A New Type of Ser Substitution for γ Arg-275 in Fibrinogen Kamogawa I Characterized by Impaired Fibrin Assembly

1999 ◽  
Vol 81 (06) ◽  
pp. 940-944 ◽  
Author(s):  
Jun Mimuro ◽  
Yoichi Kawata ◽  
Kazuki Niwa ◽  
Shin-ichi Muramatsu ◽  
Seiji Madoiwa ◽  
...  

SummaryA new type of substitution, Arg to Ser at γ275, has been found in a heterozygous dysfibrinogen derived from a 23-year-old woman with no major bleeding or thrombosis. By sequence analyses of the affected γ-chain and its gene, we found a single amino acid substitution of γ Arg-275 to Ser in an aberrant γ (274-302) residue peptide isolated from lysyl endopeptidase-digests of the patient’s fibrinogen. In agreement with this amino acid substitution, we identified a single nucleotide exchange of A for C at position 5728 in the γ-chain gene creating a codon (AGC) encoding Ser instead of the codon (CGC) encoding Arg at position γ 275. Like two other known types of mutants with a His or Cys substitution at this position, the functional abnormality was characterized by delayed fibrin polymerization, most likely due to impaired abutting of two D domains of adjacent fibrin monomers in the same strand of fibrin protofibrils. The structural derangement that affects the D:D association may not be so severe as compared with those of Cys and His mutants, possessing an additional disulfide-linked Cys molecule and an imidazole ring at the mutation site, respectively.

1996 ◽  
Vol 5 (3) ◽  
pp. 542-545 ◽  
Author(s):  
Kunihiko Gekko ◽  
Youjiro Tamura ◽  
Eiji Ohmae ◽  
Hideyuki Hayashi ◽  
Hiroyuki Kagamiyama ◽  
...  

Genetics ◽  
2003 ◽  
Vol 163 (1) ◽  
pp. 447-452 ◽  
Author(s):  
Jeffrey S Thompson ◽  
Marilyn L Snow ◽  
Summer Giles ◽  
Leslie E McPherson ◽  
Michael Grunstein

Abstract Fourteen novel single-amino-acid substitution mutations in histone H3 that disrupt telomeric silencing in Saccharomyces cerevisiae were identified, 10 of which are clustered within the α1 helix and L1 loop of the essential histone fold. Several of these mutations cause derepression of silent mating locus HML, and an additional subset cause partial loss of basal repression at the GAL1 promoter. Our results identify a new domain within the essential core of histone H3 that is required for heterochromatin-mediated silencing.


2021 ◽  
pp. 1-13
Author(s):  
Salvatore Dimonte ◽  
Muhammed Babakir-Mina ◽  
Taib Hama-Soor ◽  
Salar Ali

<b><i>Introduction:</i></b> SARS-CoV-2 is a new type of coronavirus causing a pandemic severe acute respiratory syndrome (SARS-2). Coronaviruses are very diverting genetically and mutate so often periodically. The natural selection of viral mutations may cause host infection selectivity and infectivity. <b><i>Methods:</i></b> This study was aimed to indicate the diversity between human and animal coronaviruses through finding the rate of mutation in each of the spike, nucleocapsid, envelope, and membrane proteins. <b><i>Results:</i></b> The mutation rate is abundant in all 4 structural proteins. The most number of statistically significant amino acid mutations were found in spike receptor-binding domain (RBD) which may be because it is responsible for a corresponding receptor binding in a broad range of hosts and host selectivity to infect. Among 17 previously known amino acids which are important for binding of spike to angiotensin-converting enzyme 2 (ACE2) receptor, all of them are conservative among human coronaviruses, but only 3 of them significantly are mutated in animal coronaviruses. A single amino acid aspartate-454, that causes dissociation of the RBD of the spike and ACE2, and F486 which gives the strength of binding with ACE2 remain intact in all coronaviruses. <b><i>Discussion/Conclusion:</i></b> Observations of this study provided evidence of the genetic diversity and rapid evolution of SARS-CoV-2 as well as other human and animal coronaviruses.


Microbiology ◽  
2015 ◽  
Vol 161 (4) ◽  
pp. 895-902 ◽  
Author(s):  
Mouparna Dutta ◽  
Debasish Kar ◽  
Ankita Bansal ◽  
Sandeep Chakraborty ◽  
Anindya S. Ghosh

1993 ◽  
Vol 30 (18) ◽  
pp. 1671-1677 ◽  
Author(s):  
Krishna V. Kesari ◽  
Grada van Bleek ◽  
Stanley G. Nathenson ◽  
Jan Geliebter

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