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1 hree isoforms of M and four isoforms of T in Lumbricus and two isoforms of M and 5 isoforms of T in A
2 ng land-applied biosolids, soil, earthworms (Lumbricus), deer mice (Peromyscus maniculatus), and eggs
3                            Comparison of the Lumbricus dimeric assemblies with similar ones from moll
4 s paper, we present the crystal structure of Lumbricus erythrocruorin at 5.5-A resolution, which reve
5 asis for the strong allosteric properties of Lumbricus erythrocruorin.
6 y assembled subassemblies was 213,436 Da for Lumbricus Hb and 204,342 Da for Arenicola Hb, in good ag
7                                      HPLC of Lumbricus Hb provided a globin linker = 0.73:0.27 (+/- 0
8 the 2.6A resolution crystal structure of the Lumbricus hemoglobin dodecameric subassembly, which prov
9                           Standard wild-type Lumbricus rubellus earthworms were exposed to soil spike
10                       The clitellate annelid Lumbricus rubellus is a model organism for soil health t
11 community of the keystone ecological species Lumbricus rubellus through utilizing 16S rRNA pyrosequen
12 athways by, and biokinetics in the earthworm Lumbricus rubellus were investigated using stable isotop
13 ls for predicting Cu toxicity to earthworms (Lumbricus rubellus, Aporrectodea longa, and Eisenia feti
14                Populations of the earthworm, Lumbricus rubellus, are commonly found across highly con
15           When stachylysin was injected into Lumbricus terrestis, the erythrocruorin hemoglobin (abso
16 ed the survival and fitness of the earthworm Lumbricus terrestris (Oligochaeta, Lumbricidae) exposed
17 al bilayer hemoglobins from the oligochaetes Lumbricus terrestris and Tubifex tubifex, the polychaete
18                                   Individual Lumbricus terrestris earthworms exposed for 28 days in m
19 revious 5.5A resolution crystal structure of Lumbricus terrestris erythrocruorin revealed a hierarchi
20             In particular, the deep burrower Lumbricus terrestris exhibited the strongest positive re
21 he extracellular hemoglobin of the earthworm Lumbricus terrestris has four major kinds of O2-binding
22 tudies of the dissociation and reassembly of Lumbricus terrestris Hb have provided ample evidence for
23  of the approximately 3500 kDa extracellular Lumbricus terrestris hemoglobin is a 213 kDa dodecamer o
24 ts with that of a type I erythrocruorin from Lumbricus terrestris in which the spokes are broken into
25 bilayer hemoglobin (HBL Hb) of the earthworm Lumbricus terrestris provided masses of 3.41 to 3.66 MDa
26 a hexagonal bilayer (HBL) hemoglobin (Hb) of Lumbricus terrestris upon exposure to Gdm salts, urea an
27 globin (erythrocruorin) from the earth worm (Lumbricus terrestris) has shown promise as a potential h
28 racellular hemoglobin (Hb) of the earthworm, Lumbricus terrestris, has four major O2-binding chains,
29       Many annelids, including the earthworm Lumbricus terrestris, have giant cooperative respiratory
30 a hexagonal bilayer (HBL) hemoglobin (Hb) of Lumbricus terrestris, was investigated using gel filtrat
31 bin (Hb) and its subunits from the earthworm Lumbricus terrestris.

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