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1 cardiomyocyte sarcomeric proteins, including alpha-tropomyosin.
2 ssociation with decreased phosphorylation of alpha-tropomyosin.
3 residue mutations in TPM1, the gene encoding alpha-tropomyosin.
4 ene identified in these analyses encodes for alpha-tropomyosin.
5 leles of myosin heavy chain, troponin-T, and alpha-tropomyosin.
6 proteins, including myosin, alpha-actin, and alpha-tropomyosin.
7 ur through direct interaction with actin and alpha-tropomyosin.
8 nly: beta-actin increased 1.4-fold (P<0.05); alpha-tropomyosin, 1.3-fold (P<0.05); alpha1-actinin, 1.
9 myosin heavy chain, cardiac troponin T, and alpha-tropomyosin account for > 45% of familial hypertro
11 c cardiomyopathy mutations A63V and E180G in alpha-tropomyosin (alpha-Tm) have been shown to cause sl
14 tion inTPM3, which encodes the slow skeletal alpha-tropomyosin (alphaTm), was linked to NM in a large
16 tein levels of smooth muscle alpha-actin and alpha-tropomyosin and increased levels of macrophage mar
17 yocytes expressing green fluorescent protein-alpha-tropomyosin and microinjected with mAb17 revealed
18 s with multiple transcripts, skeletal muscle alpha-tropomyosin and one for a repetitive sequence, sho
19 isting of the first 19 residues of rat short alpha-tropomyosin and the last 18 residues of the GCN4 l
20 t depression in levels of phosphorylation of alpha-tropomyosin and troponin I in fiber bundles from t
21 ts with mutations in troponin T, troponin I, alpha-tropomyosin, and actin do not invariably present w
22 s of cardiac troponin T, cardiac troponin I, alpha-tropomyosin, and cardiac actin was performed using
24 nd that both short nonmuscle and long muscle alpha-tropomyosins bind there as well, though with diffe
25 sense mutations in cardiac troponin T (TnT), alpha-tropomyosin, C-protein, or cardiac myosin heavy ch
27 rt that purified RNA from the 3'UTR of human alpha-tropomyosin can inhibit in vitro translation in a
29 cardiac function or structure, whereas total alpha-tropomyosin deficiency is incompatible with life.
31 nts that activate the weak 3' splice site of alpha-tropomyosin exon 2 as well as a variety of heterol
33 mapped the functional domains encoded by the alpha-tropomyosin exon 9a (striated muscle-specific) and
39 (FHC) caused by an Asp175Asn mutation in the alpha-tropomyosin gene in affected subjects from three u
40 3' untranslated region riboregulator of the alpha-tropomyosin gene is not needed for the inhibition
43 lotypes of three kindreds with FHC due to an alpha-tropomyosin gene mutation, Asp175Asn, were analyze
44 We conclude that haploinsufficiency of the alpha-tropomyosin gene produces little or no change in c
45 We created a mouse that lacks a functional alpha-tropomyosin gene using gene targeting in embryonic
46 the 3' untranslated region (3'UTR) of human alpha-tropomyosin has tumor-suppressor properties in viv
47 high percentage of beta-tropomyosin replaces alpha-tropomyosin in the hearts of transgenic mice, the
51 N-acetylated striated muscle TM (stTM), long alpha-tropomyosin isoforms with the same N-terminal sequ
52 l model peptides with sequences of alternate alpha-tropomyosin isoforms, and a troponin T fragment th
53 working heart preparations) of heterozygous alpha-tropomyosin knockout and wild-type mice were indis
56 mice have approximately 50% as much cardiac alpha-tropomyosin mRNA as wild-type littermates but simi
61 ses of hypertrophic cardiomyopathy caused by alpha-tropomyosin mutations have been hampered by the ra
62 mutations, 6 had troponin I mutations, 3 had alpha-tropomyosin mutations, and 1 had an actin mutation
63 expression of SMC-related genes alpha-actin, alpha-tropomyosin, myosin heavy chain, and calponin H1 d
65 -terminal 31 residues of rat striated-muscle alpha-tropomyosin (preceded by a fragment of the GCN4 le
68 an 81-residue N-terminal fragment of muscle alpha-tropomyosin reveals a parallel two-stranded alpha-
69 combinant human cardiac troponin (rhcTn) and alpha-tropomyosin (rhcTm) expressed in Escherichia coli.
71 human TPM3 gene encoding gamma-tropomyosin (alpha-tropomyosin-slow) expressed in slow skeletal muscl
72 from the ability of hC0C1f to bind actin and alpha-tropomyosin, suggesting that cleaved C0-C1f could
74 ncoprotein E1A 3' splice site, IVS2 of human alpha-tropomyosin, the consensus polypyrimidine tract fo
75 issue-specific splicing, represses exon 3 of alpha-tropomyosin through distant pyrimidine-rich tracts
76 g of the mutually exclusive exons 2 and 3 of alpha-tropomyosin (TM) involves repression of exon 3 in
78 We investigated the functional impact of alpha-tropomyosin (Tm) substituted with one (D137L) or t
79 s cardiomyopathic mutations in human cardiac alpha-tropomyosin (Tm), a method of depletion/reconstitu
83 an HCM mouse model with an E180G mutation in alpha-tropomyosin (Tm180) that demonstrates increased my
84 C-terminal, or both ends of striated muscle alpha-tropomyosin (TM9a) and TM2 (TM9d), a nonmuscle alp
87 a Spanish-American family caused by a novel alpha-tropomyosin (TPM1) mutation and examine the pathog
90 le-specific exon (SK) of human slow skeletal alpha-tropomyosin, TPM3, and stimulates inclusion of the
94 Most notably, decreased phosphorylation of alpha-tropomyosin was found to be associated with hPSC-c
95 ago, mutations in cardiac troponin (Tn)T and alpha-tropomyosin were linked to familial hypertrophic c