of America.AbstractThough a third of amphibian species worldwide are thought to be imperiled, existing assessments simply categorize extinction risk, providing little information on the rate of population losses. We conducted the first analysis of the rate of change in the probability that amphibians occupy ponds and other comparable habitat features across the United States. We found that overall occupancy by amphibians declined 3.7% annually from 2002 to 2011. Species that are Red-listed by the International Union for Conservation of Nature (IUCN) declined an average of 11.6% annually. All subsets of data examined had a declining trend including species in the IUCN Least Concern category. This analysis suggests that amphibian declines may be more widespread and severe than previously realized.
- PloS one.PLoS One.2013 May 22;8(5):e64347. doi: 10.1371/journal.pone.0064347. Print 2013.
- Though a third of amphibian species worldwide are thought to be imperiled, existing assessments simply categorize extinction risk, providing little information on the rate of population losses. We conducted the first analysis of the rate of change in the probability that amphibians occupy ponds and
- PMID 23717602
Japanese Journal
- Transient localized accumulation of actin in Caenorhabditis elegans blastomeres with oriented asymmetric divisions
- 新しい環境監視システム(Mining Engineer,June,1985)
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