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61.
Ha KN Traaseth NJ Verardi R Zamoon J Cembran A Karim CB Thomas DD Veglia G 《The Journal of biological chemistry》2007,282(51):37205-37214
Cardiac contraction and relaxation are regulated by conformational transitions of protein complexes that are responsible for calcium trafficking through cell membranes. Central to the muscle relaxation phase is a dynamic membrane protein complex formed by Ca2+-ATPase (SERCA) and phospholamban (PLN), which in humans is responsible for approximately 70% of the calcium re-uptake in the sarcoplasmic reticulum. Dysfunction in this regulatory mechanism causes severe pathophysiologies. In this report, we used a combination of nuclear magnetic resonance, electron paramagnetic resonance, and coupled enzyme assays to investigate how single mutations at position 21 of PLN affects its structural dynamics and, in turn, its interaction with SERCA. We found that it is possible to control the activity of SERCA by tuning PLN structural dynamics. Both increased rigidity and mobility of the PLN backbone cause a reduction of SERCA inhibition, affecting calcium transport. Although the more rigid, loss-of-function (LOF) mutants have lower binding affinities for SERCA, the more dynamic LOF mutants have binding affinities similar to that of PLN. Here, we demonstrate that it is possible to harness this knowledge to design new LOF mutants with activity similar to S16E (a mutant already used in gene therapy) for possible application in recombinant gene therapy. As proof of concept, we show a new mutant of PLN, P21G, with improved LOF characteristics in vitro. 相似文献
62.
A procedure is described for the synthetic incorporation into membrane proteins of the non-natural amino acid TOAC (2,2,6,6-tetramethyl-piperidine-1-oxyl-4-amino-4-carboxylic acid), which is coupled rigidly to the alpha-carbon, providing direct detection of peptide backbone dynamics by electron paramagnetic resonance (EPR). Also included is a protocol for the functional reconstitution of the spin-labeled protein in lipid vesicles. This protocol can be completed in 17 d. 相似文献
63.
Prabhu AD Karim RA Thazhkuni IE Rajendran S Thamaran RA Vellachamy KA Sridharan V Vettath MP 《Innovations (Philadelphia, Pa.)》2007,2(4):213-214
SUMMARY:: Suprahepatic inferior vena caval (IVC) injuries are rare but carry nearly a 100% mortality rate. The main problem with its surgical management is the technical difficulty in draining the IVC during cardiopulmonary bypass. In this report, an efficient method of IVC drainage for repair of the IVC on cardiopulmonary bypass is described. 相似文献
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65.
Zahra Zakeri Arash Salmaninejad Nayyerehalsadat Hosseini Yas Shahbakhsh Elyas Fadaee Mohammad Karim Shahrzad Sara Fadaei 《Journal of cellular biochemistry》2019,120(7):10930-10944
Rheumatoid arthritis (RA) is known as one of important autoimmune disorders which can lead to joint pain and damage throughout body. Given that internal (ie, genetic and epigenetic alterations) and external factors (ie, lifestyle changes, age, hormones, smoking, stress, and obesity) involved in RA pathogenesis. Increasing evidence indicated that cellular and molecular alterations play critical roles in the initiation and progression of RA. Among various targets and molecular signaling pathways, microRNAs (miRNAs) and their regulatory networks have key roles in the RA pathogenesis. It has been showed that deregulation of many miRNAs involved in different stages of RA. Hence, identification of miRNAs and their signaling pathways in RA, could contribute to new knowledge which help to better treatment of patients with RA. Besides miRNAs, exosomes have been emerged as key messengers in RA pathogenesis. Exsosomes are nanocarriers which could be released from various cells and lead to changing of behaviors recipient cells via targeting their cargos (eg, proteins, messenger RNAs, miRNAs, long noncoding RNAs, DNAs). Here, we summarized several miRNAs involved in RA pathogenesis. Moreover, we highlighted the roles of exosomes in RA pathogenesis. 相似文献
66.
Trilobites are a highly diverse group of extinct arthropods that persisted for nearly 300 million years. During that time, there was a profusion of morphological form, and they occupied a plethora of marine habitats. Their diversity, relative abundance, and complex morphology make them excellent candidates for phylogenetic analysis, and partly as a consequence they have been the subject of many cladistic studies. Although phylogenetic knowledge is certainly incomplete, our understanding of evolutionary patterns within the group has dramatically increased over the last 30 years. Moreover, trilobites have formed an important component of various studies of macroevolutionary processes. Here, we summarize the phylogenetic breadth of knowledge on the Trilobita, and present various hypotheses about phylogenetic patterns within the group, from the highest to the lowest taxonomic levels. Key topics we consider include the question of trilobite monophyly, the phylogenetic position of trilobites vis à vis extant arthropod groups, and inter- and intra-ordinal relationships. 相似文献
67.
Ethanolamine kinase (EKI) is the first committed step in phosphatidylethanolamine (PtdEtn) biosynthesis via the CDP-ethanolamine pathway. We identify a human cDNA encoding an ethanolamine-specific kinase EKI1 and the structure of the EKI1 gene located on chromosome 12. EKI1 overexpression in COS-7 cells results in a 170-fold increase in ethanolamine kinase-specific activity and accelerates the rate of [3H]ethanolamine incorporation into PtdEtn as a function of the ethanolamine concentration in the culture medium. Acceleration of the CDP-ethanolamine pathway does not result in elevated cellular PtdEtn levels, but rather the excess PtdEtn is degraded to glycerophosphoethanolamine. EKI1 has negligible choline kinase activity in vitro and does not influence phosphatidylcholine biosynthesis. Acceleration of the CDP-ethanolamine pathway also does not change the rate of PtdEtn formation via the decarboxylation of phosphatidylserine. The data demonstrate the existence of separate ethanolamine and choline kinases in mammals and show that ethanolamine kinase can be a rate-controlling step in PtdEtn biosynthesis. 相似文献
68.
The ACTG076 trial showed that a complex and expensive antiretroviral regimen reduced mother-to-child HIV transmission by 67%. A more recent Bangkok perinatal HIV study found that oral zidovudine (AZT) given during late pregnancy and labor to non-breast-feeding women reduced the rate of vertical HIV transmission by 51%. These latter findings are particularly interesting to countries unable to afford the more expensive and complex 076 regimen. The reaction to the results of the Bangkok trial may, however, threaten the health of Africa's poorest women and children. Within days of the release of the Thai data, investigators studying other regimens closed recruitment to the placebo arms of their trials, and it has recently become clear that the National Institutes for Health will probably fund no more placebo-controlled trials of interventions designed to reduce maternal HIV transmission. The use of antiretroviral drugs in Africa is unlikely to ever significantly reduce maternal HIV transmission and the incidence of pediatric AIDS. While most of Africa's women have no option to breast-feed, breast-feeding is responsible for one-third of maternal HIV transmission cases. The results of the Thai trials only partially address the needs of African women, for the nutritional, immunological, and birth spacing benefits of breast-feeding should be retained if possible, and formula feeding may stigmatize HIV-infected mothers. The short-course regimen is still expensive to developing countries, and the implementation of a costly, vertical program may also draw financial and human resources from other programs. Placebo-controlled trials to develop simple, cheap, and effective potentially non-drug interventions against vertical HIV transmission should be encouraged in settings in which antiretroviral drugs and formula feeding cannot be safely delivered. 相似文献
69.
Time-dependent changes in myosin heavy chain mRNA and protein isoforms in unloaded soleus muscle of rat 总被引:6,自引:0,他引:6
Stevens Laurence; Sultan Karim R.; Peuker Heidemarie; Gohlsch Barbel; Mounier Yvonne; Pette Dirk 《American journal of physiology. Cell physiology》1999,277(6):C1044
Time-dependent changes in myosin heavy chain(MHC) isoform expression were investigated in rat soleus muscleunloaded by hindlimb suspension. Changes at the mRNA level weremeasured by RT-PCR and correlated with changes in the pattern of MHCprotein isoforms. Protein analyses of whole muscle revealed that MHCIdecreased after 7 days, when MHCIIa had increased, reaching a transient maximum by 15 days. Longer periods led to inductions and progressive increases of MHCIId(x) and MHCIIb. mRNA analyses of whole muscle showedthat MHCIId(x) displayed the steepest increase after 4 days andcontinued to rise until 28 days, the longest time period investigated.MHCIIb mRNA followed a similar time course, although at lower levels.MHCI mRNA, present at extremely low levels in control soleus, peakedafter 4 days, stayed elevated until 15 days, and then decayed.Immunohistochemistry of 15-day unloaded muscles revealed that MHCIwas present in muscle spindles but at low amounts also in extrafusalfibers. The slow-to-fast transitions thus seem to proceed in the orderMHCI MHCIIa MHCIId(x) MHCIIb. Ourfindings indicate that MHCI is transiently upregulated in somefibers as an intermediate step during the transition from MHCI to MHCIIa. 相似文献
70.